the life cycles of stars rvcc planetarium - last updated 7/23/03

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The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

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Page 1: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

The Life Cycles of Stars

RVCC Planetarium - Last updated 7/23/03

Page 2: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Twinkle, Twinkle, Little Star ...

Page 3: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

How I Wonder What You Are ...

Stars have

• Different colors Which indicate different temperatures

• Different sizes

• Different masses

The bigger it is, the hotter and the faster a star burns its life away.

Page 4: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Stellar Evolution

Stars begin their lives as clouds of gas and dust called Nebulas

Clouds Contain:•70% H•28% He•2% HeavierElements

Page 5: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Stars start from Nebula Clouds

Page 6: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Collapse to Protostar

• Nebula compresses

• Gravitational pull attracts more material.

• Temperature and pressure increases

• Nebula shrinks and begins to spin

• Spinning nebula begins to flatten into a disk

….A protostar is formed

Page 7: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Protostars are forming in Orion

Protostars are forming in the Orion Nebula

Page 8: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

•Pressure builds inside the protostar over millions of years creating heat

•Temp increases to 10 million°C

•Nuclear fusion begins….A star is born!!

•Main Sequence stage of a star begins

•It is the longest stage in life of a star

Page 9: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Nuclear Fusion !

• At 15 million degrees Celsius in the center of the star, Hydrogen Atoms fuses into Helium.

• It takes 4 Hydrogen atoms to make one Helium atom

• Sun has 1056 H atoms to burn which would last 8 billions year!

Page 10: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

The Beginning of the End: Red Giants

After Hydrogen is exhausted in core:

• Core collapses, releasing energy to the outer layers

• Outer layers expand

Page 11: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

The Core of a Red Giant

•Giants are 10 times bigger than the sun

•Supergiants are 100 times bigger than the sun

Page 12: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Expansion of the outer Layers

Page 13: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Betelgeuse – A Red Giant Star

Page 14: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Outer Layers are Expelled …

Page 15: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

… And a Planetary Nebula forms

Planetary Nebulae

After Helium exhausted, outer layers of star expelled

Page 16: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Some Planetary Nebulae are Round

As the dead core of the star cools, the nebula continues to expand, and dissipates into the surroundings.

Page 17: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

… and Bipolar

Page 18: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Some look like an Hourglass …

Page 19: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

.. or a Cat’s Eye …

Page 20: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

… or even look like an Eskimo!

Page 21: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

White Dwarfs

At Center of a Planetary Nebula …

… sits a White Dwarfs

White dwarfs shine for billions of years before they cool completely.

Page 22: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

The Hubble Space Telescope has detected white dwarf stars (circled) in globular clusters:

Page 23: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

White Dwarfs are Small and Heavy

Size of the Earth with the Mass of the Sun

“A ton per teaspoon”

Page 24: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Nova is a white dwarf star that suddenly increases in brightness by several magnitudes. It fades very slowly.

Page 25: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Fate of High Mass Stars

• After Helium is exhausted, core collapses again until it becomes hot enough to fuse Carbon into Magnesium or Oxygen.

• Through a combination of processes, successively heavier elements are formed and burned.

Page 26: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

The End of the Line for Massive Stars

• Massive stars burn a succession of elements.

• Iron is the most stable element and cannot be fused further.

Page 27: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

A Massive Star Explodes

A Supernova is an exploding massive star

Page 28: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Supernova 1987a

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What’s Left After the Supernova

Neutron Star (If mass of core < 5)• Under collapse, protons and electrons

combine to form neutrons.

Black Hole (If mass of core > 5)• The force of contraction crushes the

dense core of the star• The gravity of a black hole is so great

that not even light can escape from it.

Page 30: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Supernova interaction

This compression starts the collapse of gas and dust to form new stars.

Supernovae compress gas and dust which lie between the stars.

Page 31: The Life Cycles of Stars RVCC Planetarium - Last updated 7/23/03

Which brings us back to …

Sun-like Stars Massive Stars

Stellar Recycling

Nebula

Protostar

Low mass main sequence star

Red Giant

Planetary Nebula

White DwarfNova

High mass main sequence star

Supergiant

Supernova

Neutron Star

Black Hole