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Brain Waves

Your brainwaves normally vary from a low vibrational state of about one Hz ('Hertz,' or vibrations per second) to a high of about 30 Hz. The highest-frequency vibrations, ranging from about 13 to 30 Hz, are called beta waves. When your brain is in a beta state, it's in a high state of alertness. Alpha waves are somewhat slower, from 8 to 13 Hz. If ...

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BrainWaves
Medicine

The Incredible Capacity Of The Immune System

By age two, infants in the US can receive up to 20 vaccinations. In view of that, concerns had been raised that too many immunizations could overwhelm an infant's immune system. ... Continue reading

TheImmuneSystem
Geology

Tornadoes

Tornadoes are perhaps one of the most terrifying manifestations of weather. Luckily for the rest of the world, they occur most frequently in the United States. A typical tornado season may see as many ... Continue reading

Tornadoes
Geology

A National Park of Caves

Carlsbad Caverns National Park has been designated as a world heritage site because of its unique and surprising geology - a story more than 250 million years old that can be read both above and below ... Continue reading

ANationalParkofCaves
Astronomy

Magnitude of an Astronomical Object

'Visual magnitude' is a scale used by astronomers to measure the brightness of a star. The term 'visual' means the brightness is being measured in the visible part of the spectrum, the part you can ... Continue reading

MagnitudeofanAstronomicalObject

What is Oxidation?

WhatisOxidationThe term 'oxidation' derives from the ancient observation of rust (oxide) formation. Early chemists could determine an increase in the weight of a metal as it apparently captured something from the air and transformed into a completely different material The 'something' was eventually identified as oxygen, and the new materials that formed were called 'oxides'. The chemical process came to be known as oxidation.

The underlying transaction of oxidation was eventually identified as an alteration of the electronic structure of an element or compound. More accurately, this can be described as how strongly an atom 'owns' or controls the electrons around it. In an ion and ionic bonding, the atom controls its electrons completely, either by accepting them or by giving them up. In covalent bonding, an atom can be seen as sharing control of its electrons with another atom.

In oxidation, an atom loses control over a certain number of electrons to a material called an oxidizing agent. The loss of electrons by a chemical species is oxidation. Oxidation always occurs simultaneously with reduction. For example, the sulfide ion, S2-, can be easily oxidized to neutral sulfur atoms. To do this, each sulfide ion must give up ownership of two electrons to an oxidizing agent. In another example, the two carbon atoms of a carbon - carbon double bond lose control of two electrons in the reaction with an oxidizing agent to form two C - O bonds.