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Oil Viscosity

Everybody recognizes 'oil' as a word for liquid materials that do not behave like water. They have a 'thickness' and self-cohesive character (autocohesion) that enables them to form a film on a surface. Oils have a characteristic feel when rubbed between one's thumb and forefinger. They are often compounds that have a high degree of hydrocarbon ...

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OilViscosity
Biology

Batesian Mimicry

If you ever got stung by a wasp you would probably avoid all flying insects which resemble the brightly-colored yellow and black wasp. If you were a bird and certain types of butterflies gave you a ... Continue reading

BatesianMimicry
Astronomy

The Big Bang Model

The Big Bang Model is a broadly accepted theory for the origin and evolution of our universe. It postulates that 12 to 14 billion years ago, the portion of the universe we can see today was only a few ... Continue reading

TheBigBangModel
Biology

The Great Permian Extinction

More than 250 million years ago, when the current continents formed a single land mass, known as the Pangea and there was one super-ocean called Panthalassa, something extraordinary happened. Nearly ... Continue reading

PermianExtinction
Biology

Cloning and Ethics

Cloning technology today is far from perfect: it requires many attempts and only 1%, if any, of the cloned eggs become embryos and then survive. For example, the first cloned sheep, Dolly, was ... Continue reading

CloningandEthics

Why Does A Golf Ball Have Dimples?

GolfBallDimplesA golf ball can be driven great distances down the fairway. How is this possible? The answer to this question can be found by looking at the aerodynamic drag on a sphere without dimples (while it's flying through the air!). The first kind of drag is the obvious drag due to friction. But, this is only a small part of the drag experienced by a ball. Most of the drag comes from the 'separation of the flow' as the ball sails through the air. For laminar (smooth) flow past a sphere, the flow separates very early. Compare this with a 'turbulent flow', caused by a marked or dimpled surface. Flow separation is delayed. The larger (or early) flow separation causes a larger pressure drag on the sphere (golf ball). The rough or dimpled surface causes 'turbulence' which delays or narrows the flow separation. This lowers the pressure drag. On a smooth sphere (golf ball) the faster the ball moves, the more drag is produced. On a rough sphere, speed does not change the drag very much.

Although round dimples are accepted as the standard, many other shapes were tried. Hexagons (six sided) resulted in lower drag than round dimples, so maybe in the future we will see golf balls with hexagonal dimples.