Radiation Protection Chapter 2 Flashcards

1
Q

The ability to do work that is to move an object against resistance

A

Energy

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2
Q

The kinetic energy that passes from one location to another and can have many manifestations

A

Radiation

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3
Q

Can travel through the air or other materials to interact with structures in the human ear and produce sensation we call sound

A

mechanical vibrations

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4
Q

Mechanical vibration of a material in which the rate of vibration does not stimulate the human ear sensors and therefore is beyond the range of human hearing

A

ultrasound

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5
Q

Physical distance between successive maximum values of electric and magnetic field

A

wavelength

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6
Q

Form of radiation that can travel through space in the form of a wave but can interact with matter as a particle of energy

A

Wave Particle Duality

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7
Q

The full range of frequencies and wavelengths of electromagnetic waves

A

electromagnetic spectrum

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8
Q

When electromagnetic radiation is of high enough frequency can transfer sufficient energy to some orbital electrons to remove them from the atoms to which they were attached

A

ionization

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9
Q

Emitted from nuclei of very heavy elements such as uranium and plutonium during the process of radioactive decay. 2 protons, 2 neutrons, large mass, positive charge.

A

Alpha Particles

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10
Q

Identical to high speed electrons except for their origin. High penetrating power

A

Beta Particles

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11
Q

EqD-Radiation quantity used for radiation protection purposes when a person receives exposure from various types of ionizing radiation

A

Equivalent dose

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12
Q

EfD-manufactured quantity that takes into account the dose for all types of ionizing radiation to various irradiated organs or tissues in the human body

A

Effective Dose

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13
Q

Radiation damage to generations yet born

A

genetic damage

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14
Q

From radioactive materials in the crusts of the earth

A

Terrestrial radiation

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15
Q

From the sun (solar) and beyond solar system

A

Cosmic radiation

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16
Q

From radioactive atoms (radionuclides) that make up a small percentage of the body’s tissue

A

Internal radiation

17
Q

The amount of energy transferred to electrons by ionizing radiation is the bases of the concept of radiation dose

A

Radiation dose

18
Q

Know which radiations are considered ionizing?

A

x-rays, gamma rays, high energy ultraviolet radiation

19
Q

Know which radiations are considered nonionizing

A

low energy ultraviolet radiation, visible light, infrared rays, microwaves, radiowaves

20
Q

Know the foundation of interactions of x-rays and humans?

A

ionization

21
Q

Know what makes up particulate radiation?

A

Alpha particles, beta particles, neutrons, protons

22
Q

Know the difference between electrons and beta particles

A

Beta particles are identical to high speed electrons except for their origin. Electrons originated in atomic shells outside the nucleus and beta particles are emitted from within the nuclei of radioactive atoms

23
Q

Know what EqD attempts to do:

A

To specify numerically the differences in transferred energy and therefore potential biologic harm produced by different types of radiation

24
Q

Know what the occupational and non-occupational dose limits are expressed in?

A

EfD–effective dose

25
Q

Know what cellular damage is?

A

Abnormal cell function or even entire loss of cell function

26
Q

Know what 2 categories ionizing radiation can be considered

A
  • natural

* manmade

27
Q

Be able to give examples of manmade/artificial radiation?

A

medical x-rays, nuclear medicine, consumer products

28
Q

Know when and where the Three Mile Island accident occurred?

A

March 28, 1979

15 miles southeast of Harrisburg Pennsylvania

29
Q

Know when and where the Chernobyl accident occurred?

A

April 26 1986

Chernobyl, Ukraine

30
Q

Know when and where Fukushima accident occurred?

A

March 11, 2011

Coast of Japan

31
Q

Know the percentage of total collective EfD that medical radiation makes up on the population?

A

48%

32
Q

Know the ways the amount of radiation received by the patient can be expressed in?

A
  • ESE Entrance Skin Exposure
  • Bone Marrow Dose
  • Gonadal Dose