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Bushong’s Radiologic Science for Technologists: Physics, Biology, and Protection | 13th
Edition
by Stewart C. Bushong, Elizabeth Shields
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PART I: RADIOLOGIC PHYSICS
1. Essential Concepts of Radiologic Science
2. Basic Physics Primer
3. The Structure of Matter
4. Electromagnetic Energy
5. Electricity, Magnetism, and Electromagnetism
PART II: X-RADIATION
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6. The X-ray Imaging System
7. The X-ray Tube
8. X-ray Production
9. X-ray Emission
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10. X-ray Interaction With Matter
PART III: X-RAY IMAGING
11. Computed Radiography
12. Digital Radiography
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13. Digital Radiographic Technique
14. Image Acquisition
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15. Scatter Radiation
16. Digital Image Descriptors and Evaluation
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17. Radiographic Artifacts
PART IV: ADVANCED MEDICAL IMAGING
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18. Mammography
19. Fluoroscopy
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20. Interventional Radiology
21. Computed Tomography
22. Tomosynthesis
PART V: MEDICAL IMAGE DISPLAY
23. Patient-Image Optimization
24. Viewing the Medical Image
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25. Medical Image Informatics
26. Digital Display Device
PART VI: THE MEDICAL IMAGE
27. Imaging Science
28. Artificial Intelligence
29. Quantum Computing
30. Image Perception
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PART VII: RADIOBIOLOGY
31. Human Biology
32. Fundamental Principles of Radiobiology
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33. Molecular Radiobiology
34. Cellular Radiobiology
35. Deterministic Effects of Radiation
36. Stochastic Effects of Radiation
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PART VIII: RADIATION PROTECTION
37. Health Physics
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38. Designing for Radiation Protection
39. Radiography/Fluoroscopy Patient Radiation Dose
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40. Computed Tomography Patient Radiation Dose
41. Patient Radiation Dose Management
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42. Occupational Radiation Dose Management
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Chapter 01: Essential Concepts of Radiologic Science
Bushong: Radiologic Science for Technologists, 13th Edition
MULTIPLE CHOICE
1. Matter is measured in .
a. kilograms
b. joules
c. electron volts
d. rems
ANS: A
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Matter is measured in kilograms.
2. Atoms and molecules are the fundamental building blocks of .
a. energy
b. radiation
c. matter
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d. gravity
ANS: C
Atoms and molecules are the fundamental building blocks of matter.
3. Ice and steam are examples of two forms of .
a. matter
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b. radiation
c. energy
d. work
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ANS: A
Ice and steam are examples of two forms of matter.
4. The formula E = mc2 is the basis for the theory that led to the development of .
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a. x-rays
b. electromagnetic radiation
c. nuclear power
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d. cathode ray tubes
ANS: C
The formula E = mc2 is the basis for the theory that led to the development of nuclear power.
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5. Radio waves, light, and x-rays are all examples of energy.
a. nuclear
b. thermal
c. electrical
d. electromagnetic
ANS: D
Electromagnetic energy includes radio waves, light, and x-rays as well as other parts of the
spectrum.
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