ScienceIQ.com

What Causes Ice Ages....Or Global Warming?

We know from the rock record and cores taken from polar ice caps that periods of global cooling (ice ages, or periods of glaciation) have alternated with warmer, more temperate periods having climates similar to what we now experience (interglacial periods). Graphs of the change in earth's average surface temperature over geologic time indicate ...

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IceAgesGlobalWarming
Geology

What's In A Name?

Hurricane Elena as seen from the space shuttle. Have you ever wondered how hurricanes get their names? For several hundred years many hurricanes in the West Indies were named after the particular ... Continue reading

HurricaneElena
Biology

Pass the Iodized Salt Please

Have you ever wondered why common table salt contains iodine? It's because iodine is essential to your health. A diet lacking in sufficient quantities of iodine will lead to the production of a goiter ... Continue reading

IodizedSalt
Astronomy

Not Quite A Planet

Astronomers have dubbed it 'Quaoar' (pronounced kwa-whar) after a Native American god. It lies a billion kilometers beyond Pluto and moves around the Sun every 288 years in a near-perfect circle. ... Continue reading

Quaoar
Engineering

Making Cars Out of Soup

There was an old TV show set on a spaceship some time in the future which included a machine about the size of a microwave oven. Whenever people wanted something like a meal or a component to repair ... Continue reading

MakingCarsOutofSoup

Galileo Thermometers

GalileoThermometersEvery substance has the property of 'mass', which is the basic physical presence of matter. Matter occupies space. A physical mass contained within a physical space produces the physical property of 'density'. For practical purposes, we define density as the mass of material contained within a specific unitary volume, usually as grams per cubic centimeter. The density of a material is a reflection of the energy contained by the molecules that compose the material. Molecular energy is exhibited in molecules by various vibrational motions. The more energy the molecules contain, the more they vibrate. The higher the temperature, the more the molecules vibrate and bump into each other. This tends to push teh molecules apart so that fewer of them occupy the same volume of space as the temperature increases.

Thus the mass of any material contained within a unitary volume of space tends to decrease as the temperature increases. Therefore density is inversely proportional to temperature; as temperature increases, the density of materials decreases. Each different material exhibits its 'energy behaviour' in its own unique way. This can be used to correlate the density of a material with its temperature. A Galileo thermometer is constructed using small glass spheres to make a series of floating environments within a larger tube that is usually filled with water. Each sphere contains a specific amount of water and air or another liquid and air, and is tagged with a precisely calibratedcounterweight.

The counterweightis marked with a specific temperature. Each sphere thus has a specific density at a specific temperature. The spheres float within the primary liquid at a level determined by the difference in their densities. Because each of the spheres changes density with temperature at a different rate, the difference between the densities of the two materials decreases in a predictable manner. The level at which any particular sphere floats within the primary liquid changes accordingly. In this way, the temperature is clearly indicated by the sphere floating at the lowest level within the primary liquid.