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The Razor-sharp Surgeonfish

As any diver can tell you, the waters under the sea can be beautiful and dangerous. The oceans are full of venemous fish, sharks, stinging jellies, manta rays and an assortment of spiny urchins and anenomeas. But who would imagine that one of the most attractive and colorful group of fish on the coral reef has its own surgical tool built right ...

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RazorsharpSurgeonfish
Biology

How Blood Clots

Scabby knees and bruised shins are as much a part of growing up as climbing trees. Minor injuries from paper cuts to skinned elbows are nothing to worry about for most people, because the blood's ... Continue reading

BloodClots
Physics

Torque

A force may be thought of as a push or pull in a specific direction. When a force is applied to an object, the object accelerates in the direction of the force according to Newton's laws of motion. ... Continue reading

Torque
Biology

St. John's Wort

St. John's wort is an herb that has been used for centuries for medicinal purposes, including to treat depression. The composition of St. John's wort and how it might work are not well understood. ... Continue reading

StJohnsWort
Geology

A Hurricane In Brazil?

Hurricanes are terrifying. They rip trees right out of the ground, hurl cars into the air, and flatten houses. Their winds can blow faster than 100 mph. Some hurricanes have been known to pull a wall ... Continue reading

AHurricaneInBrazil

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.