ScienceIQ.com

What Makes a Candle Burn?

Have you ever wondered how a candle works? If you haven't, think about it for a while. Why does it take so long for the wick to burn down? Why does it need a wick at all? ...

Continue reading...

CandleLight
Physics

Single Molecule Electroluminescence

Incandescence and luminescence are two main ways of producing light. In incandescence, electric current is passed through a conductor (filament of a light bulb for example). The resistance to the ... Continue reading

Electroluminescence
Astronomy

Reading The Colors of the Spectrum

Did you ever wonder how scientists can tell us so much about distant stars, for example, the surface temperature or chemical makeup of a star, light years away from Earth? Scientists can only use what ... Continue reading

SpectrumColors
Biology

A Tickle is All in the Timing

It's often been noted that no matter how hard you might try, you can't tickle yourself. Why not? Whether it's your finger or someone else's, a prod in the ribs is a prod in the ribs. Why should only ... Continue reading

Tickle
Geology

Our Most Abundant Fossil Fuel

Coal is our most abundant fossil fuel. The US has more coal than the rest of the world has oil. There is still enough coal underground in this country to provide energy for the next 200 to 300 years. ... Continue reading

OurMostAbundantFossilFuel

Can You Drink Too Much Water?

TooMuchWaterBody fluids account for over 70% of an average adult's body. Our body fluids are composed of water and substances called electrolytes. Dissolved in water, these materials develop tiny electrical charges that stimulate and regulate many of our body functions such as heart rate. Our bodies have several mechanisms for eliminating fluids including tears, excretions from the bladder, bowels and through perspiration. Although the bladder and bowels are responsible for the removal of body waste products, the primary function of perspiration is the regulation of body heat and is our body's principal mechanism of cooling itself.

Perspiration or sweat is primarily water and the electrolytes sodium and chloride. As sweat is exposed to relatively drier air, it evaporates, cooling our bodies. If the body can not cool down, our core body temperature increases, which in turn has a negative effect on a number of different body functions. When sweat losses are greater than fluid intake, individuals become dehydrated. Dehydration of 1-2% of your body weight begins to significantly affect some body functions and negatively affects athletic performance. A 3% loss of body weight increases the risk of developing heat cramps, heat exhaustion or heat stroke. These levels of dehydration are common in many sports, like tennis.

However, to become completely rehydrated, it is not enough to drink just plain water, since water does not contain enough of the electrolytes our bodies lose through sweating. It is also possible to drink too much water. Excessive water or low-sodium fluid consumption, teamed with heavy sweating, can readily lead to a relative excess of water compared to sodium in the blood, a condition known as 'hyponatremia' (low blood sodium). This is a dangerous and potential threat to many athletes.