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Protozoa That Cause Disease

Diseases caused by protozoan parasites are among the leading causes of death and disease in tropical and subtropical regions of the world. Developing countries within these areas contain three-quarters of the world's population, and their populations suffer the most from these diseases. Controlling parasitic diseases is a problem because there are ...

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ProtozoaThatCauseDisease
Medicine

Your Friend, the Fat Cell

A healthy, adult human body contains about 35 billion fat cells. Each contains about 0.5 micrograms of fat. Stored fat is essential to good health. Fat is the body's principal energy reserve. It is ... Continue reading

FatCell
Engineering

New York to London in Less Than Two Hours

If flying from New York (USA) to London (UK) in less than two hours sounds like science fiction, continue reading. On September 1, 1974 Major James V. Sullivan, 37 (pilot) and Noel F. Widdifield, 33 ... Continue reading

FastestPlane
Physics

Why Does A Golf Ball Have Dimples?

A golf ball can be driven great distances down the fairway. How is this possible? The answer to this question can be found by looking at the aerodynamic drag on a sphere without dimples (while it's ... Continue reading

GolfBallDimples
Astronomy

Nursery of Giants Captured in New Spitzer Image

Typically, the bigger something is the easier it is to find. Elephants, for example, are not hard to spot. But when it comes to the massive stars making up the stellar nursery called DR21, size does ... Continue reading

GiantsSpitzerImage

Water, Water Everywhere, But Not A Drop To Drink

WaterWaterThat line, from The Rime of the Ancient Mariner, by Samuel Taylor Coleridge, captures a truism -- we cannot drink salt water to quench our thirst. But why not? The answer lies in understanding the process of osmosis. Osmosis is the process whereby water molecules move from an area of higher concentration to an area of lower concentration. Osmosis occurs to stabilize a system. Think of putting ice cubes in a cup of hot chocolate. Besides being diluted with the water, the resulting liquid in the cup reaches an equilibrium between the two temperature extremes. This is similar to the way osmosis works. A higher concentration of water molecules will seek to reach an equilibrium with a lower concentration of water molecules.

But what does that have to do with drinking salt water? Our cells are permeable membranes. That means some things can move in and out of cells through the cell wall, while other things cannot. Salt water is nothing more than water with suspended particles of natural salts. These salt particles are too large to pass through the cell walls. When taken into the bloodstream, salt water stays in the blood plasma and does not pass into the cells. In fact the reverse occurs.

If we were to drink salt water, and our blood plasma takes in the salt water, the salt in the water takes up space that the water molecules would normally take up. In effect, there is a lower concentration of water molecules in salt water. The water that is contained within the cells, is low in salt. That means there is a higher concentration of water molecules within the cells. So instead of water entering the cells to replenish them, water actually leaves the cells, dehydrating the cells even more. The more salt water you drink, the thirstier you become, until the major systems of your body start to shut down. Leave the salt water to the fish.