RTE 1401 Chapter 6 Keiser University-Ft Lauderdale | UPDATED
Questions with 100% Verified Answers
Question:
Binding energy for Tungsten K shell
Answer:
69.5 keV
Question:
Binding energy for Tungsten L shell
Answer:
12.1 keV
Question:
Binding energy for Tungsten M shell
Answer:
2.82 keV
Question:
Binding energy for Tungsten N shell
Answer:
0.6 keV
Question:
Binding energy for Tungsten O shell
Answer:
0.08 keV
Question:
Binding energy for Tungsten P shell
Answer:
0.008 keV
, Question:
Discrete emission spectrum
Answer:
illustrates characteristic x-ray production, x axis is the x-ray
energy and the y axis is the number of each type of x-ray
photon
Question:
Characteristic photons
Answer:
produced when outer-shell electrons fill inner-shell vacancies
in atoms and are named for the shell being filled regardless of
the shell involved representing the energy variation depending
on what shell is involved
Question:
Continuous emission spectrum
Answer:
illustrates brems x-ray production, x axis is the energy, y axis
is the number of photons, creates a bell shaped continuum
Question:
Primary beam
Answer:
refers to the x-ray beam as it is upon exiting the collimator
and exposing the patient
Question:
Remnant beam
Answer:
refers to the x-ray beam that remains after interaction with the
patient and is exiting the patient to expose the image receptor
Questions with 100% Verified Answers
Question:
Binding energy for Tungsten K shell
Answer:
69.5 keV
Question:
Binding energy for Tungsten L shell
Answer:
12.1 keV
Question:
Binding energy for Tungsten M shell
Answer:
2.82 keV
Question:
Binding energy for Tungsten N shell
Answer:
0.6 keV
Question:
Binding energy for Tungsten O shell
Answer:
0.08 keV
Question:
Binding energy for Tungsten P shell
Answer:
0.008 keV
, Question:
Discrete emission spectrum
Answer:
illustrates characteristic x-ray production, x axis is the x-ray
energy and the y axis is the number of each type of x-ray
photon
Question:
Characteristic photons
Answer:
produced when outer-shell electrons fill inner-shell vacancies
in atoms and are named for the shell being filled regardless of
the shell involved representing the energy variation depending
on what shell is involved
Question:
Continuous emission spectrum
Answer:
illustrates brems x-ray production, x axis is the energy, y axis
is the number of photons, creates a bell shaped continuum
Question:
Primary beam
Answer:
refers to the x-ray beam as it is upon exiting the collimator
and exposing the patient
Question:
Remnant beam
Answer:
refers to the x-ray beam that remains after interaction with the
patient and is exiting the patient to expose the image receptor