Boron *metalloid *column 13 *3 valence electrons Iron *transition metal *4 electron shells/energy levels *atomic symbol: Fe Gold *transition metal *6 electron shells/energy levels *atomic symbol: Au Rubidium *alkali metal *highly reactive *relatively large atomic radius *5 electron shells/energy levels Silicon *metalloid *3 electron shells/energy levels *readily forms covalent bonds Calcium *alkaline earth metal *2 valence electrons *4 electron shells/ energy levels Aluminum *transition metal *3 valence electrons *3 electron shells/ energy levels Lithium *alkali metal *row 2 *1 valence electron Potassium *alkali metal *19 protons *atomic symbol: K Arsenic *metalloid *5 valence electrons *4 electron shells/energy levels Fluorine *halogen *highly reactive *row 2 *7 valence electrons Magnesium *alkaline earth metal *12 protons *3 electron shells/energy levels Sulfur *nonmetal *6 valence electrons *3 electron shells/energy levels Argon *noble gas *8 valence electrons *3 electron shells/energy levels Oxygen *pretty reactive nonmetal *2 electron shells/ energy levels *6 valence electrons Hydrogen *halogen *column 1 *1 proton *small atomic radius Chlorine *halogen *3 electron shells/energy levels *7 valence electrons Carbon *nonmetal *4 valence electrons *6 protons *readily forms covalent bonds Sodium *alkali metal *3 electron shells/energy levels *atomic symbol: Na Helium *noble gas *has a full outer electron shell with 2 electrons *2 protons Nitrogen *nonmetal *5 valence electrons *row 2 *small atomic radius Beryllium *alkaline earth metal *row 2 *2 valence electrons Iodine *halogen *relatively large atomic radius *5 electron shells/energy levels Neon *noble gas *has a full outer electron shell with 8 electrons in it *row 2 *non-reactive Boron *metalloid *column 13 *3 valence electrons Iron *transition metal *4 electron shells/energy levels *atomic symbol: Fe Gold *transition metal *6 electron shells/energy levels *atomic symbol: Au Rubidium *alkali metal *highly reactive *relatively large atomic radius *5 electron shells/energy levels Silicon *metalloid *3 electron shells/energy levels *readily forms covalent bonds Calcium *alkaline earth metal *2 valence electrons *4 electron shells/ energy levels Aluminum *transition metal *3 valence electrons *3 electron shells/ energy levels Lithium *alkali metal *row 2 *1 valence electron Potassium *alkali metal *19 protons *atomic symbol: K Arsenic *metalloid *5 valence electrons *4 electron shells/energy levels Fluorine *halogen *highly reactive *row 2 *7 valence electrons Magnesium *alkaline earth metal *12 protons *3 electron shells/energy levels Sulfur *nonmetal *6 valence electrons *3 electron shells/energy levels Argon *noble gas *8 valence electrons *3 electron shells/energy levels Oxygen *pretty reactive nonmetal *2 electron shells/ energy levels *6 valence electrons Hydrogen *halogen *column 1 *1 proton *small atomic radius Chlorine *halogen *3 electron shells/energy levels *7 valence electrons Carbon *nonmetal *4 valence electrons *6 protons *readily forms covalent bonds Sodium *alkali metal *3 electron shells/energy levels *atomic symbol: Na Helium *noble gas *has a full outer electron shell with 2 electrons *2 protons Nitrogen *nonmetal *5 valence electrons *row 2 *small atomic radius Beryllium *alkaline earth metal *row 2 *2 valence electrons Iodine *halogen *relatively large atomic radius *5 electron shells/energy levels Neon *noble gas *has a full outer electron shell with 8 electrons in it *row 2 *non-reactive
(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.
*metalloid
*column 13
*3 valence electrons
Boron
*transition metal
*4 electron shells/energy levels
*atomic symbol: Fe
Iron
*transition metal
*6 electron shells/energy levels
*atomic symbol: Au
Gold
*alkali metal
*highly reactive
*relatively large atomic radius
*5 electron shells/energy levels
Rubidium
*metalloid
*3 electron shells/energy levels
*readily forms covalent bonds
Silicon
*alkaline earth metal
*2 valence electrons
*4 electron shells/ energy levels
Calcium
*transition metal
*3 valence electrons
*3 electron shells/ energy levels
Aluminum
*alkali metal
*row 2
*1 valence electron
Lithium
*alkali metal
*19 protons
*atomic symbol: K
Potassium
*metalloid
*5 valence electrons
*4 electron shells/energy levels
Arsenic
*halogen
*highly reactive
*row 2
*7 valence electrons
Fluorine
*alkaline earth metal
*12 protons
*3 electron shells/energy levels
Magnesium
*nonmetal
*6 valence electrons
*3 electron shells/energy levels
Sulfur
*noble gas
*8 valence electrons
*3 electron shells/energy levels
Argon
*pretty reactive nonmetal
*2 electron shells/ energy levels
*6 valence electrons
Oxygen
*halogen
*column 1
*1 proton
*small atomic radius
Hydrogen
*halogen
*3 electron shells/energy levels
*7 valence electrons
Chlorine
*nonmetal
*4 valence electrons
*6 protons
*readily forms covalent bonds
Carbon
*alkali metal
*3 electron shells/energy levels
*atomic symbol: Na
Sodium
*noble gas
*has a full outer electron shell with 2 electrons
*2 protons
Helium
*nonmetal
*5 valence electrons
*row 2
*small atomic radius
Nitrogen
*alkaline earth metal
*row 2
*2 valence electrons
Beryllium
*halogen
*relatively large atomic radius
*5 electron shells/energy levels
Iodine
*noble gas
*has a full outer electron shell with 8 electrons in it
*row 2
*non-reactive
Neon