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It's Dusty Out There

There is no lower limit to the size of the solid particles that move around the Sun. Small asteroids grade downward into large meteoroids and then into smaller pebbles and so on down to the tiniest particles of dust. The most numerous particles are the smallest ones. A particle larger than a millimeter (about one twenty-fifth of an inch) in ...

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ItsDustyOutThere
Chemistry

Table Salt - It's All In The Ions

All elements are defined by their individual atoms, which are in turn identified by the number of protons in the nucleus of each atom. Since protons are carriers of positive electrical charge, there ... Continue reading

TableSaltItsAllInTheIons
Astronomy

The Strange Spin of Uranus

Directional terms like north and south make sense here on Earth. The north and south axis of the Earth is relatively perpendicular to the plane of the Earth's orbit around the sun. Actually, Earth's ... Continue reading

UranusSpin
Medicine

Civets Lesson

Recently a Chinese television producer fell ill with Severe Acute Respiratory Syndrome, better known as SARS. He is the first victim in many months, although an epidemic last year claimed nearly 8000 ... Continue reading

CivetsLesson
Biology

A Sweaty Subject

When human body temperature rises, tiny muscles around the sweat glands in the skin contract, squeezing perspiration - better known as sweat - out through the pores. Sweat is about 99 percent water. ... Continue reading

Sweat

Earth's Magnetism

EarthsMagnetismMost ancient civilizations were aware of the magnetic phenomenon. Sailors in the late thirteenth century used magnetized needles floating in water as primitive compasses to find their way on the sea. However, most believed that the magnetization of the Earth came from the heavens, from the so called celestial spheres which Greeks invented. It was believed that the night sky is just a shell with small holes were the stars are visible and that beyond that shell was an amazing apparatus of instruments, amongst which magnets, that controlled lives of people on the surface of the Earth.

It was William Gilbert, an English physician, who was the first one to question the notions of magnetic heavens. He proposed that Earth itself was magnetic. Lodestones, naturally occurring magnetic magnetite (an ore of iron) were known at that time and he thought that Earth may be just a giant lodestone. He created a simple model to prove his point. He made a sphere of lodestone; he called it terrella, and then used a primitive compass on and around this sphere to investigate the phenomenon.

He noticed that the compass needle moved as expected, always pointing to the magnetic poles no matter where it was placed around the sphere. But only an intelligent scientist like himself could have noticed something else that was proof positive that the Earth’s magnetism comes from below and not above. The compass needle had a small horizontal declination or dipping towards the pole, and this dipping changed depending if the position of the compass was on the northern or southern hemisphere. When he removed his sphere the declination was still there, it did not change into an inclination or upward rise as it should have done if the magnets were truly above in the heavens. He published his findings in his book ‘De Magnete’ in 1600 and placed himself as one of history’s first true scientists and experimenters.