ScienceIQ.com

Does Earth Have Its Own Neon Sign?

You might wonder what the Northern Lights and neon signs have in common. Actually, a lot! What makes luminous colors shimmer across the Northern sky? The answer is in the Sun. Charged particles are constantly ejected from the Sun. These particles, collectively called solar winds, travel toward Earth with an average speed of 400 kilometers per ...

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NorthernLights
Physics

The Weakest Force

Did you know that gravity is the weakest force in the universe? Well, it's true! There are four fundamental forces (that we know of) in our universe: Strong Nuclear, Electromagnetic, Weak Nuclear ... Continue reading

WeakForce
Geology

Getting Burned By Acid Rain

If we measure the pH of distilled water, we will find that it is most often in the middle of the pH scale (7) - not too acidic, not too basic. Rainwater, without a lot of outside contaminants, tends ... Continue reading

AcidRain
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
Geology

Plate Tectonics

In geologic terms, a plate is a large, rigid slab of solid rock. The word tectonics comes from the Greek root 'to build.' Putting these two words together, we get the term plate tectonics, which ... Continue reading

PlateTectonics

Coming In Strong On Your AM Dial

AMRadioWavesThe AM radio dial would be nothing but chaos and noise without a very basic rule - turn down the power at night. The Federal Communications Commission (FCC) controls and regulates the airwaves in the United States. One important rule requires many AM stations to cut power or shut down altogether each evening. This is due to some basic physical properties of the upper atmosphere called the ionosphere that is many miles above the earth's surface.

The ionosphere is relatively thin and affected by a steady stream of solar particles and radiation that pelt it day and night. During the day, it is not very reflective and AM radio waves, tend to bounce along the ground up to 100 miles (160.9 km) from the broadcast tower. The further away from the transmitter, the weaker the radio signal. At night though, it is a different story. The ionosphere becomes highly reflective. This allows AM waves to bounce off the ionosphere and travel great distances through the atmosphere, hundreds of miles in fact. Without some night-time curbs on AM stations, a Boston station could be knocked out by a stronger station in Chicago, or farther.

Why aren't FM radio waves affected the same way? The answer simply is that FM radio waves are much shorter than AM waves. An FM radio wave may be as small at 10 feet (3 m), while AM waves can range from 600 to 1,800 feet (182.9 to 548.64 km). So FM waves scatter and never even come close to the ionosphere.