unit 10 & 11 light years, theories and characteristics of the universe

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Unit 10 & 11 Light years, Theories and Characteristics of the Universe

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Unit 10 & 11 Light years, Theories and Characteristics of the Universe. Light year is: . Distance that light travel in a vacuum in one year, about 9.5 trillion km- which is used to record distances between stars and galaxies. Light year is : . Light year is not: . - PowerPoint PPT Presentation

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Page 1: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Unit 10 & 11Light years,

Theories and Characteristicsof the Universe

Page 2: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is: Distance that light travel in a vacuum in one year, about 9.5 trillion km- which is used to record distances between stars and galaxies

Page 3: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is:

Page 4: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is not: Light year is a

measure of DISTANCE – NOT TIME!!!!!!

Page 5: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is: Distance that light travel in a vacuum in one year, about 9.5 trillion km- which is used to record distances between stars and galaxies

Page 6: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is:

Page 7: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is: Distance that light travel in a vacuum in one year, about 9.5 trillion km- which is used to record distances between stars and galaxies

Page 8: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Light year is:

Page 9: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is: The speed at which light travels

About 186,282 miles per second or 299,792 kilometers per second

Page 10: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is:

Lite Coke

Diet Coke

Diet Coke

Page 11: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is not:

Page 12: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is: The speed at which light travels

About 186,282 miles per second or 299,792 kilometers per second

Page 13: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is:

TIME NOT DISTANCE !

Page 14: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is: The speed at which light travels

About 186,282 miles per second or 299,792 kilometers per second

Page 15: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

SPEED of LIGHT is:

Page 16: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is: A theory that states that about 12 billion to 15 billion years ago, the universe began with a huge, fiery explosion.

Page 17: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is:

Page 18: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is not:

Page 19: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is: A theory that states that about 12 billion to 15 billion years ago, the universe began with a huge, fiery explosion.

Page 20: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is:

Page 21: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is: A theory that states that about 12 billion to 15 billion years ago, the universe began with a huge, fiery explosion.

Page 22: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

BIG BANG THEORY is:

Page 23: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is: the totality of everything that exists, including all matter and energy, the planets, stars, galaxies, and the contents of intergalactic space.

Page 24: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is:

Page 25: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is not:

Page 26: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is: the totality of everything that exists, including all matter and energy, the planets, stars, galaxies, and the contents of intergalactic space.

Page 27: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is:

Page 28: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is: the totality of everything that exists, including all matter and energy, the planets, stars, galaxies, and the contents of intergalactic space.

Page 29: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

UNIVERSE is:

Page 30: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is: Large group of stars, dust and gas held together by gravity; can be elliptical,

spiral, and irregular

Page 31: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is:

Page 32: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is not:

Page 33: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is: Large group of stars, dust and gas held together by gravity; can be elliptical,

spiral, and irregular

Page 34: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is:

Irregular Galaxy

Page 35: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is: Large group of stars, dust and gas held together by gravity; can be elliptical,

spiral, and irregular

Page 36: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Galaxy is:

Page 37: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is: A huge object in space made up of gas and giving off light and heat from nuclear reactions; the sun is a star

Page 39: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is not:

Page 40: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is: A huge object in space made up of gas and giving off light and heat from nuclear reactions; the sun is a star

Page 41: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is:

Page 42: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is: A huge object in space made up of gas and giving off light and heat from nuclear reactions; the sun is a star

Page 43: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

STAR is:

Page 44: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

A "main sequence star" is not really a type of star but a period in a stars life. When a star is in "main sequence" it is converting hydrogen into energy. It is then usually called a dwarf star. This is the longest period in a stars lifetime.

Page 45: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

Page 46: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR not is:

Page 47: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

A "main sequence star" is not really a type of star but a period in a stars life. When a star is in "main sequence" it is converting hydrogen into energy. It is then usually called a dwarf star. This is the longest period in a stars lifetime.

Page 48: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

Page 49: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

A "main sequence star" is not really a type of star but a period in a stars life. When a star is in "main sequence" it is converting hydrogen into energy. It is then usually called a dwarf star. This is the longest period in a stars lifetime.

Page 50: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

MAIN SEQUENCE STAR is:

Page 51: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NEBULA is:

is an interstellar cloud of dust, hydrogen, helium and other ionized gases.

WHERE A STAR IS BORN!

Page 52: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NEBULA is:

Page 53: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NEBULA is:

Page 54: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

is an interstellar cloud of dust, hydrogen, helium and other ionized gases.

WHERE A STAR IS BORN!

NEBULA is:

Page 55: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NEBULA is:

Page 56: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

is an interstellar cloud of dust, hydrogen, helium and other ionized gases.

WHERE A STAR IS BORN!

NEBULA is:

Page 57: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

made up of gas and plasma, they are made by certain types of stars when they die.

PLANETARY NEBULA is:

Page 58: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

PLANETARY NEBULA is:

Page 59: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

PLANETARY NEBULA not is:

Page 60: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

made up of gas and plasma, they are made by certain types of stars when they die.

PLANETARY NEBULA is:

Page 61: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

PLANETARY NEBULA is:

Page 62: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

made up of gas and plasma, they are made by certain types of stars when they die.

PLANETARY NEBULA is:

Page 63: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

PLANETARY NEBULA is:

Page 64: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

 a measure of the radiant power emitted by a star.

Page 65: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

Page 66: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is not:

Page 67: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

 a measure of the radiant power emitted by a star.

Page 68: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

Page 69: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

 a measure of the radiant power emitted by a star.

Page 70: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Luminosity is:

Page 71: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

 a scatter graph of stars in which the absolute magnitude (intrinsic luminosity) of stars is plotted vertically against their surface temperature (or corresponding spectral types)

Hertzsprung-Russell diagram is:

Page 72: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertzsprung-Russell diagram is:

Page 73: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertzsprung-Russell diagram is not:

Page 74: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

 a scatter graph of stars in which the absolute magnitude (intrinsic luminosity) of stars is plotted vertically against their surface temperature (or corresponding spectral types)

Hertzsprung-Russell diagram is:

Page 75: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertzsprung-Russell diagram is:

Page 76: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

 a scatter graph of stars in which the absolute magnitude (intrinsic luminosity) of stars is plotted vertically against their surface temperature (or corresponding spectral types)

Hertzsprung-Russell diagram is:

Page 77: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertzsprung-Russell diagram is:

Page 78: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

a measure of the star's luminosity---the total amount of energy radiated by the star every second.

Page 79: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

Page 80: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is not:

Page 81: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

a measure of the star's luminosity---the total amount of energy radiated by the star every second.

Page 82: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

Page 83: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

a measure of the star's luminosity---the total amount of energy radiated by the star every second.

Page 84: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

ABSOLUTE MAGNITUDE is:

Page 85: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

The apparent brightness of a star observed from the Earth

Page 86: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

Page 87: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is not:

Page 88: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

The apparent brightness of a star observed from the Earth

Page 89: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

the "what you see is what you get" magnitude

Page 90: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

The apparent brightness of a star observed from the Earth

Page 91: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

APPARENT MAGNITUDE is:

Page 92: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Full range of electromagnetic waves

Page 93: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Page 94: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is not:

Page 95: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Full range of electromagnetic waves

Page 96: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Page 97: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Full range of electromagnetic waves

Page 98: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Electromagnetic Spectrum is:

Page 99: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

the lowest part of a wave; the part of a wave with the least magnitude.

Page 100: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

Page 101: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is not:

Get out of my

Trough!

Page 102: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

the lowest part of a wave; the part of a wave with the least magnitude.

Page 103: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

Page 104: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

the lowest part of a wave; the part of a wave with the least magnitude.

Page 105: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

TROUGH is:

Page 106: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

the highest part of a wave; the part of a wave with the greatest magnitude.

Page 107: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

Page 108: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is not:

Page 109: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

the highest part of a wave; the part of a wave with the greatest magnitude.

Page 110: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

Page 111: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

the highest part of a wave; the part of a wave with the greatest magnitude.

Page 112: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

CREST is:

Page 113: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

The distance between successive crests of a wave

Page 114: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

Page 115: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is not:

Page 116: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

The distance between successive crests of a wave

Page 117: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

Page 118: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

The distance between successive crests of a wave

Page 119: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

WAVELENGTH is:

Page 120: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

the number of occurrences of a repeating event per unit time.

Page 121: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

Page 122: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is not:

Page 123: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

the number of occurrences of a repeating event per unit time.

Page 124: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

Page 125: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

the number of occurrences of a repeating event per unit time.

Page 126: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

FREQUENCY is:

Page 127: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

1 billionth of a meter, written 10⁻⁹ m

Page 128: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

Page 129: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is not:

Page 130: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

1 billionth of a meter, written 10⁻⁹ m

Page 131: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

Page 132: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

1 billionth of a meter, written 10⁻⁹ m

Page 133: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

1 billionth of a meter, written 10⁻⁹ m

Page 134: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

NANOMETER is:

Page 135: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertz is

Measurement of wave frequency equal to vibrations per second.

Page 136: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 137: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Hertz is

Measurement of wave frequency equal to vibrations per second.

Page 138: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 139: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Spectrometer is:

Used to measure the property of light

Page 140: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 141: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe

Spectrometer is:

Used to measure the property of light

Page 142: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 143: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 144: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 145: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 146: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
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Page 148: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 149: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 150: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe
Page 151: Unit 10 & 11 Light years, Theories and  Characteristics of the  Universe