Conservation of Energy electrons moving ultraviolet light pendulum waves crest infrared trough opposite poles attract energy due to position x- rays biomass battery mechanical energy magnetism thermal vacuum water nuclear electromagnetic ability to do work lights energy transformations electric circuit energy due to motion kinetic energy solar microwaves energy like poles repel radiant light fossil fuels mechanical renewable energy magnet strength wind refraction vibrations wires visible Calorie stored in nucleus coal reflection moving objects and sound medium oil frequency potential energy natural gas south pole north pole sound waves electrical bonds between atoms chemical non- renewable geothermal electromagnetic energy heat wavelength Conservation of Energy electrons moving ultraviolet light pendulum waves crest infrared trough opposite poles attract energy due to position x- rays biomass battery mechanical energy magnetism thermal vacuum water nuclear electromagnetic ability to do work lights energy transformations electric circuit energy due to motion kinetic energy solar microwaves energy like poles repel radiant light fossil fuels mechanical renewable energy magnet strength wind refraction vibrations wires visible Calorie stored in nucleus coal reflection moving objects and sound medium oil frequency potential energy natural gas south pole north pole sound waves electrical bonds between atoms chemical non- renewable geothermal electromagnetic energy heat wavelength
(Print) Use this randomly generated list as your call list when playing the game. There is no need to say the BINGO column name. Place some kind of mark (like an X, a checkmark, a dot, tally mark, etc) on each cell as you announce it, to keep track. You can also cut out each item, place them in a bag and pull words from the bag.
Conservation of Energy
electrons moving
ultraviolet
light
pendulum
waves
crest
infrared
trough
opposite poles attract
energy due to position
x-rays
biomass
battery
mechanical energy
magnetism
thermal
vacuum
water
nuclear
electromagnetic
ability to do work
lights
energy transformations
electric circuit
energy due to motion
kinetic energy
solar
microwaves
energy
like poles repel
radiant light
fossil fuels
mechanical
renewable energy
magnet strength
wind
refraction
vibrations
wires
visible
Calorie
stored in nucleus
coal
reflection
moving objects and sound
medium
oil
frequency
potential energy
natural gas
south pole
north pole
sound waves
electrical
bonds between atoms
chemical
non-renewable
geothermal
electromagnetic energy
heat
wavelength