ScienceIQ.com

Perfect Numbers

Some numbers are more special than others. According to Pythagoras (569 BC - 475 BC) and Euclid (325 BC - 265 BC), some are so special that they called them mystical or perfect numbers. The first perfect number is 6; the second is 28. The Greeks knew of two more: 496 and 8,128. Can you see a pattern? Try figuring out what is so special about these ...

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PerfectNumbers
Physics

When Do We Encounter Ionizing Radiation In Our Daily Lives?

Everyone who lives on this planet is constantly exposed to naturally occurring ionizing radiation (background radiation). This has been true since the dawn of time. The average effective dose ... Continue reading

IonizingRadiation
Biology

A Creature Only A Mother Could Love?

A creature only a mother could love isn't even much loved by its own mother. The Komodo dragon, weighing as much as 300 lbs. (136 kgs) or more, eats more than half its own weight in one meal. It ... Continue reading

MotherLove
Biology

Bioenergy Basics

Biomass (organic matter) can be used to provide heat, make fuels, and generate electricity. This is called bioenergy. Wood, the largest source of bioenergy, has been used to provide heat for thousands ... Continue reading

BioenergyBasics
Engineering

Does Anybody Really Know What Time It Is?

So, what, exactly, is the watch on your wrist, Big Ben in London, or the national atomic clock in Boulder, Colorado, actually measuring? The first definition of a second was 1/86,400 of the average ... Continue reading

TimeAnybody

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.