ScienceIQ.com

Are Bees Physicists?

Far-reaching research, and research that promises to join mathematics and biology, has been conducted by a mathematician at the University of Rochester, Barbara Shipman. She has described all the different forms of the honeybee dance using a single coherent mathematical or geometric structure (flag manifold). And interestingly, this structure is ...

Continue reading...

BeesPhysics
Biology

What Are Blood Types, and Why Are They Important?

If your medical report reads A, Rh+, M, s, P1, Lua, K+, Kp(a-b+), Le(a-b+). Fy(a+), Jk(a+b+), don't run for a foreign language dictionary. The letters aren't Greek. They are simply the names given to ... Continue reading

BloodTypes
Geology

A River of Sand

Next time you're at the beach or in the desert, climb a sand dune in bare feet on a windy day. Stand still in various places on the gently sloping windward side. Watch how wind-driven sand grains ... Continue reading

RiverOfSand
Engineering

Liquid Crystal Communication

The Information Age rides on beams of carefully controlled light. Because lasers form the arteries of modern communications networks, dexterous manipulation of light underpins the two definitive ... Continue reading

LiquidCrystalCommunication
Mathematics

Who Invented Zero?

Many concepts that we all take for granted sounded strange and foreign when first introduced. Take the number zero for instance. Any first-grader can recognize and use zeros. They sound so logical and ... Continue reading

WhoInventedZero

Red Dot Replacing Cross Hairs

RedDotReplacingCrossHairsA bullet fired from a gun becomes subject to the pull of gravity and begins to fall the instant it leaves the gun barrel. The farther away from the gun the bullet travels, the lower to the ground it gets. To compensate for this, guns are sighted in such a way that the bullet is actually going upwards when it leaves the barrel. The bullet then follows a 'ballistic' trajectory. The bullet rises up to a maximum height, then falls until it hits either its target or the ground. Sight adjustments are made so that the bullet follows its flight path and strikes its target point at a specific distance from the end of the gun. The cross-hairs in a traditional telescopic sight serve as a reference point for the shooter: they are to be adjusted so that when the shooter looks through the sight she or he sees the desired point of impact exactly where the cross-hairs cross. This type of sighting system requires the shooter to place his or her full attention at the weapon rather than at the target.

'Laser sights' function in much the same way. But instead of a pair of crossed hair (which are actually spider webbing) inside a telescope, they use a beam of laser light from a well-constructed laser device. The position of the laser beam relative to the barrel of the gun is adjusted so that highly-visible red dot of the laser coincides with the desired point of impact of the bullet at a specific distance. With this type of system, the shooter's attention is fully on the target itself rather than a point six inches in front of the eye. He or she then has only to look for the red dot, position it on the target accordingly, and pull the trigger.

In more complex, advanced weapons systems, the laser serves the same purpose, but usually in a more technological way. Using electronic detection systems that 'recover' the laser signal, data is fed back into critical direction/distance control systems that allow a ground-based weapon system to shoot at and reliably strike a desired target several kilometers away. In other systems, a laser beam sighted onto a target by a 'spotter' is detected by an incoming missile that then uses that signal to guide its flight path directly to the target. The missile itself may have been fired a hundred kilometers or more away, but will strike within 10 centimeters of its intended target.