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Newton's First Law of Motion

Sir Isaac Newton first presented his three laws of motion in the 'Principia Mathematica Philosophiae Naturalis' in 1686. His first law states that every object will remain at rest or in uniform motion in a straight line unless compelled to change its state by the action of an external force. This is normally taken as the definition of inertia. The ...

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NewtonsFirstLawofMotion
Chemistry

Luminol; Trick-or-Treat or Terrible Feat

What does trick-or-treating and crime scene investigation have in common? Hopefully, they don't have much in common, unless the trick-or-treater is wearing a safety glow stick. Glow sticks contain ... Continue reading

Luminol
Mathematics

How To Calculate The Area Of A Right Cone

The cone is another three-dimensional shape based on the circle. You could think of it as the cross between a circle and a right triangle. Its properties will have features of both shapes, and this ... Continue reading

AreaOfARight Cone
Engineering

Teeny Tiny Technology

What's the smallest thing you can imagine? Can you think of something extremely tiny that is also extremely strong--many times stronger than steel--and very flexible? Give up? The answer is carbon ... Continue reading

TinyTechnology
Biology

Diadromous Fish

Diadromous fish are fish that migrate between freshwater and saltwater. The migration patterns differ for each species and have seasonal and lifecycle variations. Only one percent of all fish in the ... Continue reading

DiadromousFish

It's Gonna Hit Us... Or Is It?

MeteorHitRecently, some astronomers were concerned that a newly discovered asteroid might hit Earth in 2017. This was big news because even the impact of a modest-sized asteroid could have a devastating effect. In fact, a large impact 65 million years ago is thought to have wiped out the dinosaurs. So scientists take seriously any potential asteroid impact with the Earth. A few days after the discovery, scientists changed their minds and said there was no need to panic. This particular asteroid was not going to come even close.

If you go back over the last few years, you'll see this same thing repeatedly: first, a possible collision; next, a retraction. So what gives? Were the calculations all wrong? Actually not. In most cases it had to do with recalculations based on pre-discovery images of the asteroid. In effect, scientists looked backwards in time to make a better prediction about the future.

Astronomers use computers to take multiple pictures of the same part of the night sky over time. These pictures are compared. If a point of light appears to have changed position, we know that it is moving very fast. The background stars, since they are so much farther away, don't appear to move over a short period of time. But these initial pictures don't tell scientists too much. Instead, now that they know what they've found and where they've found it, they can go back to historical images of the same section of sky, taken all over the world. With careful examination, they can find the same asteroid in earlier pictures. This helps them come up with a much more accurate prediction of the asteroid's path. So far, no one has predicted an asteroid impact with Earth. And we are very thankful for that.