ScienceIQ.com

What is Herd Immunity?

No vaccine is 100% effective and usually does not work in 5% of those immunized. In addition, another 5% lose immunity after time. That means that, even after you are immunized, you could contract the disease. But if everyone around you is also immunized, there is no way for you to get infected, because the community provides immunity. This is ...

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WhatisHerdImmunity
Geology

What is Volcanic Ash?

Small jagged pieces of rocks, minerals, and volcanic glass the size of sand and silt (less than 1/12 inch or 2 millimeters in diameter) erupted by a volcano are called volcanic ash. Very small ash ... Continue reading

VolcanicAsh
Physics

What Makes a Frisbee Fly?

If you have ever been to the park or the beach, you've probably seen one of these plastic discs flying through the air. We're not talking about a UFO, we're talking about the Frisbee, more commonly ... Continue reading

Frisbee
Biology

Pass the Iodized Salt Please

Have you ever wondered why common table salt contains iodine? It's because iodine is essential to your health. A diet lacking in sufficient quantities of iodine will lead to the production of a goiter ... Continue reading

IodizedSalt
Geology

The Hydrology of Drought

A drought is a period of drier-than-normal conditions that results in water-related problems. Precipitation (rain or snow) falls in uneven patterns across the country. The amount of precipitation at a ... Continue reading

TheHydrologyofDrought

Laser Guide Stars

LaserGuideStarsDid you ever wonder why we have to have the Hubble Space Telescope so high up in the Earth's orbit? Why not just make a bigger and better telescope on the surface?

The reason is that our atmosphere disturbs the heavens' image. Even on a clear night, there are countless movements of hot and cold air that cause, among other things, light diffraction and small particle scattering. All of these effects distort the image seen through a telescope. These disturbances can even be seen with the naked eye: they are the reason stars appear to twinkle in the night sky. That's why we have space telescopes, to avoid the atmospheric distortions. But imagine if we could somehow predict or measure these distortions in real time and correct for them.

That is exactly what laser guide stars and adaptive optics are all about. Originally developed in the US during the cold war for the Star Wars anti-missile project, this technology was declassified several years ago and is now being used to 'clean-up' Earth-based telescope images. Astronomers shine a really bright laser beam up into the night sky, close to the heavenly object (planet, star, galaxy, nebula, etc.) they want to observe. Then they image (record in real time with a camera) this laser beam, which appears in the sky as a bright, artificial laser-produced star. The image analysis tells them exactly how the laser beam has been distorted while passing through this particular part of the atmosphere. This then allows them to literally adapt / deform their telescope's mirrors with small actuators in such a way as to undo the atmospheric distortions. Sometimes dented and crinkly mirrors are just what you need to get a clear image.