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