ScienceIQ.com

What Powered the Big Bang?

During the last decade, sky maps of the radiation relic of the Big Bang---first by NASA's Cosmic Background Explorer (COBE) satellite and more recently by other experiments, including Antarctic balloon flights and NASA's Wilkinson Microwave Anisotropy Probe (WMAP)---have displayed the wrinkles imprinted on the Universe in its first moments. Gravity ...

Continue reading...

WhatPoweredtheBigBang
Astronomy

Reading The Colors of the Spectrum

Did you ever wonder how scientists can tell us so much about distant stars, for example, the surface temperature or chemical makeup of a star, light years away from Earth? Scientists can only use what ... Continue reading

SpectrumColors
Geology

Metamorphic Rock

There are three rock types on earth, named according to how the rock is formed. Igneous rock forms as it cools to a solid from molten rock. Sedimentary rock is formed from the consolidation of ... Continue reading

MetamorphicRock
Physics

Kinetic Theory of Gases

Air is a gas, and gases can be studied by considering the small scale action of individual molecules or by considering the large scale action of the gas as a whole. We can directly measure, or sense, ... Continue reading

KineticTheoryofGases
Engineering

A New Twist on Fiber Optics

By twisting fiber optic strands into helical shapes, researchers have created unique structures that can precisely filter, polarize or scatter light. Compatible with standard fiber optic lines, these ... Continue reading

ANewTwistonFiberOptics

Right Ascension & Declination

RightAscensionDeclinationRight Ascension (abbreviated R.A.) and Declination (abbreviated Dec) are a system of coordinates used by astronomers to keep track of where stars and galaxies are in the sky. They are similar to the system of 'longitude' and 'latitude' used on the Earth. Declination is measured in degrees, and refers to how far above the imaginary 'celestial equator' an object is (like latitude on the Earth). Try standing in the middle of a room, and holding your arm out straight in front of you. If you move your arm up to point at a light, or the ceiling, it is just like going 'up' in Declination. If you move your arm down to point at some objects on the floor, you're moving 'down' in Declination.

Declination, like latitude, is measured as 0 degrees at the equator, +90 degrees at the North Pole, and -90 degrees at the South Pole. Right Ascension measures the other part of a star's position. It is similar to longitude on the Earth. As you stand in the room, if you spin yourself clockwise to point at a door, then a window, then another door, you are 'moving' in Right Ascension.

Right Ascension is measured in hours of time. This is convenient for astronomers because, as the Earth rotates, stars appear to rise and set just like the Sun. If you go out into your backyard in the winter, and lie on your back some night, you might be able to see the constellation of Orion overhead. Orion has a Right Ascension of 5 hours. Out of the corner of your eye, you might also see the constellation Cancer, which is at a Right Ascension of 8 hours. This means that if you wait 3 hours (subtract 5 hours from 8 hours), Cancer will be directly overhead. Just as latitude and longitude uniquely identify the positions of cities on the Earth, Right Ascension and Declination uniquely identify the position of stars and galaxies in the sky.