Magnesium (pronounced /mæɡˈniːziəm/, mag-NEE-zee-əm) is a chemical element with the symbol Mg, atomic number 12 and common oxidation number +2. It is an alkaline earth metal and the eighth most abundant element in the earth's crust by mass, although ninth in the Universe as a whole. This preponderance of magnesium is related to the fact that it is easily built up in supernova stars from a sequential addition of three helium nuclei to carbon (which in turn is made from three helium nuclei). Magnesium constitutes about 2% of the Earth's crust by mass, which makes it the eighth most abundant element in the crust. Magnesium ion's high solubility in water helps ensure that it is the third most abundant element dissolved in seawater.

Magnesium is the 11th most abundant element by mass in the human body; its ions are essential to all living cells, where they play a major role in manipulating important biological polyphosphate compounds like ATP, DNA, and RNA. Hundreds of enzymes thus require magnesium ions in order to function. Magnesium is also the metallic ion at the center of chlorophyll, and is thus a common additive to fertilizers. Magnesium compounds are used medicinally as common laxatives, antacids (i.e., milk of magnesia), and in a number of situations where stabilization of abnormal nerve excitation and blood vessel spasm is required (i.e., to treat eclampsia). Magnesium ions are sour to the taste, and in low concentrations help to impart a natural tartness to fresh mineral waters.

The free element (metal) is not found naturally on Earth, since it is highly reactive (though once produced, is coated in a thin layer of oxide—see passivation—which partly masks this reactivity). The free metal burns with a characteristic brilliant white light, making it a useful ingredient in flares. The metal is now mainly obtained by electrolysis of magnesium salts obtained from brine. Commercially, the chief use for the metal is as an alloying agent to make aluminium-magnesium alloys, sometimes called "magnalium" or "magnelium". Since magnesium is less dense than aluminium, these alloys are prized for their relative lightness and strength.

From Wikipedia under the GNU Free Documentation License
Thu Dec 17 02:31:11 2009

What is the theoretical yield of magnesium oxide?
Q. I use to know how to do these but I'm stumped. Can anyone walk me through this? Here's the given information: Mass of the empty crucible:15.3g Mass of crucible+magnesium: 15.83g Mass of crucible + product: 16.04g Mass of magnesium used: 0.3g Mass of magnesium oxide: 0.19g I don't know where to even begin. If you could help me I would be very appreciative!
Asked by Akumi B - Fri Dec 18 22:07:07 2009 - - 1 Answers - 0 Comments

A. Theoretically reactions go to completion so if you use.3g of Mg then you would have used .0123431393 moles and then you would produce .0123431393 moles of MgO which would weigh .497g
Answered by Erik - Fri Dec 18 23:46:40 2009

How many grams of magnesium nitride can be produced in the reaction of 35g of magnesium and 15g of Nitrogen?
Q. Magnesium nitride can be formed by the reaction of magnesium metal with nitrogen gas. How many grams of magnesium nitride can be produced in the reaction of 35 grams of magnesium and 15 grams of nitrogen? Also calculate the % yield. Can someone please tell me how to solve and not just list the answer. I really want to learn not just pass. I very much appreciate :) Thanks,
Asked by Sciguy - Sun Oct 12 19:21:11 2008 - - 1 Answers - 0 Comments

A. 3Mg + N2 Mg3N2 (35g Mg)(1mol / 24.30 g) = 1.44mol Mg (15g N2)(1mol / 28g) = 0.53 mol N2 We now find for the limiting reagent (1.44mol Mg)(1mol Mg3N2 / 3mol Mg) = 0.48 mol Mg3N2 (0.53mol N2)(1mol Mg3N2/ 1mol N2) = 0.53mol Mg3N2 Mg is limiting reagent since it produces less Mg3N2. 0.48 mol Mg3N2 is also the theoretical yield. Percent yield is calculated by (Actual Yield)/(Theoretical Yield) The question did not give a actual yield, the actual yield is mostly when you do an an actual experiment or something.
Answered by D - Sun Oct 12 19:31:28 2008

What is magnesium sterate and what is it made of?
Q. Most medications and sugar free foods contain magnesium stearate. I am trying to find the cause of some allergy problems and am wondering where this additive comes from or made of.
Asked by oldbat - Fri Nov 3 23:23:41 2006 - - 1 Answers - 0 Comments

A. I found thin in google. This might help u. Magnesium stearate, also called octadecanoic acid, magnesium salt, is a white substance which is solid at room temperature. It has the chemical formula C36H70MgO4. It is a salt containing two equivalents of stearate (the anion of stearic acid) and one magnesium cation (Mg2+). Magnesium stearate melts at about 88 C, is not soluble in water, and is generally considered safe for human consumption. Because it is widely regarded as harmless, it is often used as a filling agent in the manufacture of medical tablets and capsules. In this regard, the substance is also useful because it has lubricating properties, preventing ingredients from sticking to manufacturing equipment during the compression of… [cont.]
Answered by Saurabh P - Fri Nov 3 23:41:01 2006

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History Etymology Magnesium has long been known Alchemists used magnesia alba white magnesia or also known as mild magnesian earth hydrated magnesium carbonate 4MgCO3 Mg OH 2 5H2O was magnesia alba

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July 14 2006 The M6 Magnesium case for the Palm Treo 650 offers protection not found in most cases but does it come at a price Tags magnesium

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The Importance of Magnesium Supplementation - NaturalNews.com ...
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The consequences of . magnesium. deficiency are as far-reaching and widespread as the benefits of proper supplementation​ of this vital macro nutrient. In our society, calcium intake is plentiful, if not overabundant. ...

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Magnesium. plays a number of key roles in body function. About 50% is found in bone and the other half is found predominately inside cells of body tussues and organs. This amazing mineral is needed for over 300 biochemical reactions in ...

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The car was constructed with a . magnesium. alloy frame, chosen for it's extraordinary strength and lightness. After a series of clips and miscalculations​, Levegh hit an earth embankment and the Mercedes became airborne, decapitating a ...

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