Deck 3: Electromagnetic Energy
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Deck 3: Electromagnetic Energy
1
The intensity of radiation _________ in _________ proportion to the square of the distance of the object from the source.
A) increases, direct
B) decreases, direct
C) increases, inverse
D) decreases, inverse
A) increases, direct
B) decreases, direct
C) increases, inverse
D) decreases, inverse
decreases, inverse
2
X-rays are usually identified by their __________.
A) energy
B) velocity
C) wavelength
D) hertz
A) energy
B) velocity
C) wavelength
D) hertz
energy
3
The energy of a photon is directly proportional to its ___________.
A) amplitude
B) frequency
C) velocity
D) wavelength
A) amplitude
B) frequency
C) velocity
D) wavelength
frequency
4
The rate of rise and fall of a sine wave is called its __________.
A) amplitude
B) frequency
C) wavelength
D) velocity
A) amplitude
B) frequency
C) wavelength
D) velocity
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5
Photons tend to interact with matter __________ their wavelength.
A) equal in size to
B) larger in size than
C) smaller in size than
D) unequal in size to
A) equal in size to
B) larger in size than
C) smaller in size than
D) unequal in size to
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6
What is the electromagnetic wave equation?
A) c = fl
B) c = f/l
C) c = fv
D) c = f-l
A) c = fl
B) c = f/l
C) c = fv
D) c = f-l
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7
The diagnostic range of x-ray energy is _____________.
A) 30 to 150 kVp
B) 200 to 300 kVp
C) 300 to 1000 kVp
D) over 1 MV
A) 30 to 150 kVp
B) 200 to 300 kVp
C) 300 to 1000 kVp
D) over 1 MV
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8
Gamma rays are produced in the ___________ of the atom.
A) outer electron shell
B) inner electron shell
C) nucleus
D) K-shell
A) outer electron shell
B) inner electron shell
C) nucleus
D) K-shell
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9
The mass equivalent of a 100 KeV photon of radiation can be calculated using the _____.
A) inverse square formula
B) equivalent Planck equation
C) relativity formula
D) Planck quantum equation
A) inverse square formula
B) equivalent Planck equation
C) relativity formula
D) Planck quantum equation
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10
If the intensity of light from a flashlight is 4 millilumens (mlm) at a distance of 3 feet, what will the intensity be at 6 feet?
A) 0.4 millilumens
B) 1 millilumen
C) 2 millilumens
D) 16 millilumens
A) 0.4 millilumens
B) 1 millilumen
C) 2 millilumens
D) 16 millilumens
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11
The _________ of electromagnetic radiation is constant.
A) amplitude
B) velocity
C) frequency
D) wavelength
A) amplitude
B) velocity
C) frequency
D) wavelength
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12
A hertz (Hz) is equal to _____ cycle(s) per second.
A) 103
B) 102
C) 10
D) 1
A) 103
B) 102
C) 10
D) 1
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13
The lowest energy range of the electromagnetic spectrum is ____________.
A) sound waves
B) radio waves
C) gamma rays
D) microwaves
A) sound waves
B) radio waves
C) gamma rays
D) microwaves
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14
The four properties of photons are ________, ________, ________ and ________.
A) size, shape, spin, mass
B) frequency, mass, amplitude, wavelength
C) frequency, wavelength, velocity, amplitude
D) refraction, velocity, spin, amplitude
A) size, shape, spin, mass
B) frequency, mass, amplitude, wavelength
C) frequency, wavelength, velocity, amplitude
D) refraction, velocity, spin, amplitude
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15
Photons with the highest frequencies have the ____________.
A) highest velocity
B) lowest energy
C) longest wavelengths
D) shortest wavelengths
A) highest velocity
B) lowest energy
C) longest wavelengths
D) shortest wavelengths
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16
The smallest quantity of any type of electromagnetic radiation is a(n) ________.
A) photon
B) electron
C) neutrino
D) quark
A) photon
B) electron
C) neutrino
D) quark
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17
The intensity of radiation on an object is reduced with distance because the radiation ___________.
A) reduces its velocity
B) increases in wavelength
C) loses its energy
D) is spread out over a greater area
A) reduces its velocity
B) increases in wavelength
C) loses its energy
D) is spread out over a greater area
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18
The reduction of radiation intensity due to scattering and absorption is called _____.
A) reflection
B) refraction
C) attenuation
D) dispersion
A) reflection
B) refraction
C) attenuation
D) dispersion
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19
What is the velocity of all electromagnetic radiation?
A) 8 × 103 m/s
B) 2 × 108 m/s
C) 3 × 108 m/s
D) 4 × 103 m/s
A) 8 × 103 m/s
B) 2 × 108 m/s
C) 3 × 108 m/s
D) 4 × 103 m/s
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20
If the wavelength of a beam of electromagnetic radiation increases by a factor of 2, then its frequency must ___________.
A) double
B) increase four times
C) decrease by half
D) remain constant
A) double
B) increase four times
C) decrease by half
D) remain constant
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