Wednesday, April 19, 2017

Why Indian Science Lagged Behind Western Science?

Science is the study of theory, its verification through observation and experimentation to verify those observations in the context of the theory. If the theory is verifiable through an experiment and a meticulous observation then it is successful otherwise not. Science includes various areas of study like physics, chemistry, mathematics etc. Science is passion of west but the reality is that it has its roots in India also. It would not be wrong to analyze the reasons about why India lagged behind while the west progressed ahead to left India behind in Science.
Why Indian science lagged behind the western science and why Western science is more advanced and genuine? Indian Science progresses like anything else through the early years of first century to eleventh century especially astronomy. While Europe was still living in the dark ages under pope and Christianity, Indians had already made progress in the mathematics and astronomical sciences to name a few. An Indian scientist was the first person to cite the idea that the earth revolved round the sun and not the other way round which was a remarkable achievement made thousand years before Copernicus proposed his heliocentric theory. Another Indian scientist proposed theorems on several geometrical figures and other mathematical proofs which seemed several years advanced. It was India which gave the world the idea of zero and numbers.The numbers concept was given by India which was later transferred to Arab World by Arab Scholar which later passed on to Europe. After having achieved so much remarkable scientific discoveries why Indian Science lagged behind?
Indian Science never saw the same trajectory of development as seen by western science during the renaissance period. The progress of Science in west began by Newton and other scientists. Indian society was Caste-ridden.Society had strata of castes where every Caste had its own hereditary profession. There were hard lines drawn between the castes and out of these boundaries no one could jump so if a merchant class worker do the work of art he has to do that work only even if he proposed some noble thoughts out of his mouth some heyday was a thorough nonsense as it was not considered his profession. Brahmans were the only privileged class to have some say in intellectual matters while others classes were left devoid of any such privilege. So in a way there was not such development of science was possible in ancient India where there was no freedom of exchange of thoughts and ideas. Once scientific development got broke in eleventh century A.D. it could not had been kept up in the later years.
Invention of printing press happened only in 13th century not in India but in China. It was certainly a misfortune for India that it was not invented earlier. Paper is more powerful medium of storing knowledge and passing on this knowledge to future generations, thereby building on the past knowledge. The Indian ancient scientists (as before mentioned names) could not have been able to do so. The knowledge once created could have been lost forever and could not be stored in a reliable and compact book. In contrast western science when in its nascent stages in the fourteenth century could have capitalized on the opportunity as paper was already invented. So a scientist like Newton or Copernicus or Galileo could have passed such knowledge in the form of books. What would have happened if newton could not have passed his knowledge in form of book called the Principia of mathematics or Copernicus would not have published his work of heliocentric theory? Certainly western science could not have progressed as it did. This knowledge in form of books could be then be used by future scientists to further the progress of the western science. Invention of paper cannot be cited as the sole reason for Indian science to not to have progressed. There are some more reasons which needs investigation as what was the real reason for Indian Scientific thought that originated around fourth century B.C. could not carry on to do what western science has achieved.
The Chinese traveler Hun-Tseng while visiting India saw well-established universities in modern Bihar. The University had well laid down monasteries and renowned teachers called gurus. The students lived in monasteries and taught in areas of literature, history, science etc. There was a proper medium of teaching and communication between the guru and the student. Many scholars visited University from various countries to learn higher education. There were some well-known teachers. Another University in modern Pakistan was also a great center of learning in north-western part of India. These were great institutes of learning and could have been great harbinger for cultivation of modern scientific thought for Indian in the coming time and could have placed the country on top of the pile in terms of scientific achievements and other knowledge frontiers. But what happened to such well-established centers of learning. The answer to this curious question is India was a hunting ground for plunderers. India was a rich country at that time with large wealth in form of gold and other precious ornaments. Many plunderers from North West invaded India and destroyed its well established establishments including the universities. There were invasions which created new rulers especially of barbaric nature who wanted to destroy such established learning systems and wanted to lay their own method of administration of the state. The ruins of great Indian Universities suggest how they got destroyed by these invasions of loot and destruction. Once destroyed these systems of learning could not be established on large-scale but prevailed on small-scale. Although these centers of leaning were not like the modern university system of west but they do had the potential to become great centers of learning. Western Science progressed with the aid of the universities system. These were the temples of higher learning where scholars could do research and publish their works. This system of universities could be considered as backbone of western science without which progress of science could not had been possible. Indian science could not have flourished without this education system which is obvious and sensible thought. So in a sense absence of such centers of learning was one of the determining factors for Western science having been triumphed while the Indian science which started so early could not had seen the bright day.
The broken string of the scientific thought after the eleventh century A.D. could be seen in the reigns of famous rulers like Akbar. There were experts for literature, music and other arts but not even a single expert on science. Besides that there was not any significant work on science written which can suggest that scientific temper prevailed at that time. Although there were enough works of arts like music, literature that could be cited easily. The rulers in the west had experts like Leonardo Da Vinci in Italy and Tyco Brahe was people whose works changed western science. Presence of such geniuses in the courts of rulers suggests how western scientific thought was given respect by rulers at that time when western science was just flourishing. So in a way ruling aristocracy played a great role in progress of western science in an indirect way by encouraging the scholars of such calibers to continue their work by providing the financial support. In India the situation was entirely different and thus one can consider that Science was entirely forgotten and the though of its progress in such a situation was out of question.
Science requires inventions like the steam engine or any other work of technology. The Indian climate is not so harsh and severe as compared to the western countries where cold and harsh weather demanded invention of technology. Requirement for clothes demanded invention of machines and other devices. Indian whether being good did not demanded any invention of technology. So climatic conditions were also had role to play. The demand to go long distances in harsh British winter led to the Invention of steam engine. The demand for clothes and other articles of use led to the establishments of factories. While in India the domestic demand of clothes, utensils and other items got fulfilled by small groups of private artists and workers who specialized in a particular work of art.
The scientific discoveries happened in form of patches of scientific discoveries but there was no clear trajectory of the progress of Indian science. The trajectory could had continued and completed but it broke in between by the factors as already cited like castes, the breakup of university system, royal patronage, climate, printing invention. In a way these factors suggest that Indian science could not have progressed as western science progressed. So in the end social, political and economic structural differences certainly made Indian science lagged behind the Western Science

How To Make Science, Technology, Engineering, And Mathematics Cool At School

Science and mathematics are not cool subjects, say students. Consequently, if these subjects are compulsory, students opt for an easier stream in secondary school and are less likely to transition to university science programs. In addition, female students are under-represented in areas such as mathematics, physics and astronomy. Around the world, the STEM subjects (Science, Technology, Engineering, and Mathematics) are in grave trouble in secondary and tertiary institutions. But worse, STEM university graduates may not work in a field of their expertise, leaving STEM agencies and organizations to hire from a shrinking pool.
In 1995, 14 percent of Year 12 secondary school mathematics students studied advanced mathematics, while 37 percent studied elementary mathematics, according to the Australian Mathematical Science Institute. Fifteen years later, in 2010, 10 percent were studying advanced mathematics and 50 percent took the easier option of elementary mathematics. The Australian Mathematical Science Institute revealed that basic mathematics was growing in popularity among secondary students to the detriment of intermediate or advanced studies. This has resulted in fewer universities offering higher mathematics courses, and subsequently there are reduced graduates in mathematics. There have also been reduced intakes in teacher training colleges and university teacher education departments in mathematics programs, which have resulted in many low-income or remote secondary schools without higher level mathematics teachers, which further resulted in fewer science courses or the elimination of specific topics from courses. For some mathematics courses, this is producing a continuous cycle of low supply, low demand, and low supply.
But is it actually a dire problem? The first question is one of supply. Are universities producing enough quality scientists, technology experts, engineers, and mathematicians? Harold Salzman of Rutgers University and his research colleague, B. Lindsay Lowell of Georgetown University in Washington D.C., revealed in a 2009 study that, contrary to widespread perception, the United States continued to produce science and engineering graduates. However, fewer than half actually accepted jobs in their field of expertise. They are moving into sales, marketing, and health care jobs.
The second question is one of demand. Is there a continuing demand for STEM graduates? An October 2011 report from the Georgetown University's Centre on Education and the Workforce confirmed the high demand for science graduates, and that STEM graduates were paid a greater starting salary than non-science graduates. The Australian Mathematical Science Institute said the demand for doctorate graduates in mathematics and statistics will rise by 55 percent by 2020 (on 2008 levels). In the United Kingdom, the Department for Engineering and Science report, The Supply and Demand for Science, Technology, Engineering and Mathematical Skills in the UK Economy (Research Report RR775, 2004) projected the stock of STEM graduates to rise by 62 percent from 2004 to 2014 with the highest growth in subjects allied to medicine at 113 percent, biological science at 77 percent, mathematical science at 77 percent, computing at 77 percent, engineering at 36 percent, and physical science at 32 percent.
Fields of particular growth are predicted to be agricultural science (food production, disease prevention, biodiversity, and arid-lands research), biotechnology (vaccinations and pathogen science, medicine, genetics, cell biology, pharmagenomics, embryology, bio-robotics, and anti-ageing research), energy (hydrocarbon, mining, metallurgical, and renewable energy sectors), computing (such as video games, IT security, robotics, nanotechnologies, and space technology), engineering (hybrid-electric automotive technologies), geology (mining and hydro-seismology), and environmental science (water, land use, marine science, meteorology, early warning systems, air pollution, and zoology).
So why aren't graduates undertaking science careers? The reason is because it's just not cool -- not at secondary school, nor at university, nor in the workforce. Georgetown University's CEW reported that American science graduates viewed traditional science careers as "too socially isolating." In addition, a liberal-arts or business education was often regarded as more flexible in a fast-changing job market.
How can governments make science cool? The challenge, says Professor Ian Chubb, head of Australia's Office of the Chief Scientist, is to make STEM subjects more attractive for students, particularly females -- without dumbing down the content. Chubb, in his Health of Australian Science report (May 2012), indicated that, at research level, Australia has a relatively high scholarly output in science, producing more than 3 percent of world scientific publications yet accounting for only about 0.3 percent of the world's population. Australian-published scholarly outputs, including fields other than science, grew at a rate of about 5 percent per year between 1999 and 2008. This was considerably higher than the global growth rate of 2.6 percent. But why isn't this scholarly output translating into public knowledge, interest, and participation in science?
Chubb promotes a two-pronged approach to the dilemma: 1. science education: enhancing the quality and engagement of science teaching in schools and universities; and 2. science workforce: the infusion of science communication into mainstream consciousness to promote the advantages of scientific work.
Specifically, Chubb calls for creative and inspirational teachers and lecturers, as well as an increase in female academics, for positive role modeling, and to set science in a modern context. Instead of restructuring and changing the curriculum, he advocates training teachers to create ways to make mathematics and science more relevant to students' lives. Communicating about science in a more mainstream manner is also critical to imparting the value of scientific innovation. Chubb is a fan of social media to bring science into the mainstream and to change people's perception of science careers and scientists. Social media can also bring immediacy to the rigor, analysis, observation and practical components of science.
In practical terms, the recent findings on student attitudes to STEM subjects, their perception of scientific work, and the flow of STEM graduates to their field of expertise, may be improved by positively changing the way governments, scientists, and educators communicate science on a day-to-day level.
Contextual, situational, relevant science education is more likely to establish links between theory and practical application. This can be demonstrated through real-world applications, including science visits and explorations in the local environment, at all levels of education. Even university students should avoid being cloistered in study rooms, and be exposed to real world, real environment situations. Furthermore, science educators advocate the use of spring-boarding student queries, interests, and motivation into extra-curriculum themes that capture their imagination and innovation. Therefore, enabling students to expand core curricula requirements to include optional themes, projects, competitions, and activities chosen by individual students, groups, or school clusters lead to increased student (and teacher) motivation and participation. In addition, integrating and cross-fertilizing science with non-science subjects and day-to-day activities (e.g. the science of chocolate, sport science, technical drawings, artistic design, and clothing design) can powerfully place STEM subjects firmly into practical applications. "Scientists in residence" programs, in which local scientists work periodically in school and university settings, can inspire students and provide two-way communication opportunities. In addition, international collaborations between schools of different regions or countries through a range of technologies demonstrate and reinforce collaboration in the scientific workplace -- as a way to build a cadre of experts, exchange ideas, network, cooperate, economize, and create culturally diverse outcomes of excellence.
These approaches can provide a more realistic concept of the work scientists perform from a local to a global perspective.
Dr. Martina Nicolls has 25 years of experience as a humanitarian aid development evaluator and advisor for international governments on education, child labor, peace, science, community development, gender, and management. In addition to numerous academic articles, she is the author of The Sudan Curse; Kashmir on a Knife-Edge; and Bardot's Comet. For more information, please visit http://www.martinanicolls.net or http://sbpra.com/MartinaNicolls.


Article Source: http://EzineArticles.com/7165267

Technological Innovation Through Tech Mining For Market Dominance

Innovation means technological change. The technology change results in practical implication or commercialization, it does not mean just generation of ideas. The importance of technological innovation in today's competitive economy is very clear, as today the worldwide economy depends on technology and technological innovation to an extraordinary degree.
Technological innovation plays important role in the economical growth of any country. Us, Japan, and other European countries are developed only due to there technological progress. In recent years, Singapore, India, China and many other countries are advancing dramatically due to technological innovations and progress. High technology companies are a significant and growing component of the economy. The competitive of these companies depends on technological innovations. Innovations improves standard of living. Developments in medical and pharmaceutical technologies have delivered extensive returns in health and life span.
Technological innovation involves tech mining. Tech mining includes understanding the technological innovation processes to track them more effectively and get informed about latest happenings and make valuable business decisions about R&D and subsequent implementation and adoption choices.
Innovation is defined as the process by which technological ideas are generated, developed and transformed into new business products, process and services that are used to make a profit and establish marketplace advantage. A better understanding of the innovation process is essential to figure out empirical measures deriving from innovation activities to generate actionable technological intelligence.
Tech mining is done through data or information extraction from multiple data sources, compilation and analyzing the results and represents key findings in actionable visual representation for easy understanding to what is happening now and predicting the future technologies.
Various types of technology analysis that can be aided by tech mining is as follows:
(A) Technology Monitoring (technology watch) - cataloguing, characterizing, identifying and interpreting technology development activities
(B) Competitive Technological Intelligence (CTI) -exploring out "Who is doing what?"
(C) Technology Forecasting-anticipating possible future development paths for particular technology domains
(D) Technology Road mapping - tracking evolutionary steps in related technologies and, sometimes, product families, technology diversification and technology tree
(E) Technology Assessment - anticipating the possible unintended, direct, indirect, and delayed consequences of particular technological changes
(F) Technology Foresight - strategic planning (especially national) with emphasis on technology roles and priorities
(G) Technology Process Management - getting people involved to make decisions about technology
(H) Science and Technology Indicators - time series that track advances in national (or other) technological capabilities
Reasons to Do Tech Mining
  • Forecast likely development paths for emerging technologies - identify new products, research or service opportunity
  • Identify competitors, or collaborators, at the "fuzzy front end" of new product development - keep tract of your competitor's activity for market dominance.
  • Identify potential customers for your intellectual property ("IP") - new licensing, collaboration, acquisition and merger opportunities.
  • Discover additional application arenas for the outputs of your R&D - identify how to develop new products and services from your existing business processes, without inventing more.
  • Gauge market potential for prospective technology-based products and services
  • Be a wiser consumer of others' science and technology
  • Manage the risks of technology development and implementation based on better information.


Article Source: http://EzineArticles.com/997886

History of Educational Technology

There is no written evidence which can tell us exactly who has coined the phrase educational technology. Different educationists, scientists and philosophers at different time intervals have put forwarded different definitions of Educational Technology. Educational technology is a multifaceted and integrated process involving people, procedure, ideas, devices, and organization, where technology from different fields of science is borrowed as per the need and requirement of education for implementing, evaluating, and managing solutions to those problems involved in all aspects of human learning.
Educational technology, broadly speaking, has passed through five stages.
The first stage of educational technology is coupled with the use of aids like charts, maps, symbols, models, specimens and concrete materials. The term educational technology was used as synonyms to audio-visual aids.
The second stage of educational technology is associated with the 'electronic revolution' with the introduction and establishment of sophisticated hardware and software. Use of various audio-visual aids like projector, magic lanterns, tape-recorder, radio and television brought a revolutionary change in the educational scenario. Accordingly, educational technology concept was taken in terms of these sophisticated instruments and equipments for effective presentation of instructional materials.
The third stage of educational technology is linked with the development of mass media which in turn led to 'communication revolution' for instructional purposes. Computer-assisted Instruction (CAI) used for education since 1950s also became popular during this era.
The fourth stage of educational technology is discernible by the individualized process of instruction. The invention of programmed learning and programmed instruction provided a new dimension to educational technology. A system of self-learning based on self-instructional materials and teaching machines emerged.
The latest concept of educational technology is influenced by the concept of system engineering or system approach which focuses on language laboratories, teaching machines, programmed instruction, multimedia technologies and the use of the computer in instruction. According to it, educational technology is a systematic way of designing, carrying out and evaluating the total process of teaching and learning in terms of specific objectives based on research.
Educational technology during the Stone Age, the Bronze Age, and the Iron Age
Educational technology, despite the uncertainty of the origin of the term, can be traced back to the time of the three-age system periodization of human prehistory; namely the Stone Age, the Bronze Age, and the Iron Age.
Duringthe Stone Age, ignition of fire by rubbing stones, manufacture of various handmade weapon and utensils from stones and clothing practice were some of the simple technological developments of utmost importance. A fraction of Stone Age people developed ocean-worthy outrigger canoe ship technology to migrate from one place to another across the Ocean, by which they developed their first informal education of knowledge of the ocean currents, weather conditions, sailing practice, astronavigation, and star maps. During the later Stone Age period (Neolithic period),for agricultural practice, polished stone tools were made from a variety of hard rocks largely by digging underground tunnels, which can be considered as the first steps in mining technology. The polished axes were so effective that even after appearance of bronze and iron; people used it for clearing forest and the establishment of crop farming.
Although Stone Age cultures left no written records, but archaeological evidences proved their shift from nomadic life to agricultural settlement. Ancient tools conserved in different museums, cave paintings like Altamira Cave in Spain, and other prehistoric art, such as the Venus of Willendorf, Mother Goddess from Laussel, France etc. are some of the evidences in favour of their cultures.
Neolithic Revolution of Stone Age resulted into the appearance of Bronze Age with development of agriculture, animal domestication, and the adoption of permanent settlements. For these practices Bronze Age people further developed metal smelting, with copper and later bronze, an alloy of tin and copper, being the materials of their choice.
The Iron Age people replaced bronze and developed the knowledge of iron smelting technology to lower the cost of living since iron utensils were stronger and cheaper than bronze equivalents. In many Eurasian cultures, the Iron Age was the last period before the development of written scripts.
Educational technology during the period of Ancient civilizations
According to Paul Saettler, 2004, Educational technology can be traced back to the time when tribal priests systematized bodies of knowledge and ancient cultures invented pictographs or sign writing to record and transmit information. In every stage of human civilization, one can find an instructional technique or set of procedures intended to implement a particular culture which were also supported by number of investigations and evidences. The more advanced the culture, the more complex became the technology of instruction designed to reflect particular ways of individual and social behaviour intended to run an educated society. Over centuries, each significant shift in educational values, goals or objectives led to diverse technologies of instruction.
The greatest advances in technology and engineering came with the rise of the ancient civilizations. These advances stimulated and educated other societies in the world to adopt new ways of living and governance.
The Indus Valley Civilization was an early Bronze Age civilization which was located in the northwestern region of the Indian Subcontinent. The civilization was primarily flourished around the Indus River basin of the Indus and the Punjab region, extending upto the Ghaggar-Hakra River valley and the Ganges-Yamuna Doab, (most of the part is under today's Pakistan and the western states of modern-day India as well as some part of the civilization extending upto southeastern Afghanistan, and the easternmost part of Balochistan, Iran).
There is a long term controversy to be sure about the language that the Harappan people spoke. It is assumed that their writing was at least seems to be or a pictographic script. The script appears to have had about 400 basic signs, with lots of variations. People write their script with the direction generally from right to left. Most of the writing was found on seals and sealings which were probably used in trade and official & administrative work.
Harappan people had the knowledge of the measuring tools of length, mass, and time. They were the first in the world to develop a system of uniform weights and measures.
In a study carried out by P. N. Rao et al. in 2009, published in Science, computer scientists found that the Indus script's pattern is closer to that of spoken words, which supported the proposed hypothesis that it codes for an as-yet-unknown language.
According to the Chinese Civilization, some of the major techno-offerings from China include paper, early seismological detectors, toilet paper, matches, iron plough, the multi-tube seed drill, the suspension bridge, the wheelbarrow, the parachute, natural gas as fuel, the magnetic compass, the raised-relief map, the blast furnace, the propeller, the crossbow, the South Pointing Chariot, and gun powder. With the invent of paper they have given their first step towards developments of educational technology by further culturing different handmade products of paper as means of visual aids.
Ancient Egyptian language was at one point one of the longest surviving and used languages in the world. Their script was made up of pictures of the real things like birds, animals, different tools, etc. These pictures are popularly called hieroglyph. Their language was made up of above 500 hieroglyphs which are known as hieroglyphics. On the stone monuments or tombs which were discovered and rescued latter on provides the evidence of existence of many forms of artistic hieroglyphics in ancient Egypt.
Educational technology during Medieval and Modern Period
Paper and the pulp papermaking process which was developed in China during the early 2nd century AD, was carried to the Middle East and was spread to Mediterranean by the Muslim conquests. Evidences support that a paper mill was also established in Sicily in the 12th century. The discovery of spinning wheel increased the productivity of thread making process to a great extent and when Lynn White added the spinning wheel with increasing supply of rags, this led to the production of cheap paper, which was a prime factor in the development of printing technology.
The invention of the printing press was taken place in approximately 1450 AD, by Johannes Gutenburg, a German inventor. The invention of printing press was a prime developmental factor in the history of educational technology to convey the instruction as per the need of the complex and advanced-technology cultured society.
In the pre-industrial phases, while industry was simply the handwork at artisan level, the instructional processes were relied heavily upon simple things like the slate, the horn book, the blackboard, and chalk. It was limited to a single text book with a few illustrations. Educational technology was considered synonymous to simple aids like charts and pictures.
The year 1873 may be considered a landmark in the early history of technology of education or audio-visual education. An exhibition was held in Vienna at international level in which an American school won the admiration of the educators for the exhibition of maps, charts, textbooks and other equipments.
Maria Montessori (1870-1952), internationally renowned child educator and the originator of Montessori Method exerted a dynamic impact on educational technology through her development of graded materials designed to provide for the proper sequencing of subject matter for each individual learner. Modern educational technology suggests many extension of Montessori's idea of prepared child centered environment.
In1833, Charles Babbage's design of a general purpose computing device laid the foundation of the modern computer and in 1943, the first computing machine as per hi design was constructed by International Business Machines Corporation in USA. The Computer Assisted instruction (CAI) in which the computer functions essentially as a tutor as well as the Talking Type writer was developed by O.K. Moore in 1966. Since 1974, computers are interestingly used in education in schools, colleges and universities.
In the beginning of the 19th century, there were noteworthy changes in the field of education. British Broadcasting Corporation (BBC), right from its start of school broadcasts in 1920 had maintained rapid pace in making sound contribution to formal education. In the USA, by 1952, 20 states had the provision for educational broadcasting. Parallel to this time about 98% of the schools in United Kingdom were equipped with radios and there were regular daily programmes.
Sidney L. Pressey, a psychologist of Ohio state university developed a self-teaching machine called 'Drum Tutor' in 1920. Professor Skinner, however, in his famous article 'Science of Learning and art of Teaching' published in 1945 pleaded for the application of the knowledge derived from behavioral psychology to classroom procedures and suggested automated teaching devices as means of doing so.
Although the first practical use of Regular television broadcasts was in Germany in 1929 and in 1936 the Olympic Games in Berlin were broadcasted through television stations in Berlin, Open circuit television began to be used primarily for broadcasting programmes for entertainment in 1950. Since 1960, television is used for educational purposes.
In 1950, Brynmor, in England, used educational technological steps for the first time. It is to be cared that in 1960, as a result of industrial revolution in America and Russia, other countries also started progressing in the filed of educational technology. In this way, the beginning of educational technology took place in 1960 from America and Russia and now it has reached England, Europe and India.
During the time of around 1950s, new technocracy was turning it attraction to educations when there was a steep shortage of teachers in America and therefore an urgent need of educational technology was felt. Dr. Alvin C. Eurich and a little later his associate, Dr. Alexander J. Stoddard introduced mass production technology in America.
Team teaching had its origin in America in the mid of 1950's and was first started in the year 1955 at Harvard University as a part of internship plan.
In the year 1956, Benjamin Bloom from USA introduced the taxonomy of educational objectives through his publication, "The Taxonomy of Educational Objectives, The Classification of Educational Goals, Handbook I: Cognitive Domain".
In 1961, Micro teaching technique was first adopted by Dwight W. Allen and his co-workers at Stanford University in USA.
Electronics is the main technology being developed in the beginning of 21st century. Broadband Internet access became popular and occupied almost all the important offices and educational places and even in common places in developed countries with the advantage of connecting home computers with music libraries and mobile phones.
Today's classroom is more likely to be a technology lab, a room with rows of students using internet connected or Wi-Fi enabled laptops, palmtops, notepad, or perhaps students are attending a video conferencing or virtual classroom or may have been listening to a podcast or taking in a video lecture. Rapid technological changes in the field of educational have created new ways to teach and to learn. Technological changes also motivated the teachers to access a variety of information on a global scale via the Internet, to enhance their lessons as well as to make them competent professional in their area of concern. At the same time, students can utilize vast resources of the Internet to enrich their learning experience to cope up with changing trend of the society. Now a days students as well teachers are attending seminars, conferences, workshops at national and international level by using the multimedia techno-resources like PowerPoint and even they pursue a variety of important courses of their choice in distance mode via online learning ways. Online learning facility has opened infinite number of doors of opportunities for today's learner to make their life happier than ever before.
Presently Research Associate in the ICFAI University and have been pursuing PhD from Gauhati University, Assam.


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Pros And Cons Of Online Education For The World Citizen

More and more young people are choosing non-traditional education to start and advance in their careers while completing and furthering their formal education. "Typical distance learners are those who don't have access to programs, employees who work during scheduled class hours, homebound individuals, self-motivated individuals who want to take courses for self-knowledge or advancement, or those who are unable or unwilling to attend class" (Charp, 2000, p. 10). Three key elements surround the online learner: technology, curriculum, and instructor (Bedore, Bedore, & Bedore, 1997). These elements must be keenly integrated into one smoothly and operationally functional delivery tool.
While an online method of education can be a highly effective alternative medium of education for the mature, self-disciplined student, it is an inappropriate learning environment for more dependent learners. Online asynchronous education gives students control over their learning experience, and allows for flexibility of study schedules for non traditional students; however, this places a greater responsibility on the student. In order to successfully participate in an online program, student must be well organized, self-motivated, and possess a high degree of time management skills in order to keep up with the pace of the course. For these reasons, online education or e-learning is not appropriate for younger students (i.e. elementary or secondary school age), and other students who are dependent learners and have difficulty
assuming responsibilities required by the online paradigm.
Millions of students use e-learning solutions in over 140 countries: corporations such as Kodak and Toyota and education providers like ExecuTrain, New Horizons, the Enoch Olinga College (ENOCIS), Phoenix University amongst the hundreds of schools and colleges.
Studies have shown student retention to be up to 250% better with online learning than with classroom courses. Several recent ones have helped frame the debate. The Sloan Consortium published a widely distributed report titled "Growing by Degrees: Online Education in the United States in 2005" that examined the growing prevalence of online education across U.S. institutions.
In addition, a study conducted by the Boston-based consulting firm Eduventures found that, while about half of institutions and more than 60 percent of employers generally accept the high quality of online learning, students' perceptions differ. Only about 33 percent of prospective online students said that they perceive the quality of online education to be "as good as or better than" face-to-face education. Ironically, 36 percent of prospective students surveyed cited concern about employers' acceptance of online education as a reason for their reluctance to enroll in online courses.
But what actually drives quality? A March 2006 report released by the U.S. Department of Education's Office of Postsecondary Education identifies six quality indicators: mission, curriculum and instruction, faculty support, student and academic services, planning for sustainability and growth, and evaluation and assessment.
The debate rages on while the Pros and Cons of Online Adult Education for today's international students are constantly analyzed to determine if this type of education platform can deliver predictable and measurable results.
The Enoch Olinga College (ENOCIS) is one institution which uses this type of delivery system. ENOCIS enhances their learning experience by offering many other "value added", cost reducing benefits to students. Online pupils can apply for scholarships available to students of excellence and other financial aid programs like the Parent Loan for Undergraduate Students (PLUS), with attractive interest rates. They also provide convenient payment facilities, on line banking, Western Union Quick Collect, bank cards and a student who is granted a loan can start repaying it after two months if they have a corporate guarantor.
Pros of Online Education:
The key advantages of the online education experience are briefly explained below:
1. Cheaper: Online courses may be more affordable than those offered at colleges or trade schools. You may also save on transportation costs like gas, bus passes, and parking permits because you don't need to commute to school and there are no housing or meals plans to worry about since you do not need to live on or near a college campus. Housing expenses and other costs associated with living expenses are usually the most expensive aspects of a college education, so by taking an online course you could save quite a bit of money.
The best part of online education is the absence of travel and immigration problems. Some students may prefer not to pursue traditional on campus education, as it involves traveling to attend lectures. With online education, an applicant does not need to travel. Courses simply require accessing the internet in order to begin the learning process.
2. More Convenient: By taking courses online, you're able to decide when you study and for how long. You are also able to schedule your studying around your work or social schedule.
Since you're not bound to a classroom, you may do your work wherever you have access to a computer and the internet. You'll be able to set your own pace and decide exactly how fast you want to go over the material.
Take online courses when you need them, not based on some college's annual or semester schedule. You can learn when you need it (Just-In-Time) A course is as close as a computer with an Internet connection.
3. Flexibility: with no set class times, you decide when to complete your assignments and readings. You set the pace. In some programs, you can even design your own degree plan. The online students can carry out their private or official work, along with the online education. As it provides the convenience of time flexibility, a student can login and logout as per his desire whereas, the traditional education do not provide such flexibility in learning.
Flexibility of online education allows the student control over their studies. They can allot more time in the topics, which they feel comparatively hard and vice versa. The speed of learning depends solely upon the students.
4. Technology: With the help of the scientific technology, students can do their online education at any place. The only mandatory pre-requisite is the availability of computer along with an internet amenity. Side benefits include the learning new technologies and technical skills
5. Availability: distance-learning opportunities have exploded over the past few years, with many accredited and reputable programs.
6. Accessibility: with an online course, you can work on the course just about anywhere you have computer access. Your learning options are not constrained by your geographic location. The new virtual classrooms have created a myriad of learning opportunities for global learning and education center. On line education is a new era experience adapting to the needs of the world citizen.
7. Self-Directed: you set your own pace and schedule, so you control the learning environment.
8. Time Spent in Classroom: now you can take a course on just about any subject without ever having to be in, or travel to, a classroom so you have very little wasted time. Note, however, that some distance-education programs still do have an in-class component and normally to receive a fully accredited US university degree an international student must spend one or two semesters on campus.
9. High Quality Dialog: Within an online asynchronous discussion structure, the learner is able to carefully reflect on each comment from others before responding or moving on to the next item. This structure allows students time to articulate responses with much more depth and forethought than in a traditional face-to-face discussion situation where the participant must analyze the comment of another on the spot and formulate a response or otherwise loose the chance to contribute to the discussion.
10. Student Centered: Within an online discussion, the individual student responds to the course material (lectures and course books, for example) and to comments from other students. Students usually respond to those topics within the broader conversation that most clearly speak to their individual concerns and situations resulting in several smaller conversations taking place simultaneously within the group. While students are expected to read all of their classmates' contributions, they will become actively engaged only in those parts of the dialog most relevant to their needs. In this way, students take control of their own learning experience and tailor the class discussions to meet their own specific needs. Ideally, students make their own individual contributions to the course while at the same time take away a unique mix of information directly relevant to their needs.
11. Level Playing Field: In the online environment learners retain a considerable level of anonymity. Discriminating factors such as age, dress, physical appearance, disabilities, race and gender are largely absent. Instead, the focus of attention is clearly on the content of the discussion and the individual's ability to respond and contribute thoughtfully and intelligently to the material at hand.
On line adult education can be more effective and better for certain types of learners (shy, introverted, reflective, language challenged, those that need more time). Distance education courses are often better for people who learn through visual cues and experiential exercises.
12. Synergy: The online format allows for a high level of dynamic interaction between the instructor and students and among the students themselves. Resources and ideas are shared, and continuous synergy will be generated through the learning process as each individual contributes to the course discussions and comments on the work of others. The synergy that exists in the student-centred virtual classroom is one of the unique and vital traits that the online learning format posses..
13. Access to Resources: It is easy to include distinguished guest experts or students from other institutions in an online class as well as allow students to access resources and information anywhere in the world. An instructor can compile a resource section online with links to scholarly articles, institutions, and other materials relevant to the course topic for students to access for research, extension, or in depth analysis of course content material in the global classroom.
14. Creative Teaching: The literature of adult education supports the use of interactive learning environments as contributing to self-direction and critical thinking. Some educators have made great strides in applying these concepts to their on ground teaching. However, many classes still exist which are based on boring lectures and rote memorization of material. The nature of the semi-autonomous and self-directed world of the virtual classroom makes innovative and creative approaches to instruction even more important. In the online environment, the facilitator and student collaborate to create a dynamic learning experience. The occasion of a shift in technology creates the hope that those who move into the new technology will also leave behind bad habits as they adopt this new paradigm of teaching. As educators redesign their course materials to fit the online format, they must reflect on their course objectives and teaching style and find that many of the qualities that make a successful online facilitator are also tremendously effective in the traditional classroom as well.
Cons of Online Education:
Briefly explained are some factors that could negatively affect your success with distance learning courses:
1. The Technology:
a. Equity and Accessibility to Technology: Before any online program can hope to succeed, it must have students who are able to access the online learning environment. Lack of access, whether it be for economical or logistics reasons, will exclude otherwise eligible students from the course. This is a significant issue in rural and lower socioeconomic neighborhoods and educating the underserved peoples of the world. Furthermore, speaking from an administrative point of view, if students cannot afford the technology the institution employs, they are lost as customers. As far as Internet accessibility is concerned, it is not universal, and in some areas of the United States and other countries, Internet access poses a significant cost to the user. Some users pay a fixed monthly rate for their Internet connection, while others are charged for the time they spend online. If the participants' time online is limited by the amount of Internet access they can afford, then instruction and participation in the online program will not be equitable for all students in the course. This is a limitation of online programs that rely on Internet access. Equity of access to learners of all backgrounds and parts of society
b. Requires New Skills/Technologies: if you're not computer-savvy or are afraid of change or new technologies, then online education will probably not work for you. The online students are required to learn new skills, such as researching and reviewing the internet. For the online students, they need to learn the techniques of navigation on an online library for necessary information. Technical training and support of learners and instructors
c. Computer Literacy: Both students and facilitators must possess a minimum level of computer knowledge in order to function successfully in an online environment. For example, they must be able to use a variety of search engines and be comfortable navigating on the World Wide Web, as well as be familiar with Newsgroups, FTP procedures and email. If they do not possess these technology tools, they will not succeed in an online program; a student or faculty member who cannot function on the system will drag the entire program down.
d. Limitations of Technology: User friendly and reliable technology is critical to a successful online program. However, even the most sophisticated technology is not 100% reliable. Unfortunately, it is not a question of if the equipment used in an online program will fail, but when. When everything is running smoothly, technology is intended to be low profile and is used as a tool in the learning process. However, breakdowns can occur at any point along the system, for example, the server which hosts the program could crash and cut all participants off from the class; a participant may access the class through a networked computer which could go down; individual PCs can have numerous problems which could limit students' access; finally, the Internet connection could fail, or the institution hosting the connection could become bogged down with users and either slow down, or fail all together. In situations like these, the technology is neither seamless nor reliable and it can detract from the learning experience.
2. The Institution: Many online education facilities are relatively new with many courses and hence, lack in modern instructors for instructing the new curriculum. Estimates show that there is still a need for an increase of more 50% of qualified instructors for online education.
b. The Administration and Faculty: Some environments are disruptive to the successful implementation of an online program. Administrators and/or faculty members who are uncomfortable with change and working with technology or feel that online programs cannot offer quality education often inhibit the process of implementation. These people represent a considerable weakness in an online program because they can hinder its success.
3. The Facilitator :Lack of Essential Online Qualities: Successful on-ground instruction does not always translate to successful online instruction. If facilitators are not properly trained in online delivery and methodologies, the success of the online program will be compromised. An instructor must be able to communicate well in writing and in the language in which the course is offered. An online program will be weakened if its facilitators are not adequately prepared to function in the virtual classroom.
4. Perceptions/Reputation: while slowly changing as more and more mainstream colleges and universities embrace distance learning, there still is a stigma attached to distance education to the student's interaction in the online education. Some of the students believe that, there are few opportunities with regards to face-to-face interactions and feedbacks.
5. No Instructor Face Time: If your learning style is one where you like personalized attention from your teachers, then online education will probably not work for you.
6. Little Support: students are expected to find their own resources for completing assignments and exams, which is empowering for some, but daunting for others.
There is little support and limited guidelines provided in online education system. Online students are required to search as per their own imaginations for completing exams and assignments.
7. Lacking Social Interaction: while you often interact with classmates via email, chat rooms, or discussion groups, there are no parties or off line get-togethers.
If you enjoy meeting new people and learn better while you're interacting with other people, you may want to reconsider online education.
8. No Campus Atmosphere: part of the traditional college experience, of course, is the beauty of the campus, the college spirit, but you have none of that with distance-education courses.
Since you're not on campus or in classes, you may lack opportunities to meet other students. You will not have many opportunities to interact face-to-face with your professors, so they may not have a real sense of who you are as a person.
9. Making Time: if you are a procrastinator or one of those people who always needs an extra push to complete work, you may have a hard time making time for your online classes. On line learning requires new skills and responsibilities from learners
10. Academic honesty of online students: requires a new mindset to online assessment. Most education experts agree that rote memory testing is not the best measure of learning in any environment and new measurement and evaluation tools are evolving.
11. Types and effectiveness of assessments: The importance of outcomes in online learning cannot be over emphasized. Does the program have measurable results? Are students learning what you say they should be learning? Then there are institutional outputs: course completion rates, job placement rates (if that's the goal of the institution), graduation rates, student success on third-party tests, and student satisfaction scores.
These factors, both the pros and cons, contribute greatly to making an informed decision about the direction of your career path and how you are going to accomplish your goals: on line, in the classroom or a combination of both.
Institutions and companies that use continuing education to meet their needs also face similar decisions. Institutions that deliver online education are confronted with a series of challenges, including the search for good faculty, use of technology, and provision of adequate student services.
The Sloan Consortium report "Growing by Degrees: Online Education in the United States in 2005" found that 64 percent of chief academic officers and faculty believe that it takes more discipline for a student to succeed in an online course than it does in a face-to-face course.
More and more major business and industry is turning to on line continuing education as a viable and cost effective resource for training its personnel. Hilton Hotel has 380 hotels worldwide and is represented in 66 countries.
When you weigh the benefits and advantages of on line adult continuing education the cost of study and flexibility of scheduling tip the scales of programs like the Enoch Olinga College, Capella and Phoenix University's distance learning program on line adult continuing education is becoming a world wide respected form of education.
However, as with any situation, there are both pros and cons with the concept of online education and the benefits of the virtual or global classroom. You may want to evaluate both before you decide on an online education program. By examining the advantages and disadvantages, you will be able to make a more informed decision. But, at the end of the day, online learning is independent learning. A lot of structure has been put into online programs, but it still comes down to a learner sitting in front of a computer by him or herself. The knowledge you receive or the benefits it will generate either in development of self esteem or increasing earning capacity will depend sole upon you the student

Interview with Dr Renato C Nicolai, Author of "The Nightmare That Is Public Education"

A retired teacher and principal with thirty-eight years of experience in public education, Renato C. Nicolai, Ed.D., taught 6th through 12th grade and was both an elementary and middle school principal. In education circles, he was known as Dr. Nicolai, which eventually was shortened to Dr. Nick, and has stuck ever since.
Tyler: Thank you for joining me today, Dr. Nick. Obviously, the state of public education in the United States is of great concern to many people. To begin, will you tell us what you think is wrong with the public education system?
Dr. Nick: Wow! What an opportunity! Yes, I would be pleased to tell you what I think is wrong with the public education system. My thoughts aren't in any order of priority; I'm telling you about them as they come to mind.
What I think of first is what I wrote about as the main emphasis in my book. Teachers desperately need to improve the quality of their teaching, so, specifically, what's wrong is that too many teachers are either incompetent or mediocre instructors at best. Yes, if you had the opportunity to stand by my side in the hundreds of classrooms I've visited in my career, you would be both amazed and horrified at how much poor quality teaching there is in our public schools. If parents only knew how much more their children could be learning with instruction from superb teachers compared to what they are most likely learning now from incompetent teachers, they would be flabbergasted. That's how bad it really is. This indictment of teachers, however, is not a major problem at the elementary school, but is a serious and rampant problem for sure at the middle school, junior high school, and especially the high school level of education. Parents, you'll want to read about the eight essential qualities most teachers don't possess. I've listed and described them in the first chapter of my book.
Tenure is another critical problem. Once tenure is granted by a school district, an incompetent teacher is a teacher for life. It's extremely difficult to dismiss a teacher who has tenure. What's wrong with tenure is that it's achievable so soon in a teacher's career (after only three years in most cases), so final (once it's granted it's irrevocable), and so long lasting (the teacher keeps it for as long as he/she teaches). What happens is that some teachers work very hard during their first few years on the job, receive tenure, and then slack off in their performance because they know they can almost never lose their job. Instead of tenure, public education should promote a system of performance reviews that teachers are required to pass periodically in order to keep their teaching position for the next two or three years.
The way a teacher is evaluated is all wrong within the education system. It's basically a sham and a joke. Collective bargaining contracts and union involvement in teacher evaluations has watered down the process of teacher evaluations to the degree that practically nothing worthwhile results from the process. In my book, I have a chapter titled "What You Don't Know Won't Hurt You," and the concept of teacher evaluation is discussed in that chapter. If parents and the public at large knew how ineffective and unproductive teacher evaluations are, they would demand a more efficient system. The system as it exists in most school districts today is a tactful process of saying the right words, doing what's anticipated, and not ruffling anyone's feelings. What it should do is help teachers improve the quality of their teaching to the degree that they help students learn better, but it doesn't do that at all.
The public education system is rooted in the false notion that all teachers are qualified educators who can be trusted to make good decisions, follow school district rules and regulations, work together in a spirit of collegiality, promote the welfare of students as a priority, and, generally, do what is just, moral, and professional. What's wrong is that this description is simply not true; yet, school districts throughout the United States allow teachers the freedom to work unsupervised because they are assumed to be well-intentioned, professional persons who have the best interests of students at heart. Don't misunderstand me, please. Of course, there are many conscientious teachers who do work well with each other and do have the best interests of students at heart, but I believe that there are many more who take advantage of academic freedom, collegiality, and lack of supervision to do whatever they want within the four walls of their classrooms. This is actually a very serious problem that is covered up by the educational hierarchy.
Another very serious wrong is the way in which school districts manage the use of substitute teachers. Substitute teachers are rarely observed to determine their competence, frequently assigned to subject areas they have no qualifications to teach, and regularly subjected to unbelievable disrespect and insolence from students. When a substitute teacher is present in a middle school, junior high school, or high school classroom, little or no learning takes place. That class is a waste of instructional time, the students' time, and the substitute's time as well. The three most common activities that take place when a substitute takes over a regular teacher's class are the showing of videos or DVDs, the administration of tests, and the supervision of long, boring written or reading assignments left by the regular teacher. The lesson plans left by most regular teachers for substitute teachers to follow are generally a set of instructions on how to occupy the time students have in class. The entire substitute teacher system needs to be completely overhauled. Students must be taught to respect substitute teachers, to assist them with the lesson, and to be responsible for their own learning. Expectations that students will cooperate with substitute teachers, that regular teachers will conscientiously prepare quality lesson plans, that substitutes will teach, and that administrators will monitor substitutes are so miserably low, currently, that the education system simply accepts the status quo of chaos, lack of learning, and disgraceful substitute teacher academic and professional performance.
Tyler, the public education system in the United States is really in trouble. It's inundated with problems; there are many things wrong with it. I could have written about lack of student discipline, emphasis on sports over academics, permissiveness throughout the culture of public schools, reticence about the problems that exist, and much more. I believe that it has deteriorated so much over the last fifty years, that mediocrity and incompetence are the status quo. Parents don't even realize that the system is so bad. What they see and experience is what they think is how the system should be. They don't understand how much better it could be and how their children could be receiving a more superior educational experience.
Tyler: Dr. Nick, will you tell us a little bit about your background in education-where you taught and the subjects you taught, as well as your experience as a middle school principal. What personal experiences have led to your current viewpoints?
Dr. Nick: My first full time position in public schools was as a 9th and 11th grade teacher of English at El Camino High School in South San Francisco, California (a city separate from San Francisco). After teaching two years, my assignment changed to teaching English half the school day and counseling the other half. In my third year as a teacher at this school, I was elected president of the local teachers' union and the following year chairman of the School District Negotiating Council. In my fifth year, I was appointed Assistant Principal of Parkway Junior High School (7-9) in the same school district.
During the seven years I held this position as assistant principal, I enrolled in a doctoral program at the University of Southern California, and from 1969-1972 I achieved a Doctor of Education degree in Educational Administration and Secondary Curriculum. My dissertation, which researched the administrative behavior of superintendents of schools, was the first dissertation sponsored by the newly formed Association of California School Administrators (ACSA).
In 1974, I was selected Principal of Isaac Newton Graham Middle School (7-8) in Mountain View, California. You asked me to share my experience as a middle school principal, and I'm pleased to do so, but I want you to know that I could easily write another book about those experiences alone. So, I'll try to give you an encapsulated answer. I think I could best describe my experiences as a middle school principal as a continuing five year roller coaster ride because I never knew when my feelings, emotions, and experiences would be up or down. On the up side, I was thrilled to see many students learn to their potential as a result of the excellent teaching of some superb teachers. After all, helping young people learn is what education is all about. I also observed some outstanding teachers whose skills and methods motivated students to excel beyond their own personal expectations. That was extremely exciting. As the leader of a neighborhood school, I grew personally as an educator because I had the opportunity to influence curriculum, work for the educational benefits of students, and associate often with community leaders in various agencies (fire department, police department, recreation department, mayor's office, and so on). These experiences made me a better principal. On the down side, I learned quickly that many teachers should never have been allowed to enter a classroom to teach. They were not suited to interact with adolescents and teenagers; they didn't have the skills needed to help young minds understand concepts and ideas; they failed to devote themselves to learning how to teach expertly; they didn't know how to control and manage a class of thirty students. I also realized what some of the problems were that I had to deal with (incompetent teachers, low quality curriculum, collective bargaining contracts to name a few) but that I didn't have the power to bring about effective change. That was frustrating to no end. Finally, the lowest possible experience for me was to meet so-called teachers who had literally given up; that is, they had decided to go through the motions of teaching only. They were no longer eager to teach, didn't look forward to meeting their classes, and did as little as possible to meet their professional responsibilities. I left out so much that I feel my answer is inadequate. I can see the joy on the faces of students who won academic and sports awards, the enthusiasm of both staff and student body at our annual soft ball game, the annual parent club barbecue, and so much more.
I remained at Graham for five years and then moved on to an opportunity in southern California as the Administrative Director (Superintendent/Principal) of Chatsworth Hills Academy, a private school in Chatsworth, California. I preferred serving in public education, so I returned to Graham as a 7th grade core teacher, teaching English and social studies (world history). In October of my second year back from southern California, I was asked by three Santa Clara County superintendents to head up a "joint powers" school named The Institute of Computer Technology as an on-loan school administrator. Along with an on-loan administrator from IBM (Ken Butler), I helped this new educational enterprise get its feet off the ground. It was exciting work and I enjoyed hiring teachers, meeting technology experts at Apple and IBM, developing curriculum, outfitting a school with security systems, working with school superintendents, learning how to protect valuable hardware and software, and a lot more. After doing what I was hired to do, I returned to Graham, teaching English, social studies, and geography to 7th and 8th graders, including the 8th Grade Honors English program. I remained at Graham for the next twenty years and retired in 2001.
During my career, I've been a presenter at various conferences, in-service sessions, and conventions. My presentation topics were usually in the areas of teaching methods, literature-based instruction, discipline, and classroom management. I've also been a master teacher, chairman or member of numerous curriculum committees, and an adjunct professor in the teacher training program at National University.
My current viewpoints and attitudes toward public education developed throughout my career based upon my personal experiences as a teacher and principal, what I saw other educators do and heard them say, what I read, what I learned best helped young people reach their learning potential, what political reforms failed, and what I learned about how young minds gain knowledge. For instance, there was a time when I opposed vouchers; I'm adamantly in favor of them now. The more choices parents have in the education of their children, the better. I was a staunch supporter of tenure at the beginning of my career until I witnessed how many deficient teachers hide their incompetence under the protection of this law. Tenure should be abolished. I'm sure you get the idea. I hold the views, attitudes, and feelings that I do about education as a result of a life-long career in schools. You know, children aren't the only ones who learn while at school.
Tyler: You mention that many teachers are not competent? What is the reason for this, and why does the school system allow them to remain in the classroom?
Dr. Nick: Why are many teachers incompetent? Here are some reasons to contemplate:
Because they don't possess the personality needed to interact well with young people. If a person doesn't like kids, doesn't enjoy being with them all day long, doesn't look forward to teaching them, doesn't accept their immaturity and want to help them become more mature, can't stand constantly answering questions, can't accept individual differences (race, ethnicity, gender, religion, etc), can't cope with special needs (hyperactivity, behavior problems, and so on), then that person will never be a competent teacher.
Because they don't possess, exhibit, use, and treasure enthusiasm, and, so, they are truly boring to most of their students. Ask any kid at a middle school, junior high school, or high school in your community what they dislike the most about their teachers, and, I guarantee you the answer will overwhelmingly be that they are boring. And you know something, Tyler; the kids are right. Most teachers are insufferably boring in how they teach. Enthusiasm is a sine qua non for all competent teachers.
Because they don't know how to get concepts and ideas across clearly to their students. They don't possess the knowledge and skills needed to help students learn. They just don't know what to do and end up quite often being frustrated and saying something like, "Oh, those kids just can't learn this stuff." That's an expression equivalent to defeatism and incompetence. If the learning material is age appropriate and part of the accepted curriculum, of course a normal, healthy student can learn it. It isn't the student who is at fault; it's the teacher who doesn't have the competence to design lessons, activities, and programs to help students learn. The reason for this is that many teachers tell students but don't show and teach.
Because they can't manage and control student behavior. Teachers daily face challenging disciplinary and behavior problems. If a teacher can't effectively handle these problems, that teacher will never be a competent instructor-never! In this case, the incompetence is in not knowing what to do when a disciplinary or behavior problem presents itself because the teacher hasn't thought out a personal Educational Philosophy for Control of Student Behavior. Every teacher needs to do this to harmonize his/her personality with methods of discipline. I explain this in detail in my book.
Because many teachers don't manage classroom time efficiently. I devote an entire chapter to this topic: "Wasted Time - Inept Instruction (Euphemism: Teaching Mistakes). How can anyone consider a teacher competent when that teacher tries to teach over the noise of unruly students, doesn't know how to quell effectively unnecessary noise at the change of a classroom activity, and allows students to talk whenever they want. This inability to control noise leads to as much as 25% of each class period being wasted. Many teachers can't even control the time at the end of class when students get ready to leave and waste the ten or fifteen minutes left.
Because many teachers can't effectively control group learning. One of the most effective ways for students to learn is to interact with each other, allowing students to help each other learn in groups. Sometimes, students have just the right words and explanations to help a fellow student understand a lesson. However, most teachers don't control student groups effectively and so waste tremendous amounts of instructional time.
Because many teachers don't have high enough academic and behavioral expectations and standards. In other words, many teachers don't challenge their students enough academically and don't expect them to learn to the level of their potential. Teachers must project an attitude of high expectations to motivate their charges adequately. Most teachers don't even understand this concept and need to learn it themselves. Not putting it into effect in classrooms is indicative of ignorance and incompetence. In Chapter Three, I wrote a seven-page description of the most important strategies used by teachers who truly understand how to teach high academic and behavioral standards. Teachers, you've never seen anything come close to this practical list of how to teach standards.
Because some teachers don't have a sufficient knowledge of the subjects they teach. They don't! They are assigned to teach a subject they don't know adequately or they don't even like. Many teachers are teaching subjects and they don't have either a major in that field or a valid certificate to teach it.
There are other reasons as well, but the few I mentioned are really significant ones, aren't they? Now, what are the reasons for these incompetencies and why do school systems allow these incompetent teachers to remain in the classroom? Well, the first part of the question can be answered easily. Students learning how to teach are not being prepared adequately by schools of education. You know who should teach prospective teachers how to teach? Not education professors! No! Excellent, experienced, current and retired teachers who know what a classroom is all about and who have a love for kids and teaching in their hearts should teach candidates for teaching. Give me proven experts at teaching young people, a group of twenty teacher candidates for a year, and I know we could do a much better job of teaching them how to be good teachers than any school of education in the country.
Answering the second part of the question leaves me with a heavy heart. The reason is that most school districts don't effectively monitor and evaluate the progress, competence, and teaching skills of new teachers. The procedures to do this are woefully inadequate and rarely result in new teachers being dismissed if they are incompetent. Teachers new to the profession learn more about teaching from their own personal experiences the first three years on the job and from other, experienced teachers than they do from any program presented by the school district they work for. School districts don't really know if a new teacher is mediocre or, worse yet, incompetent so they grant tenure because they need a body in the classroom. There is a tremendous shortage of teachers throughout our country today. Once tenure is granted, it is virtually impossible to dismiss a teacher on the basis of incompetence.
(Due to space constraints a portion of this review was omitted -- please see Reader Views website for the entire interview.)
Dr. Nick: Parents must be involved in their children's education from preschool right through high school and, perhaps, even into college. The tendency is for parents to step back from involvement when their teenagers start high school. This is a serious mistake. Parental involvement is critical during high school because the high schooler is under tremendous pressure from peers mainly to experiment in many different areas: drugs, alcohol, sex, ideology, cults, etc. That involvement should take the form of proactive participation, diligent observation, and ardent questioning. I recommend that parents do the following to ensure that their children receive a quality education:
Parents must communicate regularly in person, over the phone, and via e-mail with the teacher throughout the school year about every aspect of their child's learning by asking questions and seeking information about these and other important aspects of schooling:
homework
math skills
language arts skills (reading, spelling, grammar, writing)
testing
behavior
grades
listening skills
attitude
participation and cooperation
Parents must frequently monitor the progress of their child's learning at home and act as the most important teacher in their child's life.
Parents should observe their child's teacher(s) to assess the teacher's quality of instruction. My book is filled with tips for parents to do just that. It also contains lists of questions for parents to ask and what to look for in a classroom to determine if a classroom's physical environment is organized as a valuable learning tool.
Parents should participate in the life of the school, if possible:
join the PTA or parent club and participate in its activities and governance
volunteer as an aide at school
offer to assist the teacher with paperwork
Parents must attend school functions: Back-to-School Night, Open House, music programs, special events, sports contests, fund raisers.
Parents must meet with the teacher at parent conferences and ask questions about their child's educational progress.
Parents should introduce themselves to the principal and other persons in key positions at the school to know who they are and to make sure these school personnel know who the parents are.
Parents should communicate their ideas and opinions to their elected school board members, and, on occasion, attend a school board meeting.
Parents must be sure their child is equipped to do the best possible work at school by providing:
necessary school supplies
a nutritious and balanced diet
enough sleep and rest
a positive attitude toward school and teachers
a distraction-free place for homework
Tyler: Does the concern over public education have a place outside the school system? What about people who do not have children? Why should they care about things like millage elections, or want to pay more taxes, or support the school system?
Dr. Nick: Yes, concern over public education does have a place outside the school system. Most people who don't have children, are retired and have no contact with children, or whose children are now adults pay taxes and generally want a school system that produces an educated person. These people are automatically invested in the public school system as a result of their taxpayer status and expect to receive good value for their tax money. I know I do because 62% of my annual property taxes (nearly $3,800) goes to public schools in the community where I live.
Tyler: Students often do not value the education they receive until years later. As a former college English professor, I taught many lazy students, and I was constantly in dismay that so many of them were even admitted to college when they could not write a complete sentence. I frequently wondered what they had done for thirteen years in the public schools? Do you think the college system is in any way responsible for the decline of public education in the elementary and high schools? Should entrance requirements into colleges be raised?
Dr. Nick: I don't blame our college system in any way at all for the decline of public education in the elementary and high schools. State colleges and universities, community colleges, private and religious colleges and universities-all provide opportunities for students who are qualified to pursue them. It's the responsibility of the elementary and secondary schools to prepare students to take advantage of those opportunities and meet those qualifications. I do think these colleges and universities should regularly evaluate their entrance requirements, as I'm sure they do, to ensure that they maintain high standards of academic expectations.
These colleges and universities have a responsibility to graduate well-educated and highly competent young people. Watering down the entrance requirements to fill classrooms would be a disgrace and morally reprehensible. Not all high school students should be expected to attend a four-year college, although that's what many high school counselors and administrators tell them is possible. I do blame some schools of education, however, for the poorly prepared teachers they seem to turn out by the thousands each year. School of education reforms in recent years in teacher training programs, curriculum standards, course content, and subject matter proficiency have not produced quality teachers. If they had, our elementary and secondary school students would be exceptionally successful learners and you would not have asked this question. After all, teachers are supposed to help students learn to their capacity.
Tyler: Dr. Nick, how long do you think the public school system has been declining? Do you believe it has affected the American job force and economy?
Dr. Nick: The American public school system has been declining over the last fifty to sixty years. All you have to do is look at the statistics to see that the reforms attempted during the past half century have not resulted in significant changes in learning, test scores, and student achievement. In fact, in most curricular areas, there has been little or no change at all, and in math and English there has been decline.
Perhaps your readers would be interested in an excellent article published in the September 2007 edition of Harper's magazine. It's titled "Schoolhouse Crock (Fifty years of blaming America's educational system for our stupidity) and presents an excellent analysis of educational reform over the past fifty years.
This decline continues to affect the American job force, businesses, and our national economy as well. Many businesses and corporations have instituted their own systems of internal education to train their work force properly to do the work expected of them because they can't rely on the public schools.
Tyler: The ones who suffer the most in this situation are the children, yet as children, students are unlikely to know what they are not learning and how it will be detrimental for them. Furthermore, they may be too intimidated by teachers to complain when they are given more free time or fruitless assignments or actual lessons. What if anything, can students do to improve the quality of their own education?
Dr. Nick: At the elementary school, middle school, and junior high school levels of education, there is probably very little if anything the young people who attend these schools can do to improve the quality of their own education. They are too young, inexperienced, and immature. At the high school, however, some students are mature and serious enough about their own schooling to do something. I might add, though, that there are most likely very few who would actually challenge the powers that be (teachers, principals, superintendents, boards of education) for a variety of reasons. The two most significant ones, in my opinion, would be peer pressure and fear of retribution or retaliation on the part of teachers or administrators. Nonetheless, here are some actions mature, serious, intelligent, concerned high school students could do:
Go to your principal and complain about the poor quality teaching you're experiencing. Nothing will happen the first time, so go a second and third time. Bring other concerned students with you.
Be polite but assertive, telling your principal that you have a right to quality instruction but aren't receiving it. Clearly state your areas of complaint: too much classroom noise, inadequate instruction, lack of teacher interest, and so on.
Make an appointment with the superintendent to voice your concerns. Present a plan of how your grievances can be redressed. Bring other concerned students with you. Request permission to speak at a board meeting and present your complaints to these elected officials.
Phone and/or e-mail board members.
Form a committee of concerned students who weekly report to the principal about what is going on in your classrooms that should be improved or changed in the best interest of your education.
Tyler: Thank you for joining me today, Dr. Nick. Before we go, will you tell us a little bit about your website and what additional information can be found there about "The Nightmare That is Public Education"?
Dr. Nick: My website, http://www.drnickweb.com, is currently being updated. However, there is information about my book that your readers will enjoy, I'm sure, but I'm working on including much more.
Tyler: Thank you, Dr. Nick. I hope you have many parents and educators visiting your website and reading "The Nightmare That is Public Education."
Today, Tyler R. Tichelaar of Reader Views is honored to speak with Renato C. Nicolai (Dr. Nick) about his new book "The Nightmare That is Public Education: An Expose of What Really Happens in Public Schools.