Reddening of the Moon/sun at the horizon Intensity Perihelion Perfect Circle Adsorption Moon's Light Virtual Image Refraction Reflecting Telescope Excited State Newton's Third Law of Motion Light Ultraviolet Light Kepler's Second Law of Planetary Motion Increasing the Mass Photon Kepler's Laws of Planetary Motion Cosmic Microwave Background Concave Mirror Focus Energy produce is greater. Red It is crowded out by other light colors. Magnified Real Image Violet Particle Nature Newton's Second Law of Motion Polarization Diffraction Diverging (Concave) Lens Wavelength Refraction Telescope It produces colors of light we can't see. Upright Inverse Proportion Aphelion Microwaves Kepler's First Law of Planetary Motion Doppler Effect Semimajor axis Foci Interference Catadioptric Telescope Newton's first Law of Motion Ground State Reflection Gamma Rays Visible Light Blackbody Curve Radio waves Red Shift Filters X- rays Blue Shift Convex Mirror Wave Nature Wave- Particle Duality Gravitational Lensing Kepler's Third Law of Planetary Motion Reduced Speed of Light Energy produced is less. Inverted Frequency Emission Magnetic Fields of Stars Direct Proportion Infrared Light Scattering Newton's Law of Universal Gravitation Electrons Newton's Law's of Motion Photoelectric Effect Electromagnetic Spectrum Color Fringing Increasing the Distance Converging (Convex) Lens Flat Mirror Reddening of the Moon/sun at the horizon Intensity Perihelion Perfect Circle Adsorption Moon's Light Virtual Image Refraction Reflecting Telescope Excited State Newton's Third Law of Motion Light Ultraviolet Light Kepler's Second Law of Planetary Motion Increasing the Mass Photon Kepler's Laws of Planetary Motion Cosmic Microwave Background Concave Mirror Focus Energy produce is greater. Red It is crowded out by other light colors. Magnified Real Image Violet Particle Nature Newton's Second Law of Motion Polarization Diffraction Diverging (Concave) Lens Wavelength Refraction Telescope It produces colors of light we can't see. Upright Inverse Proportion Aphelion Microwaves Kepler's First Law of Planetary Motion Doppler Effect Semimajor axis Foci Interference Catadioptric Telescope Newton's first Law of Motion Ground State Reflection Gamma Rays Visible Light Blackbody Curve Radio waves Red Shift Filters X- rays Blue Shift Convex Mirror Wave Nature Wave- Particle Duality Gravitational Lensing Kepler's Third Law of Planetary Motion Reduced Speed of Light Energy produced is less. Inverted Frequency Emission Magnetic Fields of Stars Direct Proportion Infrared Light Scattering Newton's Law of Universal Gravitation Electrons Newton's Law's of Motion Photoelectric Effect Electromagnetic Spectrum Color Fringing Increasing the Distance Converging (Convex) Lens Flat Mirror
(Print) Use this randomly generated list as your call list when playing the game. 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.
G-Reddening of the Moon/sun at the horizon
I-Intensity
B-Perihelion
B-Perfect Circle
G-Adsorption
G-Moon's Light
O-Virtual Image
G-Refraction
O-Reflecting Telescope
I-Excited State
B-Newton's Third Law of Motion
I-Light
N-Ultraviolet Light
B-Kepler's Second Law of Planetary Motion
B-Increasing the Mass
I-Photon
B-Kepler's Laws of Planetary Motion
G-Cosmic Microwave Background
O-Concave Mirror
O-Focus
N-Energy produce is greater.
N-Red
N-It is crowded out by other light colors.
O-Magnified
O-Real Image
N-Violet
I-Particle Nature
B-Newton's Second Law of Motion
G-Polarization
G-Diffraction
O-Diverging (Concave) Lens
I-Wavelength
O-Refraction Telescope
N-It produces colors of light we can't see.
O-Upright
I-Inverse Proportion
B-Aphelion
N-Microwaves
B-Kepler's First Law of Planetary Motion
G-Doppler Effect
B-Semimajor axis
B-Foci
G-Interference
O-Catadioptric Telescope
B-Newton's first Law of Motion
I-Ground State
G-Reflection
N-Gamma Rays
N-Visible Light
N-Blackbody Curve
N-Radio waves
G-Red Shift
N-Filters
N-X-rays
G-Blue Shift
O-Convex Mirror
I-Wave Nature
I-Wave-Particle Duality
G-Gravitational Lensing
B-Kepler's Third Law of Planetary Motion
O-Reduced
I-Speed of Light
N-Energy produced is less.
O-Inverted
I-Frequency
G-Emission
G-Magnetic Fields of Stars
I-Direct Proportion
N-Infrared
G-Light Scattering
B-Newton's Law of Universal Gravitation
I-Electrons
B-Newton's Law's of Motion
I-Photoelectric Effect
I-Electromagnetic Spectrum
O-Color Fringing
B-Increasing the Distance
O-Converging (Convex) Lens
O-Flat Mirror