ScienceIQ.com

How Do They Grow Those Colossal Pumpkins?

Those enormous pumpkins that set records every fall are living proof that both genes and environment make living things what they are. Home gardeners out to break the 2002 record for the world's largest pumpkin--held by Charlie Houghton of New Boston, New Hampshire whose colossus tipped the scales at 1,337.6 pounds--must be masters of both genetics ...

Continue reading...

ColossalPumpkins
Physics

The Physics of Sandcastles

Give a plastic bucket and a shovel to a child, then turn her loose on a beach full of sand. She'll happily toil the day away building the sandcastle to end all sandcastles. It's pure fun. It's also ... Continue reading

Sandcastles
Biology

Neurogenesis

Until recently, any doctor would have told you that when you lose brain cells, you can never replace them. Scientists now know that the human brain has the ability to regenerate brain cells, or ... Continue reading

Neurogenesis
Engineering

Moore's Law

Intel is the corporate giant known for manufacturing semiconductors, also called computer chips or integrated circuits (ICs), and its Pentium Processor. But Intel is also known for laying down the ... Continue reading

MooresLaw
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

Can You Miss the Earth?

WeightlessnessHave you ever wondered why astronauts float in space? Well, it isn't because there is no gravity in space. Astronauts float because they are in constant free fall. If a baseball pitcher throws a ball perfectly level, a few feet above the ground, and another person drops a ball from the same height, both balls will hit the ground at the same time, neglecting any effects caused by the air. The lateral velocity of the pitched ball does not affect the amount of time the ball is in the air.

Now, imagine this pitcher is a very talented guy, and can pitch the ball faster and faster. As the ball is given more velocity, it travels farther over the Earth's surface. When it starts to fall, it traces a parabolic, or curved path. But the Earth's surface is curved too. As the ball falls, the Earth's surface curves away from the ball. Eventually, he can pitch the ball so hard that it falls and falls, but misses the Earth. At this point, the ball is in orbit, or free fall. The ball is just falling and falling. An object can orbit the Earth at any altitude provided it can be given enough velocity. The higher you go, the less velocity you need to stay in orbit. There are geosynchronous satellites that orbit Earth at 35,900 Km (about 22,500 miles) above the Earth on the equatorial plane with a rotational period that matches the Earth. That means that if there is one stationed over LA, it will be over LA during any time day or night. Communication satellites are in stationary orbits, with three or more spaced around the orbit to give worldwide coverage.

When astronauts orbit the Earth, they are simply falling, but missing the Earth. Astronauts look as if they are floating, but they are actually in orbit, falling continually at 17,500 MPH (about 28,000 KPH)! You know that feeling you get in your stomach when you just crest the hill on a roller coaster and start to descend? That is temporary weightlessness, when your stomach is not feeling the force of gravity. And yes, astronauts feel that every second they are orbiting, or missing, the Earth!