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  1. Print the notecards
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  3. Cut out the notecards by cutting along each horizontal dotted line
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  1. Verify Front of pages is selected for Viewing and print the front of the notecards
  2. Select Back of pages for Viewing and print the back of the notecards
    NOTE: Since the back of the pages are printed in reverse order (last page is printed first), keep the pages in the same order as they were after Step 1. Also, be sure to feed the pages in the same direction as you did in Step 1.
  3. Cut out the notecards by cutting along each horizontal and vertical dotted line
To print: Ctrl+PPrint as a list

36 notecards = 9 pages (4 cards per page)

Viewing:

review for physics exam (lacey)

front 1

Potential energy

back 1

Is the ability to do work by virtue of position

Energy is measured in joules

front 2

Energy

back 2

Is the ability to do work

Energy is measured in joules

front 3

Ionization

back 3

Is the removal of an electron from an atom

front 4

Example electromagnetic radiation

back 4

Gamma rays

Radio waves

X-rays

Microwaves

Ultraviolet

front 5

Examples of particulates radiation

back 5

Alpha particulate and Beta particulate

front 6

Natural environmental radiation

back 6

  • Natural environment radiation: 3 mSv/yr
  • Cosmic rays: Sun & stars
  • Terrestrial radiation: Deposits of uranium, thorium & other radionuclides in earth
  • internally deposited radionuclides: Potassium-40
  • Radon: affect us by giving us lung cancer

front 7

Radon

back 7

  • is a radioactive gas that is produced by the natural radioactive decay of uranium.
  • it emits alpha particles and contributes radiation dose to the lungs.

front 8

Unit of exposure

back 8

Air kerma/C/kg

Roentgen

front 9

rem

back 9

Unit of occupational dose

front 10

Curie or becquerel

back 10

Unit of radioactivity

front 11

Power

back 11

the quotient of work divided by time

P=W/ T=FD/T

SI unit: joule/seconds which is watt (w)

british unit: horsepower (hp)

front 12

Temperature Conversions

back 12

  • Tc =5/9(Tf -32)
  • Tf = 9/5 Tc + 32
  • Tk = Tc + 273
  • Tc = Tk - 273

front 13

Law of conservation of energy

back 13

a law of science that states that energy cannot be created or destroyed, but only changed from one form into another or transferred from one object to another

front 14

Oclet rule

back 14

Atoms gain, lose or share electrons with other atoms in order to fill their valence level with eight electrons.

front 15

Centripetal

Centrifugal

back 15

The force that keeps an electron in orbit

Flying out from the center force.

front 16

Isotopes

back 16

Atoms that have the same atomic number but different atomic mass numbers

front 17

Radioactivity

back 17

Radioactivity is the spontaneous emission of particles and energy in order to become stable.

front 18

Half life

back 18

is the time required for a quantity of radioactivity to be reduced to one-half its original value

front 19

Alpha particle

back 19

is a helium nucleus that contains two protons and two neutrons

front 20

Beta particles

back 20

Is an electron emitted from the nucleus of a radioactive atom

front 21

Gamma rays

back 21

come from the nucleus . x-rays come from the electron cloud

front 22

Photon

back 22

An x-ray photon is a quantum of electromagnetic energy

front 23

Amplitude

back 23

Is one half the range from crest to valley over which the sine wave varies

front 24

Frequency

back 24

Is the number of wavelengths that pass a point of observation per second.

front 25

Wavelength

back 25

is the distance from one crest to another, from valley to another or from any point one the sine wave to the next corresponding point

front 26

Relationship between the frequency an wavelength

back 26

Wavelength and frequency are inversely proportional

front 27

Electrostatics

back 27

Is the study of stationary electric charges

front 28

Electrodynamics

back 28

is the study of electric charges in motion

front 29

REsistance

back 29

The degree to which an electric current is opposed

R=V/I

front 30

Watt

back 30

Is the unit of power

front 31

Magnetic permeability

back 31

Is the ability of a material to attract the lines of magnetic field intensity

front 32

Magnetic susceptibility

back 32

is the ability of an object to become magnetized.

front 33

Ferro magnetic

back 33

Ferromagnetic objects can be made into magnets by Induction

front 34

Units of magnetism

back 34

is the tesla

1 Tesla (T)=10000 Gauss

front 35

Diamagnetic

back 35

no data

front 36

Paramagnetic

back 36

no data