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Q: Ask us A given wave has a wavelength of 1.4 m and a frequency of 2.0 Hz. How fast is the wave moving?
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A given wave has a wavelength of 1.4 m and a frequency of 2.0 Hz. How fast is the wave moving?

2.8 m/s


A given wave has a wavelength of 5.0 m and a frequency of 2.0 Hz How fast is the wave moving?

10 m/s


A given wave has a wavelength of 0.10 m and a frequency of 60 Hz How fast is the wave moving?

6.0 m/s


How fast is a wave moving if its wavelength is 10meters and its frequency is 110Hz?

The speed of a wave is equal to its wavelength times its frequency. Since you are using SI units, the answer will be in meters/second.


How fast is a wave moving if it has a frequency of 10 Hz and there are 4 meters between crests?

The wave speed can be calculated using the formula: speed = frequency x wavelength. Given the frequency of 10 Hz and a wavelength of 4 meters between crests, the speed of the wave would be 40 m/s.


Which has a larger wavelength a slow moving photon or a fast moving golf ball?

A slow moving photon has a longer wavelength compared to a fast moving golf ball. Wavelength is inversely proportional to speed, so the slower the object, the longer the wavelength.


What changes in the when you increase the wavelength?

The frequency becomes lower. Frequency is how fast the waves come by.


Would a slow moving proton or a fast moving golf ball have a larger wavelength?

fast moving Golf ball.


How fast is a wave moving if its wave length is 10 meters and its frequency is 110 Hz?

The formula for a wave in this case is: speed = frequency x wavelength. Since Hz = 1/second, the answer will be in meter/second.


What changes in the wave when you increase the wavelength?

The frequency becomes lower. Frequency is how fast the waves come by.


What would have a larger wavelength a slow moving proton or a fast moving golf ball?

fast moving Golf ball.


What are 4 properties that all waves have?

Four properties that all waves have are amplitude (height of wave), wavelength (distance between wave peaks), frequency (number of waves that pass a point in a given time), and speed (how fast the wave travels).