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THE SUN
COMPOSITION OF THE SUN:
a) 75% Hydrogen
b) 24% Helium
c) 1% Trace Elements
NUCLEAR FUSION:
 The process by which nuclei of small
atoms combine to form a new more
massive nucleus; the process releases a
lot of energy
NUCLEAR FUSION:
 Fusion powers the sun by combining
hydrogen atoms in order to form Helium,
the remaining mass is converted to
energy,
 E = mc2
 Energy = mass x (speed of light)2
THE SUN’S INTERIOR:
a) Three layers: Core, Radiative Zone,
Convective zone
b) Fusion occurs in the core
c) Core is ionized gas (plasma)
THE SUN’S ATMOSPHERE:
a) Three layers: Photosphere,
Chromosphere, and the Corona
b) Photosphere is called the Sun’s
“surface” because it is what you see
c) Corona – the outermost layer of the
sun’s atmosphere
SUNSPOT
 the dark area of the photosphere of the
sun that is cooler than the surrounding
areas and has a strong magnetic field
SUNSPOT CYCLE:
 Observing sunspots showed that the
sun rotates (about 27 days)
 The increase and decrease of sunspots
follows an 11 year cycle
SOLAR FLARE:
 An explosive release of energy
(electrically charged particles such as
protons and electrons) that comes from
the sun, and that is associated with
magnetic disturbances on the sun’s
surface (sunspots)
CORONAL MASS EJECTIONS:
 A part of coronal gas that is thrown into
space from the sun, causes disturbances
with Earth’s radio communications
AURORAS:
 Colored light produced by charged
particles from the solar wind and the
Earth’s atmosphere that react and excite
the oxygen and nitrogen in the Earth’s
upper atmosphere
The Sun Notes
The Sun Notes
The Sun Notes
The Sun Notes

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The Sun Notes

  • 2. COMPOSITION OF THE SUN: a) 75% Hydrogen b) 24% Helium c) 1% Trace Elements
  • 3. NUCLEAR FUSION:  The process by which nuclei of small atoms combine to form a new more massive nucleus; the process releases a lot of energy
  • 4. NUCLEAR FUSION:  Fusion powers the sun by combining hydrogen atoms in order to form Helium, the remaining mass is converted to energy,  E = mc2  Energy = mass x (speed of light)2
  • 5. THE SUN’S INTERIOR: a) Three layers: Core, Radiative Zone, Convective zone b) Fusion occurs in the core c) Core is ionized gas (plasma)
  • 6. THE SUN’S ATMOSPHERE: a) Three layers: Photosphere, Chromosphere, and the Corona b) Photosphere is called the Sun’s “surface” because it is what you see c) Corona – the outermost layer of the sun’s atmosphere
  • 7.
  • 8. SUNSPOT  the dark area of the photosphere of the sun that is cooler than the surrounding areas and has a strong magnetic field
  • 9. SUNSPOT CYCLE:  Observing sunspots showed that the sun rotates (about 27 days)  The increase and decrease of sunspots follows an 11 year cycle
  • 10. SOLAR FLARE:  An explosive release of energy (electrically charged particles such as protons and electrons) that comes from the sun, and that is associated with magnetic disturbances on the sun’s surface (sunspots)
  • 11. CORONAL MASS EJECTIONS:  A part of coronal gas that is thrown into space from the sun, causes disturbances with Earth’s radio communications
  • 12. AURORAS:  Colored light produced by charged particles from the solar wind and the Earth’s atmosphere that react and excite the oxygen and nitrogen in the Earth’s upper atmosphere