ScienceIQ.com

Drip, Drip Water Clocks

Water clocks were among the earliest timekeepers that didn't depend on the observation of celestial bodies. One of the oldest was found in the tomb of the Egyptian pharaoh Amenhotep I, buried around 1500 BCE. Later named clepsydras ('water thieves') by the Greeks, who began using them about 325 BCE, these were stone vessels with sloping sides that ...

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DripDripWaterClocks
Astronomy

Powerful Quasars

Quasars appear as distant, highly luminous objects that look like stars. Strong evidence now exists that a quasar is produced by gas falling into a supermassive black hole in the center of a galaxy. ... Continue reading

PowerfulQuasars
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

Jumping Starlight

'Twinkle, twinkle, little star, how I wonder what you are,' says the song by Jane Taylor. But stars don’t really twinkle; their light reaches the earth in a steady way. Why then do we see them ... Continue reading

JumpingStarlight
Geology

Metamorphic Rock

There are three rock types on earth, named according to how the rock is formed. Igneous rock forms as it cools to a solid from molten rock. Sedimentary rock is formed from the consolidation of ... Continue reading

MetamorphicRock

The Real Lord of the Rings

SaturnWhy is Saturn the only planet with bright, easily seen rings? Saturn is not the only planet in our solar system with rings. Jupiter, Neptune and Uranus all have rings. Jupiter's rings are much smaller and very dark when compared to Saturn's rings. Jupiter's rings could be much older than Saturn's rings if the idea is correct that the particles would become dull as space dust sticks to them. Neptune and Uranus have very dark, almost black, rings. Scientists have said that these three planets' rings might have formed after collisions with meteorites or asteroids that sent dirt and rocks into orbit around these planets. So, whatever formed Saturn's rings may not have happened to any other planet in a very long time.

How did the rings form? This question could have many possible answers. The size and shape of the rings give us some hints. The rings are very wide, 250,000 km, but very thin, only a few tens of meters (about 100 feet). If the rings started out as bits of matter spread over a large area, over time collisions could have slowly 'collapsed' them into flattened rings. And the rings certainly are flat! If you imagine a model of Saturn one meter wide, the rings would be only 1/10,000 the thickness of a razor blade. Wow!

Another possible origin is one of Saturn's moons that was destroyed by a collision. The dirt and rocks from that moon spread into the rings. Keep in mind that the rings are like a flat plate that cuts Saturn in two halves as if all of the pieces were originally orbiting in one plane. The pieces of stuff that make up the rings of Saturn range in size from microscopic dust to barn-size boulders. This big difference in size of the pieces of the rings fits either of the two theories about the formation of the rings.