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