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PHYS 187 Exam 1 Questions with Verified Solutions Graded A+

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PHYS 187 Exam 1 Questions with Verified Solutions Graded A+ If you have a 100-watt light bulb, how much energy does it use each minute? - Answers 6,000 joules The frequency of a wave is - Answers The number of peaks passing by any point each second, measured in cycles per second, measured in hertz (Hz), equal to the speed of the wave divided by the wavelength of the wave, AKA all of the above How are wavelength, frequency and energy related for photons of light? - Answers Longer wavelength means lower frequency and lower energy Which of the following statements about x rays and radio waves is not true? - Answers X rays travel through space faster than radio waves An electron-volt is - Answers an amount of energy much smaller than a joule If you heat a gas so that collisions are continually bumping electrons to higher energy levels, when the electrons fall back to lower the energy levels the gas produces - Answers an emission line spectrum When an electron in an atom goes from a higher energy state to lower energy state, the atom - Answers emits a photon of a specific frequency When white light passes through a cool cloud of mass, we see - Answers an absorption line spectrum Which of the following statements about thermal radiation is always true? - Answers A hot object emits more total radiation per unit surface than a cool object You observe the same spectral line in two stars that are identical in every way except that one rotates faster than the other. How does the spectral line differ between the two? - Answers the line in the faster rotating star is broader What is the difference between energy and power? - Answers Power is the rate at which energy is used, so its units are a unit of energy divided by a unit of time Suppose you know the frequency of a photon and the speed of light. What else can you determine about the photon? - Answers its wavelength and energy When considering light as made up of individual "pieces," each characterized by a particular amount of energy, the pieces are called - Answers photons From shortest to longest wavelength, which of the following correctly orders the different categories of electromagnetic radiation? - Answers gamma rays, x rays, ultraviolet, visible light, infrared, radio Thermal radiation is defined as - Answers radiation with a spectrum whose shape depends only on the temperature of the emitting object According to the laws of thermal radiation, hotter objects emit photons with - Answers a shorter average wavelength Suppose you want to know the chemical composition of a distant star. Which piece of information is most useful to you? - Answers The wavelength of spectral lines in the star's spectrum The spectra of most galaxies show redshifts. This means their spectral lines - Answers have wavelengths that are longer than normal Laboratory measurements show hydrogen produces a spectral line at a wavelength of 486.1 nanometers (nm). A particular stat's spectrum show the same hydrogen line at a wavelength of 486.0 nm. What can we conclude? - Answers the star is moving toward us In what part of the spectrum would you need to be able to see so that you could detect the light emitted by students in astronomy class? - Answers Infrared You observe a distant galaxy. You find that a spectral line normally found in the visible part of the spectrum is shifted toward the infrared. What do you conclude? - Answers The galaxy is moving away from you If one object has a large redshift and another object has a small redshift, what can we conclude about these two objects? - Answers The one with the large redshift is moving away from us faster than the one with the small redshift Suppose you see two stars: a blue star and a red star. Which of the following can you conclude about the two stars? Assume that no Doppler shifts are involved. (Hint: think about the laws of thermal radiation). - Answers The blue star has a hater surface temperature than the red star. You observe the same spectral line in two stars that are identical in every way except that one rotates faster than the other. How does the spectral line differ between the two? - Answers The line in the fast rotating star is broader If two objects are the same size but one object is 3 times hotter than the other object, the hotter object emits - Answers 81 times more energy Each of the following lists two statements. Which two are the basic premises for the special theory of relativity? - Answers 1. The laws of nature are the same for everyone. 2. The speed of light is the same for everyone. Which of the following is not a prediction made by the theory of relativity? - Answers Observers in different reference frames may disagree about the basic laws of nature.

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PHYS 187 Exam 1 Questions with Verified Solutions Graded A+

If you have a 100-watt light bulb, how much energy does it use each minute? - Answers 6,000
joules

The frequency of a wave is - Answers The number of peaks passing by any point each second,
measured in cycles per second, measured in hertz (Hz), equal to the speed of the wave divided
by the wavelength of the wave, AKA all of the above

How are wavelength, frequency and energy related for photons of light? - Answers Longer
wavelength means lower frequency and lower energy

Which of the following statements about x rays and radio waves is not true? - Answers X rays
travel through space faster than radio waves

An electron-volt is - Answers an amount of energy much smaller than a joule

If you heat a gas so that collisions are continually bumping electrons to higher energy levels,
when the electrons fall back to lower the energy levels the gas produces - Answers an emission
line spectrum

When an electron in an atom goes from a higher energy state to lower energy state, the atom -
Answers emits a photon of a specific frequency

When white light passes through a cool cloud of mass, we see - Answers an absorption line
spectrum

Which of the following statements about thermal radiation is always true? - Answers A hot
object emits more total radiation per unit surface than a cool object

You observe the same spectral line in two stars that are identical in every way except that one
rotates faster than the other. How does the spectral line differ between the two? - Answers the
line in the faster rotating star is broader

What is the difference between energy and power? - Answers Power is the rate at which energy
is used, so its units are a unit of energy divided by a unit of time

Suppose you know the frequency of a photon and the speed of light. What else can you
determine about the photon? - Answers its wavelength and energy

When considering light as made up of individual "pieces," each characterized by a particular
amount of energy, the pieces are called - Answers photons

From shortest to longest wavelength, which of the following correctly orders the different
categories of electromagnetic radiation? - Answers gamma rays, x rays, ultraviolet, visible light,
infrared, radio

, Thermal radiation is defined as - Answers radiation with a spectrum whose shape depends only
on the temperature of the emitting object

According to the laws of thermal radiation, hotter objects emit photons with - Answers a shorter
average wavelength

Suppose you want to know the chemical composition of a distant star. Which piece of
information is most useful to you? - Answers The wavelength of spectral lines in the star's
spectrum

The spectra of most galaxies show redshifts. This means their spectral lines - Answers have
wavelengths that are longer than normal

Laboratory measurements show hydrogen produces a spectral line at a wavelength of 486.1
nanometers (nm). A particular stat's spectrum show the same hydrogen line at a wavelength of
486.0 nm. What can we conclude? - Answers the star is moving toward us

In what part of the spectrum would you need to be able to see so that you could detect the light
emitted by students in astronomy class? - Answers Infrared

You observe a distant galaxy. You find that a spectral line normally found in the visible part of
the spectrum is shifted toward the infrared. What do you conclude? - Answers The galaxy is
moving away from you

If one object has a large redshift and another object has a small redshift, what can we conclude
about these two objects? - Answers The one with the large redshift is moving away from us
faster than the one with the small redshift

Suppose you see two stars: a blue star and a red star. Which of the following can you conclude
about the two stars? Assume that no Doppler shifts are involved. (Hint: think about the laws of
thermal radiation). - Answers The blue star has a hater surface temperature than the red star.

You observe the same spectral line in two stars that are identical in every way except that one
rotates faster than the other. How does the spectral line differ between the two? - Answers The
line in the fast rotating star is broader

If two objects are the same size but one object is 3 times hotter than the other object, the hotter
object emits - Answers 81 times more energy

Each of the following lists two statements. Which two are the basic premises for the special
theory of relativity? - Answers 1. The laws of nature are the same for everyone. 2. The speed of
light is the same for everyone.

Which of the following is not a prediction made by the theory of relativity? - Answers Observers
in different reference frames may disagree about the basic laws of nature.

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