Monday, December 24, 2012

Green Science Fair Projects - Creative Ideas For Environmentally Oriented Projects

Here are many ideas for science fair projects that are geared toward environmental awareness, renewable energy and sustainable living.

Wind Energy Demonstration - Build a wind tower with small electric motor which generates power to do work or charge a battery. Use an external fan or hair dryer to simulate wind. Supply supporting information from major wind energy manufacturers.

Renewables Survey - Conduct a study on the best renewable energy sources to use in your area, and identify the opportunities and challenges to implementing such a plan. Interview providers, agencies, landowners.

Green Science Fair Projects - Creative Ideas For Environmentally Oriented Projects

Hydrogen Generation - Build a solar powered water hydrolyzer. Use a solar cell to split water into Hydrogen and Oxygen. Supporting information would describe the Hydrogen Economy and fuel cell powered devices.

Hydroelectric Power - Build a hydroelectric generator. Small scale to have falling water turn a turbine which generates electricity. Research and document the environmental tradeoffs of hydropower.

Biodiesel - Create biodiesel from discarded fryer oil. Show the reactions and the issues around using biodiesel in conventional diesel vehicles. Research new developments in biodiesel generation.

Concentrated Solar Power - Create a working model of a concentrated solar power (CSP) station. Discuss hot fluid flow and storage, load leveling.

Composting - Perform an analysis of various waste streams to understand the potential reduction from composting (cafeteria, home, restaurant, etc.). Supporting evidence on uses of compost or organic matter in biofuels.

Cheapest / Greenest Batteries - Calculate the life cycle cost of various types of batteries in typical applications. For example, how many alkaline, rechargeable NiMH or Lithium AA would be required to operate a digital point-and-shoot for 1 hour per day for 1 year. Calculate the extended cost per year and measure the landfill and toxic metal contribution in addition to the total cost. Will require calculating life of various battery types in various applications.

Energy Audits - Create and execute an energy audit in various settings and attempt to measure the impact of various changes. Obtain electric bills or other usage metrics and do before/after data analysis. Focus on specific areas such as compact fluorescent (CF) lighting or setback thermostats.

Smart Power Strips - Some devices are sold that will measure electricity consumption on specific outlets. Consider using them to calculate the effectiveness of smart power strips, and calculate the payback period of a strip compared to the annual electricity usage avoided.

Carbon Footprint - Calculate the carbon footprint of various people you know. Suggest ways for them to lower their footprint. Explain the concept and compare footprints of your users to those in various places/countries.

Green Rooftops - Build a green rooftop and demonstrate the value in food/plant production and energy savings.

Waste Biomass to Energy - Research and conduct a survey of local agricultural or industrial processes that generate unused biomass that could be diverted to energy production through burning or ethanol production. Contact the waste stream generators and interview to understand their issues and the status of biomass reuse.

Cellulosic Ethanol - Demonstrate the process and effectiveness of various process or substances used to break down cellulose to fermentables for ethanol production. Ferment a control and various experimental settings and compare the quantity of ethanol produced.

Clean Water - Measure the water quality of various water sources such as ponds, lakes and streams. Note the quality variations of several samples from the same source over time and from various locations, such as upstream and downstream of an industrial site.

Landfill Gas Power - Demonstrate the generation of energy from landfill gases. Build a sealed landfill with organic material. Capture and show the methane generated and describe applications of landfill gas used to produce electricity.

Animal Waste Power. Demonstrate the generation of energy from animal waste. Similar to above but a little higher on the "gross" scale! Gather statistics on total mass of beef, pork and poultry waste generated in your country in one year and calculate the potential MWh per year of electricity which could be generated. Convert to currency.

Automobile Mileage Studies. Measure the impact of various mileage improvement strategies. It helps to have a vehicle with a reliable instantaneous MPG calculator. Maintain strict controls on ambient temperature, warmup, elevation change, wind and other nonvariables, and vary tire pressure, acceleration rate, vehicle speed, total vehicle weight and other factors. Run multiple nonsequential trials for each and show variability within and across variable groups. Make conclusions on effectiveness of each variable. Predict a target MPG from the combination of several factors and then experiment to see how close the actual values came to your predictions.

Electric Vehicle Charging Station. Design a solar powered electric car recharging station. Using current equipment specifications, calculate how large the station would need to be to recharge a current production electric vehicle. Estimate the cost of construction and years of operation to calculate cost per kWh and compare to conventionally-purchased electricity.

These are just a few ideas for combining Green with your next Science Fair project. Do Well!

Green Science Fair Projects - Creative Ideas For Environmentally Oriented Projects
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John Huegel is a photographer in the Erie, Pennsylvania area who specializes in Seniors, Dance Studio, Families and other groups. He is active in many charitable and volunteer activities in the Erie area. His work can be seen at http://jhphotomusic.com

Friday, December 21, 2012

Elementary Science Fair Projects - Making the Perfect Display Board

Your display board gets a chance to speak about your elementary science fair project even before you get a chance to speak. So I would advise you pay some good attention to it, as this will be the first thing that the judges will examine.

Here are some elements that go into making the perfect display board for your elementary science fair:

Your Supplies: Your display board must be made up of hard cardboard or plywood. A wooden board may be very heavy to be carried around. It should consist of three panels that can be slightly folded to make the board stand on its own. Avoid using a poster board as it can get warped and fall over, causing you embarrassment. Cover the display board with a decent colored contact paper, fabric or wallpaper. Your Color Scheme: You must not use more than 3 contrasting colors. The background can be white, light blue, yellow or some light color. The title and the subtitles must have darker colors such as dark green, dark blue or red. Make your papers and reports stand out by putting a dark colored border made of construction paper around them. Never use neon colors as they do not look professional and would distract the onlooker from the theme of the project. Your Layout: Now we come to the most important part of your elementary science fair display. Your display board must be simple, and neatly organized. It must be inviting enough for people to come over and want to learn more about your project.
Title: Your title is actually your conclusion in short. The letters used for the title should be large and should be placed on the top part of the central panel. Subtitles: Your subtitles must be slightly smaller than the title and can be made of self-sticking letters which you can buy from a local office supplies store. Pages displayed:The print on the report pages must be large enough with important points well highlighted so that the person standing at your display table can read them clearly. Although you can manually draw graphs, it is best to use a computer for tables, charts and graphs. Center of Attraction: Have an impressive graphic just below the title that will be the center of attraction of your display and that can lead the onlooker to other parts thereafter. Diagrams: Create relevant drawings using pencil first and then colors. Use an opaque projector if you have access to one. Photographs: Photographs display articles or equipment that cannot be carried to the elementary science fair. They also display you in action during different stages of the experiment. They make your display lively and tend to attract attention. A base: Your display board must be placed on a sturdy table covered with a light colored table cloth in keeping with your color scheme. Place neatly labeled copies of your abstract, project report and your journal on the table neatly. Model and Equipment: Place your model or demonstration equipment on the table besides your abstract, project report, and journal. A well made model can be the highlight of the display table. Avoid loose cables hanging from the table or the display board.

Elementary Science Fair Projects - Making the Perfect Display Board

That's about everything you need to know about making the perfect display board!

Now, before you get cracking with your newfound knowledge, I have a free copy of "Easy Steps to Award-Winning Science Fair Projects" for you, which you can download right now from the link below.

Elementary Science Fair Projects - Making the Perfect Display Board
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Your next step is to download a free copy of Easy Steps to Award-Winning Science Fair Projects to lead you through your own project.

A great resource for science project ideas, as well as how to do them, is the science project blog. Definitely worth bookmarking.

Good luck!

About the Author
Aurora Lipper has been teaching science to kids for over 10 years. She is also a mechanical engineer, university instructor, pilot, astronomer and a real live rocket scientist (You should see the lab in her basement!) She has inspired thousands of kids with the fun and magic of science.

Tuesday, December 18, 2012

Bachelor Degree - BA Vs. BS

There are a lot of people who wonder why some bachelor degrees, when you get them, designate you as a bachelor of arts and other bachelor degrees designate you as a bachelor of science. Well, the answer is very simple.

A Bachelor of Arts degree goes to somebody who gets a bachelor degree in any non-technical, or science related field. A Bachelor of Science degree goes to somebody who does get a degree in a science related field. The designations are set up by the colleges themselves.

So, what's the difference? Does it really matter?

Bachelor Degree - BA Vs. BS

The answer to that question may shock you. It matters very much.

The reasons will not be immediately apparent to the student, but when he or she goes into the real world to get a job, they are going to be in for a rude awakening if they're looking for a specific type of job and don't have a bachelor of science degree.

If you're scratching your head wondering why this even matters, the answer is as follows. Most Bachelor of Science programs are a little more intense than a Bachelor of Arts program. In other words, in addition to the degree having to be in a science related field, the degree itself will contain more required courses than a Bachelor of Arts degree. Of course this varies from college to college, but within each school the bachelor of science program is always more intense than the bachelor of arts program. There may be one more required course per semester, or more science courses required. The bottom line translation is, the program is harder to get through; in some cases, a lot harder.

So why does this matter? Well, there are certain jobs, such as in the fields of engineering, chemistry and physics, just to name a few, where if you look in the classified ads in your local paper, it will clearly say, "bachelor of science degree required". So if you graduated college with a bachelor of arts degree, you won't be able to apply for that job. Oh, you can still send in your resumé, but don't expect to be called in for an interview.

Now, here is where this becomes very important. There are some colleges that will allow you to get a Bachelor of Arts degree in math, which is technically one of the sciences. The program doesn't have as many requirements. So when you graduate, while you technically have a degree in one of the sciences, because of the fact that you don't have a bachelor of science degree, you will not be eligible for that particular job that says "bachelor of science degree required".

It may seem like a nit picky thing, but these companies want to know that you can get through the tougher curriculum. They want to know that you have a good chance of being able to handle the job that you're applying for. Is there a really big difference between a bachelor of arts and bachelor of science degree? In an undergraduate program, probably not too much. But in the minds of the companies, where there is so much competition for jobs, it is a big deal.

Bachelor Degree - BA Vs. BS
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Michael Russell Your Independent Bachelor Degree guide.

Friday, December 14, 2012

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.

History of Educational Technology

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.

History of Educational Technology
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Presently Research Associate in the ICFAI University and have been pursuing PhD from Gauhati University, Assam.

Sunday, December 9, 2012

10 Interactive Science Education Websites For Grades K-12

As science teachers prepare to go back to school for the next school year, some have already returned, they are always searching for good online resources to supplement their lessons. It is always nice when someone helps them by previewing science websites and make recommendations.

The best science education websites are interactive, allowing students to make changes to or manipulate variables to observe what happens and share with others. This falls within the boundaries of inquiry-based teaching and learning. Students are developing their own experiments, observing the results, and reporting their findings.

The following websites have been previewed and meet the criteria of interactive and inquiry-based:

10 Interactive Science Education Websites For Grades K-12

FOSS Web - is designed to support Full Option Science System (FOSS) Science K-8 science kits, but anyone can use the interactive activities for grades K - 8.

Volcano Cams - provides real-time views of volcanoes around the world. Students can observe volcanoes and develop their own experiments using these virtual cams for grades 5 - 12.

Explore eLearning - provides simulators for all science concept areas for grades 3 - 12.

Real-time Stream Flow Data across the Nation - by the US Geological Survey (USGS) provides real-time data typically are recorded at 15- to 60-minte intervals and transmitted to the U.S. Geological Survey offices every four hours. Data can be selected by state and county for grades 8 - 12.

Real-time Water Quality Data across the Nation-by the US Geological Survey (USGS) provides real-time water quality data are returned directly field instruments. Data are updated at five minute to one-hour intervals. Data can be selected by state and county for grades 8 -12.

Design a Roller Coaster - allows students to design their own roller coaster. They are building a conceptual coaster using the same physics concepts that are used to design real coasters for grades 6 - 12.

Human Anatomy Online - allows students to explore the Human Anatomy. Each topic has animations, 100's of graphics, and thousands of descriptive links, for grades 4 - 12.

Earth and Atmospheric Kids Crossing - allows students explore water, atmosphere, and weather for grades 3 - 8.

Recycle City - lets students explore plenty of ways to see how a city's residents recycle, reduce, and reuse waste for grades 3 - 8.

MBG Net - allows students to explore Biomes, Freshwater Systems, and Marine Systems of the World for grades 6 - 12.

10 Interactive Science Education Websites For Grades K-12
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Science and Math Education Website: Teaching Science and Math

David R. Wetzel, Ph.D. - Currently a FreeLance Writer, Retired Science Education University Professor and Public School Science Teacher. He is an avid technology user and researches technologies which impact everyday science education.

Thursday, December 6, 2012

3rd Grade Science Project Ideas

Time for another elementary school science project! Now that your kid has risen to the 3rd grade, he or she cannot hand in the simpler projects that they did in grades before. No simple magnet experiments anymore. And yet, the typical science project, the volcano, is too complicated for a 3rd grader. What to do?

Here are some of many 3rd Grade Science Project Ideas:

1. Separate the colors found in color markers

3rd Grade Science Project Ideas

Materials

- paper towels - scissors - assorted water markers - glass container - pencil/pen - water

Procedure

1. Cut the paper towel into rectangular strips about one inch wide and as tall as the glass container.

2. Take one of the markers and draw a horizontal line on the paper towel strip about one inch from the bottom.

3. Take a pencil or a pen. Poke a hole in the middle of the paper towel strip. Insert the pencil or pen through this hole so the strip hangs in the middle.

4. Rest the pencil or pen on the top edges of the glass container. The paper towel strip should be hanging into the glass container.

5. Take the pencil/pen off. Pour enough water into the glass container so when the strip is put back in, the water submerges the very bottom of the strip.

6. Put the strip back. Watch the water travel up the paper towel strip. Wait.

7. Repeat these steps for all the markers. See what colors each marker color is made out of!

Some other 3rd Grade Science Project Ideas:

2. Water and Penny Experiments

Materials

-many pennies -water -eye dropper - clear drinking glass

Procedure

One Experiment

1. Take the glass of water and fill it all the way to the top.

2. Carefully add pennies into the water one at a time. Does the water spill over immediately? How many pennies can you add before the water spills over?

Second Experiment

1. Put a penny on the table.

2. Take an eyedropper and begin dripping water on the surface of the penny. How many drops of water can fit on a penny? More than you think!

3rd Grade Science Project Ideas
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Need easier ideas and experiments? Visit Alan's site for more SIMPLE 3rd grade science project ideas and info on how to get COMPLETE science projects.

Sunday, December 2, 2012

The Differences of Education in the Past

Elementary and high school today does not bear much resemblance to the elementary and high schools of fifty and sixty years ago.

We tend to think of change over time as making things worse, and to idealize the past as better and simpler. That was not always the case. However, many people perceive things this way.

Instead of taking this view, we should consider the many positive changes that have occurred over the past six decades that have led to great advances in education in the United States.

The Differences of Education in the Past

One major change that must be mentioned is desegregation. Segregation in schools, or putting black students in separate schools from white students, was made illegal by the Supreme Court ruling in the Brown V. Board of Education case in 1954. Now all students, regardless of race, have the same rights and can attend the same schools.

There have also been improvements in gender inequality. Can you imagine a high school where all of the young women were learning to cook and sew in Home Ec, and all of the boys were learning to do auto repair in auto shop? It sounds ridiculous, and yet that was the picture in many American high schools prior to the late 1960s.

Girls were also disadvantaged academically because of gender bias. They were discouraged from taking advanced math and science courses, and were told that they did not have the natural aptitude to succeed in these subjects. That is no longer the case. Now girls are encouraged in all lines of study, including science and math.

We also consider different learning styles in modern American schools. Different students learn differently. Some are visual learners, others need to hear something repeated a few times to retain the information, still others may need 'hands on' application of course materials. In previous decades, this was not recognized the way it is today.

Teachers now also make a more competitive wage. It used to mean a lifetime of scanty paychecks if you wanted to teach. Now, we recognize that teachers are hardworking professionals who deserve a livable wage.

The Differences of Education in the Past
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A lot has improved on education, the materials has also changed, we are now widely using a whiteboard, board-markers and a dry erase marker. If you are still not aware of it, get the information at http://dryerasemarker.org.