Celestron OMNI XLT 102 manual Appendix B Glossary of Terms

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Appendix B - Glossary of Terms

A-

Absolute Magnitude

The apparent magnitude that a star would have if it were observed from a standard distance of 10

 

parsecs, or 32.6 light-years. The absolute magnitude of the Sun is 4.8, at a distance of 10 parsecs, it

 

would just be visible on Earth on a clear moonless night away from surface light.

Airy Disk

The apparent size of a star's disk produced even by a perfect optical system. Since the star can never

 

be focused perfectly, 84 per cent of the light will concentrate into a single disk, and 16 per cent into

 

a system of surrounding rings.

Alt-Azimuth Mounting

A telescope mounting using two independent rotation axis allowing movement of the instrument in

 

Altitude and Azimuth.

Altitude

In astronomy, the altitude of a celestial object is its Angular Distance above or below the celestial

 

horizon.

Aperture

The diameter of a telescope's primary lens or mirror; the larger the aperture, the greater the

 

telescope's light-gathering power.

Apparent Magnitude

A measure of the relative brightness of a star or other celestial object as perceived by an observer on

 

Earth.

Arc minute

A unit of angular size equal to 1/60 of a degree.

Arc second

A unit of angular size equal to 1/3,600 of a degree (or 1/60 of an arc minute).

Asterism

A small unofficial grouping of stars in the night sky.

Asteroid

A small, rocky body that orbits a star.

Astrology

The pseudoscientific belief that the positions of stars and planets exert an influence on human

 

affairs; astrology has nothing in common with astronomy.

Astronomical Unit (AU)

The distance between the Earth and the Sun. It is equal to 149,597,900 km., usually rounded off to

 

150,000,000 km.

Aurora

The emission of light when charged particles from the solar wind slams into and excites atoms and

 

molecules in a planet's upper atmosphere.

Azimuth

The angular distance of an object eastwards along the horizon, measured from due north, between

 

the astronomical meridian (the vertical line passing through the center of the sky and the north and

 

south points on the horizon) and the vertical line containing the celestial body whose position is to

 

be measured.

B -

 

Binary Stars

Binary (Double) stars are pairs of stars that, because of their mutual gravitational attraction, orbit

 

around a common Center of Mass. If a group of three or more stars revolve around one another, it

 

is called a multiple system. It is believed that approximately 50 percent of all stars belong to binary

 

or multiple systems. Systems with individual components that can be seen separately by a telescope

 

are called visual binaries or visual multiples. The nearest "star" to our solar system, Alpha Centauri,

 

is actually our nearest example of a multiple star system, it consists of three stars, two very similar

 

to our Sun and one dim, small, red star orbiting around one another.

C -

 

Celestial Equator

The projection of the Earth's equator on to the celestial sphere. It divides the sky into two equal

 

hemispheres.

Celestial Pole

The imaginary projection of Earth's rotational axis north or south pole onto the celestial sphere.

Celestial Sphere

An imaginary sphere surrounding the Earth, concentric with the Earth's center.

Collimation

The act of putting a telescope's optics into perfect alignment.

D -

 

Declination (DEC)

The angular distance of a celestial body north or south of the celestial equator. It may be said to

 

correspond to latitude on the surface of the Earth.

E -

 

Ecliptic

The projection of the Earth's orbit on to the celestial sphere. It may also be defined as "the apparent

 

yearly path of the Sun against the stars".

Equatorial Mount

A telescope mounting in which the instrument is set upon an axis which is parallel to the axis of the

 

Earth; the angle of the axis must be equal to the observer's latitude.

 

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Contents Omni XLT Series Telescopes Table of Contents Astrophotography Page Omni XLT 102 Refractor Omni XLT 150 Newtonian Omni XLT 127 Schmidt-Cassegrain Setting up the Tripod Attaching the Equatorial Mount Installing the Counterweight Bar Attaching the Center Leg BraceInstalling the Counterweights Attaching the Slow Motion Control Knobs CablesAttaching the Telescope Tube to the Mount Installing the Finderscope Installing the Visual BackInstalling the Star Diagonal Installing the EyepiecesMoving the Telescope Manually Balancing the Mount in R.AAdjusting the Mount Balancing the Mount in DECAdjusting the Mount in Altitude Adjusting the Mount in AzimuthPage Page Focusing Image OrientationAligning the Finderscope Calculating MagnificationDetermining Field of View General Observing HintsCelestial Coordinate System Motion of the Stars Latitude Scale Pointing at PolarisFinding the North Celestial Pole Polar Alignment in the Southern Hemisphere Polar Alignment with the Latitude ScalePointing at Sigma Octantis Finding the South Celestial Pole SCPDeclination Drift Method of Polar Alignment Aligning the R.A. Setting Circle Using the R.A. Vernier Scale 11 Vernier ScaleObserving the Moon Lunar Observing HintsObserving the Planets Planetary Observing HintsObserving the Sun Solar Observing HintsObserving Deep Sky Objects Seeing ConditionsUsing the Lens Cap Aperture Stop with Refractor Telescopes SeeingPiggyback Photography Using Digital Cameras Eyepiece Projection for a Schmidt-Cassegrain FullLong Exposure Prime Focus Photography Planetary and Lunar Photography with Special Imagers CCD Imaging for Deep Sky Objects Terrestrial PhotographyMetering Reducing VibrationCare and Cleaning of the Optics Collimation of RefractorsCollimation of a Schmidt-Cassegrain Two 2 turnsCollimated telescope Should appear Symmetrical with Collimation of a Newtonian Aligning the Secondary MirrorBoth mirrors aligned with your eye looking into the focuser Night Time Star Collimating As a Series 1 # Page Page Appendix a Technical Specifications Appendix B Glossary of Terms Page Page Page Page Page Page Page Page Celestron Two Year Warranty