Convection 100 J Triples Thermal Energy Nuclear Energy 900 J 98 J Substance A Law of Conservation of Energy GPE equals KE Specific Heat Capacity Kinetic Energy Particle Collisions Low Specific Heat Conduction 418.4 J Lower Specific Heat Doubles 50,000 J Hot to Cold Chemical Energy Insulators Increases (moves faster) 4,900 J Thermal and Light Energy Open System 480 J Lowest point 25 J High Specific Heat q = mcΔ T Radiant / Light Energy GPE decreases, KE increases Friction and Heat Convection Light to Chemical High Specific Heat Electrical to Thermal Sound Energy Highest point 784 J Quadruples (4x) Radiation Closed System 200 J Conduction Electrical Energy Gas Radiation Chemical Energy Convection 100 J Triples Thermal Energy Nuclear Energy 900 J 98 J Substance A Law of Conservation of Energy GPE equals KE Specific Heat Capacity Kinetic Energy Particle Collisions Low Specific Heat Conduction 418.4 J Lower Specific Heat Doubles 50,000 J Hot to Cold Chemical Energy Insulators Increases (moves faster) 4,900 J Thermal and Light Energy Open System 480 J Lowest point 25 J High Specific Heat q = mcΔ T Radiant / Light Energy GPE decreases, KE increases Friction and Heat Convection Light to Chemical High Specific Heat Electrical to Thermal Sound Energy Highest point 784 J Quadruples (4x) Radiation Closed System 200 J Conduction Electrical Energy Gas Radiation Chemical Energy
(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.
Convection
100 J
Triples
Thermal Energy
Nuclear Energy
900 J
98 J
Substance A
Law of Conservation of Energy
GPE equals KE
Specific Heat Capacity
Kinetic Energy
Particle Collisions
Low Specific Heat
Conduction
418.4 J
Lower Specific Heat
Doubles
50,000 J
Hot to Cold
Chemical Energy
Insulators
Increases (moves faster)
4,900 J
Thermal and Light Energy
Open System
480 J
Lowest point
25 J
High Specific Heat
q = mcΔ T
Radiant / Light Energy
GPE decreases, KE increases
Friction and Heat
Convection
Light to Chemical
High Specific Heat
Electrical to Thermal
Sound Energy
Highest point
784 J
Quadruples (4x)
Radiation
Closed System
200 J
Conduction
Electrical Energy
Gas
Radiation
Chemical Energy