ScienceIQ.com

Now You See It, Now You Don't

What we call light is simply a narrow band of electromagnetic radiation that our eyes are sensitive to. This radiation enters our eyes and is conveyed to the brain by the process we call sight. While the mechanics of seeing is quite complex, the process of seeing is, in a different sense, quite extraordinary. Here are two examples. ...

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EMRadiation
Physics

The World's Largest Laser

In a rural community in Northern California, in a building spanning the length of two football fields scientists are creating the world's largest laser. The National Ignition Facility project, know as ... Continue reading

LargestLaser
Astronomy

It's Dusty Out There

There is no lower limit to the size of the solid particles that move around the Sun. Small asteroids grade downward into large meteoroids and then into smaller pebbles and so on down to the tiniest ... Continue reading

ItsDustyOutThere
Biology

Butterflies In Your Brain

The idea behind chaos theory is that complex systems have an inherent element of unpredictability. The human brain certainly qualifies as a complex system. It is also a chaotic system. It does not ... Continue reading

ButterfliesInYourBrain
Engineering

GPS (Global Positioning System)

The GPS, or Global Positioning System, is the high-tech application of one of the most fundamental principles of geometry. Surveyors routinely use geometry and triangulation to map and lay out areas ... Continue reading

GPSGlobalPositioningSystem

Why Aren't Mice More Like Us?

MiceThe sequence of the human genome was published two years ago, and recently, the sequence of the mouse genome was published. Amazingly, 99% of mouse genes have a counterpart in people. So why are they so small and furry, while we are big and hairless and so much smarter?

Most likely the answer lies in how the 30,000 or so genes are used. Genes tell how to make proteins, which do the actual work of running a cell. They also contain information saying when to make the proteins and how much to make, which cells to make them in, and when to stop making them. This information differs quite a lot between mice and people.

Nevertheless, their great similarity to us makes mice wonderfully useful for finding out things about ourselves. In many ways, they are ‘man's best friend.’ We can do experiments with mice that are ethically unacceptable to do with people -- for example destroy genes one at a time to see what happens. There are now several thousand strains of mice that carry a deleted gene. These mice can serve as models for people who may suffer from diseases caused by malfunctions of the deleted genes. Since 90% of the genes associated with disease are identical in mice and humans, these ‘knockout’ mice can be extremely useful in tracking down the causes and possible cures for human diseases.