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Origins Of The Meter

The origins of the meter go back to at least the 18th century. At that time, there were two competing approaches to the definition of a standard unit of length. Some suggested defining the meter as the length of a pendulum having a half-period of one second; others suggested defining the meter as one ten-millionth of the length of the earth's ...

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OriginsOfTheMeter
Biology

Embryo Transfer and Cloning

Scientists use embryo transfer technology to obtain more offspring from a genetically superior animal. For instance, if a farmer owns a cow that produces excellent milk and wants more cows to produce ... Continue reading

EmbryoTransferandCloning
Physics

The Coriolis Effect

The Earth, rotating at about 1000 miles per hour (1,609 km/hr), influences the flow of air and water on its surface. We call this the Coriolis Effect, named after French scientist Gaspard Coriolis, ... Continue reading

Coriolis
Biology

Flu Pandemics in the 20th Century

If a flu virus emerges that is either new or that has not circulated in many years, and if it is able to spread easily from person to person, it could quickly travel around the world and cause serious ... Continue reading

FluPandemics
Science

Classifying Organisms

Have you ever noticed that when you see an insect or a bird, there is real satisfaction in giving it a name, and an uncomfortable uncertainty when you can't? Along these same lines, consider the ... Continue reading

ClassifyingOrganisms

Quarks

QuarksQuarks are the most fundamental particles that we know of. Both protons and neutrons are made of quarks. We know quarks exist; we have experimental proof. However nobody has been able to isolate them; they are always found bound in groups of two or three, like those in protons or neutrons. There are six different types of quarks (physicists call them 'flavors'), each with a unique mass. The two lightest, unimaginatively called the Up and Down quarks, combine to form protons and neutrons as shown in the image. The heavier quarks aren't found in nature and have so far only been observed in particle accelerators; these are: the Strange, Charm, Top and Bottom quarks. Physicist Murray Gell-Mann gave quarks their amazing name from a word in James Joyce's 'Finnegan's Wake'. Gell-Mann received the Nobel Prize in Physics in 1969 for his contributions to the theory and interactions of elementary particles, including quarks.

Here is what Gell-man says about himself on his own Web site:

In 1969, Professor Gell-Mann received the Nobel Prize in physics for his work on the theory of elementary particles. Professor Gell-Mann's 'eightfold way' theory brought order to the chaos created by the discovery of some 100 particles in the atom's nucleus. Then he found that all of those particles, including the neutron and proton, are composed of fundamental building blocks that he named 'quarks.' The quarks are permanently confined by forces coming from the exchange of 'gluons.' He and others later constructed the quantum field theory of quarks and gluons, called 'quantum chromodynamics,' which seems to account for all the nuclear paticles and their strong interactions.