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Light Solar System Astronomy Chapter 4
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Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Dec 18, 2015

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Page 1: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

LightSolar System Astronomy

Chapter 4

Page 2: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Light & Matter Light tells us about matter

Almost all the information we receive from space is in the form of light.

The light can tell us the conditions of objects in space – temperature, composition, motions, etc.

Light has many strange properties which stretch our ideas of what is “real.”

Page 3: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Light: Wave or Particle? Light can be both like waves and like

particles (photons) The particle picture is helpful when thinking

about how light is absorbed and emitted The wave picture is best for describing how

light gets from one place to another

Page 4: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Light as a Wave Light is a wave of electric and magnetic

fields – electromagnetic (EM) wave The wavelength (λ) is the length between

crests of the wave The frequency (f) is the number of waves that

pass by each second Different types of light (visible, infrared) have

different wavelengths

Page 5: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Wavelength & Frequency

Page 6: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Wavelength, Frequency, & Speed Speed of light in a vacuum

3×108 m/s (300,000 km/s) Travels more slowly through materials like glass or

water Wavelength and frequency are related:

Page 7: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Visible Light Our eyes see a small range of EM

radiation Red light λ = 700 nm Violet light λ = 400 nm Spectrum:

ROY G BIV

Page 8: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Visible Light Our eyes see a small range of EM

radiation Red light λ = 700 nm Violet light λ = 400 nm Spectrum:

ROY G BIV

Page 9: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Electromagnetic Spectrum Visible light is just a small part…

Page 10: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Electromagnetic Spectrum Visible light is just a small part…

Page 11: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Hydrogen Spectrum A Big Mystery

Page 12: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Kirchoff’s Laws of Radiation

Page 13: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Light as a particle “Photons”

Little packets of energy Atoms can absorb or emit Photons can carry different

amounts of energy High energy

short wavelength high frequency

Low energy long wavelength low frequency

Page 14: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Atoms & Light Neils Bohr

Electrons surround/orbit nucleus can have certain energies;

other energies are not allowed. Each type of atom (carbon, oxygen,

etc.) has a unique set of energies. A good way to represent the energies

is with an energy level diagram.

Page 15: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Atoms & Light

Explained hydrogen spectrum precisely!

Page 16: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Atoms & Light Spectroscopy

Page 17: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.
Page 18: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Atoms & Light Mystery Gas…

Page 19: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Doppler Effect

Page 20: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Doppler Effect

Page 21: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Doppler Effect – Radial Velocity Radial velocity is part toward or away

from observer Along line of sight Toward gives shorter wavelengths – redshifted Away gives longer wavelengths -- blushifted

Page 22: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Doppler Effect

Page 23: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Doppler Shift – Concept Quiz Hydrogen emits light at λ = 656 nm. You

see a distant galaxy in which the light from hydrogen has λ = 696 nm. Is this galaxy …a) Moving toward us?b) Moving away from us?

Page 24: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Light & TemperatureSolar System Astronomy

… still Chapter 4

Page 25: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Emitted Light All objects emit light (or EM radiation)

What kind depends on temperature and state (solid or gas)

Light carries off energy Rate of loss is called luminosity

Page 26: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Energy Balance Planet’s temperature is a balance

Energy absorbed from sun Energy emitted from planet

From temperature Temperature is a measure of heat radiated

Balance is example of thermal equilibrium Very important concept in many areas of

astrophysics

Page 27: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Temperature All atoms are constantly in thermal motion

Temperature is a measure of average speed (kinetic energy) of atomic motion

Measure in Kelvin Water freezes/boils 273 K/373 K Minimum possible 0 K Sun is 5800 K (10,000˚ F)

Page 28: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Temperature Measure of energy/motion

More temperature is more motion More pressure increases motion and

temperature

Temperature & pressure are CLOSELY linked

Page 29: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Blackbody Radiation Dense objects emit radiation

Blackbody radiation Thermal radiation Continuous radiation/spectrum

For two objects of same size Hotter emits more light at all wavelengths Emit more total energy per second (higher

luminosity) More of the radiation is at shorter wavelengths

Page 30: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Blackbody Radiation

Page 31: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Blackbody Radiation

Page 32: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Blackbody Radiation Of note:

Some light is emitted at all wavelengths Often a negligible amount

Little very short or very long wavelengths There is a peak wavelength

Page 33: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Stefan’s Law Flux is the total energy emitter per area

(m2) Hotter objects emit MUCH MORE ENERGY

Page 34: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Wien’s Law Temperature relates to λpeak

Hotter means bluer Simple measurement to calculate temperature

Page 35: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Brightness Amount of light that arrives at a particular

place Inverse-square law

Page 36: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Equilibrium Temperature Equilibrium reached when

Energy absorbed equals energy emitted Distant planets are cold mainly because of

inverse-square law Actual temperature depends on how well

planet absorbs incoming light albedo

Page 37: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Equilibrium Temperature

Page 38: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Concept Test If the Sun got hotter, which of the

following would be true? The flux from the Sun would increase The peak of its spectrum would shift to redder

colors The brightness at the Earth would decrease

Page 39: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Concept Test Compared to the brightness of the Sun at

the Earth, the brightness at ½ AU would be ¼ as much ½ as much The same as now Twice as much Four times as much

Page 40: Light Solar System Astronomy Chapter 4. Light & Matter Light tells us about matter Almost all the information we receive from space is in the form of.

Concept Test In the distant future the Sun will be cooler

but will emit far more energy every second than it does now. What will happen to the Earth’s temperature? It will be hotter It will be the same It will be cooler