ccmc universo

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Composición del Universo

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Las Pléyades

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Supernova

Nebulosa

Gigante Roja

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Gran explosión

Tras una pequeña fracción de segundo

Tras 13.700 millones de años

Tras 380.000 años

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Plasma primordial

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¿?10-4 s

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10-4 s

100 s

Protón Neutrón

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400.000 años

3 min

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Temperatura Tiempo

Hoy

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400.000 añoshoy

Fondo Cósmico de microondas (1964)

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Arno Penzias Robert Wilson

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Mapa Fondo Cósmico de Microondas: COBE

RADIACIÓN NO HOMOGÉNEA

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3 min

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Hace 13.000 millones de años

Grumos de materia = gérmenes de galaxias

1 2 3 4 5

6 7 8 9

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Stars start from clouds

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Clouds provide the gas and dust from which stars form.

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But what kind of dust ?

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Stars begin with slow accumulation of gas and dust.

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• Contraction causes Temperature and Pressure to slowly increase.

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Rather: Irregular Grains of Carbon or Silicon

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• Gravitational attraction of Clumps attracts more material.

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F

Gm1m2

r2

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1

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The Life Cycles of Stars

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Collapse to Protostar

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Nuclear Fusion !

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All Types of Stars

E = mc2

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At 15 million degrees Celsius in the center of the star, fusion ignites !

Where does the energy come from ?

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Mass of four 1H > Mass of one 4He

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4 (1H) --> 4He + 2 e+ + 2 neutrinos + energy

At 100 million degrees Celsius, Helium fuses:

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Energy released = 25 MeV= 4 x 10 -12 Joules= 1 x 10 -15 Calories

But the sun does this 1038 times a second !Sun has 1056 H atoms to burn !

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5.800º en la superficie

151 º en el núcleo

Edad 50001 de años

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Protuberancia

Fotósfera

Cromósfera

Zona convectiva

Zona radiactiva

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Soho projectSolar Heliospheric Observatory

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New Stars are not quiet !

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Throughout its life, these two forces determine the stages of a star’s life.

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Expulsion of gas from a young binary star system

Energy released from nuclear fusion counter-acts inward force of gravity.

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After Helium exhausted, outer layers of star expelled

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The end for solar type stars

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75 % hidrógeno

25 % helio

<0.01 % litio

LA COMPOSICIÓN DE LOS ASTROS MÁS ANTIGUOS

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The Beginning of the End: Red Giants

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The End of the Line for Massive Stars

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4He + 16O 20Ne + energy

4 (1H) 4He + energy

3(4He) 12C + energy

12C + 12C 24Mg + energy

28Si + 7(4He) 56Ni + energy 56Fe

4He + 12C 16O + energy

16O + 16O 32S + energy

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a b

c d

a): opticalb): radioc): X Rayd): X Ray

SN1987ASupernova !

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http://imagine.gsfc.nasa.gov/docs/teachers/lifecycles/stars.html

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Nebulosa de OriónAnnie J Cannon

(1863-1941)

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Oh! Be a Fine Girl - Kiss Me Right Now Sweetheart !

Out Beyond Andromeda, Fiery Gases Kindle Many Red New Stars

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Espectro de Emisión del Hidrógeno

Espectro de Emisión del Hierro

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Vía Láctea

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What is a Galaxy ?

Distance from Earth to Sun = 8 light-minutes

Size of Solar System = 5.5 light-hours

Solar System

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What is a Galaxy?

Stellar Region

30light-years

Sun(solar systemtoo small to be

seen on this scale)

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What is a Galaxy?

Galaxy

200,000 light-years

a massive collection of stars, gas, and dust kept together by gravity

Sun’s Stellar Region

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What is a Galaxy?

If our solar system was the size of a cell in the human body, our galaxy would still measure over one mile across.

Using this same analogy, the Andromeda Galaxy would be 22 miles away.

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Types of Galaxies

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M 33

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Cúmulos de Galaxias

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M 100

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NGC 1365

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M 31

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M 51

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Bulge

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M 51

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M 109

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M 91

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M 33

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NGC 5128

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NGC 7742

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NGC 4319

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M 100

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La Vía Láctea

Grupo Local

La Tierra El Sistema Solar

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Sol

Brazos de la Vía Láctea

Brazo de Perseo

Brazo de Orión

Brazo de Sagitario

Brazo a 3 Kpc

Centro

Sol

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Brazo de Sagitario

Brazo de Orión

Brazo de Perseo

Núcleo

Brazo a 3 Kpc

Cúmulos globulares

Sistema Solar

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Edwin Hubble1889-1953

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Agujeros negros

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Hace 4.600 millones de años

Nace el sistema Solar

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Increasing Temperature and Pressure ...

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More Fusion !

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Masa del Sol (M)=1

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Hace 4.000 millones de años

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Hace 200 millones de años

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Hace 3.5 millones de años

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Hace 5.000 años

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