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Chemical Burning

Chemical burns are the result of very normal reactions that can occur between the offending material and living tissue components. People generally tend to regard their bodies as things outside of the realm of chemistry, but nothing could be further from the truth. Our bodies are nothing more than a collection of chemical materials and systems - ...

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ChemicalBurning
Geology

Crater Lake

Crater Lake: overwhelmingly yet sublimely beautiful. Moody. At times brilliantly blue, ominously somber; at other times buried in a mass of brooding clouds. The lake is magical, enchanting - a remnant ... Continue reading

CraterLake
Biology

What We Learned From The Songbirds

Once, neuroscientists believed that our complement of nerve cells was created prenatally and during the first years of life, and that no new neurons could be generated. Now we know that this belief ... Continue reading

WhatWeLearnedFromTheSongbirds
Engineering

Ants Are Wimpy

It's common knowledge that ants can lift many times their own weight. We are frequently told they can lift 10, 20, or even 50 times their weight. It is most often stated something like this: an ant ... Continue reading

Ants
Medicine

What is Headache?

When a person has a headache, several areas of the head can hurt, including a network of nerves that extends over the scalp and certain nerves in the face, mouth, and throat. The muscles of the head ... Continue reading

WhatisHeadache

Why does popcorn pop?

WhyDoesPopcornPopPopcorn is the most amazing food! It all starts with a kernel only several millimeters in diameter which explodes into a 40-50 times bigger fluffy, tasty, white wonder. The kernel is made of three parts: the pericarp, the endosperm and the germ. The pericarp is the outer shell, which is air-tight and extremely tough. The endosperm is mostly carbohydrate in the form of starch, with smaller amounts of protein, fat, minerals, and water. The germ is the part that sprouts and is not important in the process of popping.

When you heat a popcorn kernel, water inside (about 13-14% by mass) begins to expand. When the temperature reaches 100 deg C (212 deg F), the water tries to evaporate but the pericarp is so strong that it can't. Instead, pressure begins building inside the kernel just like in a pressure cooker. The pericarp is so strong and air-tight to preserve the water inside the kernel for the germ when it begins sprouting. Some 4,000 year old popcorn kernels discovered in Bat Cave, NM still pop, which means that their pericarp has managed to maintain this water inside for all this time.

As the temperature continues rising, so does the pressure. At approximately 175 deg C (347 deg F) the pressure is as high as 9 atmospheres, and the kernel explodes. If the pericarp has even a tiniest hole in it, the pressure inside the kernel will not be able to build up and it will not pop. The water content is also very important; if the kernel has been dried up (it was left out in the sun or heat for a long time), it will not pop. The expanding water and steam drive the endosperm out. The endosperm starch forms jelly-like bubbles, which quickly dry and solidify into a three-dimensional network - which is the white stuff we like to eat. Mmm … I am getting hungry now. How about you? Let's pop a bag.