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DO NOT GIVE ME THE ANSWERS, JUST TELL ME HOW MANY ARE WRONG AND I WILL RESEARCH ALL THE ANSWERS.
F. Simple harmonic motion can be represented by a sine curve
T. A violin string which vibrates with a frequency of 196 Hz produces a sound wave with a a frequency of 1/196 Hz
F. A pendulum with a mass of 10 g and a length of 20 cm swings back and forth more frequently than a pendulum with a mass of 20 g and a length of 10 cm
F. The wavelength produced by a violin string with a frequency of 196 Hz is greater than the wavelength produced by a piano string with a frequency of 262 Hz.
T. When a tranverse wave moves in a medium, the motion of the medium, the motion of the medium is in the same direction as the motion of the wave
F.When the crest of two waves overlap the result is destructive interference
T. All elastic materials have a natural frequency
T. Accelerating electric charges produce longitudinal waves.
T. In a vacuum, blue light moves at a faster speed than red light.
T. Blue light has a higher frequency than red light
F. Simple harmonic motion can be represented by a sine curve
T. A violin string which vibrates with a frequency of 196 Hz produces a sound wave with a a frequency of 1/196 Hz
F. A pendulum with a mass of 10 g and a length of 20 cm swings back and forth more frequently than a pendulum with a mass of 20 g and a length of 10 cm
F. The wavelength produced by a violin string with a frequency of 196 Hz is greater than the wavelength produced by a piano string with a frequency of 262 Hz.
T. When a tranverse wave moves in a medium, the motion of the medium, the motion of the medium is in the same direction as the motion of the wave
F.When the crest of two waves overlap the result is destructive interference
T. All elastic materials have a natural frequency
T. Accelerating electric charges produce longitudinal waves.
T. In a vacuum, blue light moves at a faster speed than red light.
T. Blue light has a higher frequency than red light