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