ScienceIQ.com

An Invasion of Infiltrators

Why might a species be invasive in one country but not a big problem in its native land? As an example, consider a plant that is a major weed in the U.S. but in its native land it may be a minor pest. Many weeds have chemical defense systems that make them taste bad. In the weed's native land the animals that feed on the weed often evolve along ...

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Infiltrators
Biology

Water, Water Everywhere, But Not A Drop To Drink

That 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 ... Continue reading

WaterWater
Biology

Where is God in the Brain?

A British study reported that epileptics had 'profoundly spiritual experiences' in a specific region of the brain. In other studies, there was also a region of the brain that became extremely active ... Continue reading

BrainGod
Mathematics

How To Calculate The Area Of A Right Cone

The cone is another three-dimensional shape based on the circle. You could think of it as the cross between a circle and a right triangle. Its properties will have features of both shapes, and this ... Continue reading

AreaOfARight Cone
Engineering

The Right Stuff for Super Spaceships

Revolutions in technology - like the Industrial Revolution that replaced horses with cars - can make what seems impossible today commonplace tomorrow. ... Continue reading

SuperSpaceships

Nitrogen Gas and Compounds

NitrogenGasandCompoundsNitrogen is a very interesting element. It is the seventh element of the periodic table, with seven electrons in its atoms. The somewhat unique combination of electronic structure and small atomic size makes it possible for as many as five of its electrons to be involved in bonding with other atoms. Nitrogen bonds very readily with other atoms to produce a bewildering variety of compounds, and is one essential component of amino acids, which are necessary for all life as we know it. Fortunately, there is no shortage of nitrogen in the world; the air that surrounds the planet is about 78% nitrogen. But there is a huge difference between the nitrogen we breathe and the nitrogen in amino acids.

Nitrogen gas is a diatomic molecule consisting of just two nitrogen atoms bonded very strongly to each other, while the nitrogen in amino acids and other compounds is just a single nitrogen atom bonded relatively weakly to a carbon atom and two other atoms. There are no chemical mechanisms in our bodies to convert nitrogen gas into free nitrogen atoms. In fact, the N to N bond in nitrogen gas is so strong that the single nitrogen atoms in amino acids and other compounds will spontaneously reform into nitrogen gas as those compounds break down. So how do we get those single atoms in the first place?

All life on this planet and probably wherever else there is life in the universe, owes its continued existence to a few varieties of bacteria that live in the soil. These are the 'nitrogen fixing' bacteria. Part of the life process of these bacteria is to 'fix' or 'tie down' free nitrogen gas from the air by converting it into atomic forms that can be taken up and used by plants and other organisms. Nitrogen-fixing bacteria use an enzyme-catalyzed biochemical process to carry out this conversion. Plants then use the fixed nitrogen to produce chlorophyll and other nitrogen-containing compounds. Animals that eat the plants thus acquire that nitrogen and use it to build amino acids and proteins, and life goes on.