A maser is a laser-type device that produces electromagnetic waves with frequencies in the microwave and radio-wave bands of the Part B electromagnetic spectrum. You can use the radio waves generated by a hydrogen maser as a standard of frequency. The frequency of these waves is 1,420,405,751.786 hertz. (A hertz is another name for one cycle per second.) A clock controlled by a hydrogen maser is off by only 1 s in 100,000 years. (The large number of significant figures given for the frequency simply illustrates the remarkable accuracy to which it has been measured.) How many cycles occur in 1.4 h? ? N = cycles

Inquiry into Physics
8th Edition
ISBN:9781337515863
Author:Ostdiek
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Chapter8: Electromagnetism And Em Waves
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A maser is a laser-type device that produces
electromagnetic waves with frequencies in the
microwave and radio-wave bands of the
Part B
electromagnetic spectrum. You can use the radio
waves generated by a hydrogen maser as a
standard of frequency. The frequency of these
waves is 1,420,405,751.786 hertz. (A hertz is
another name for one cycle per second.) A clock
controlled by a hydrogen maser is off by only 1 s in
100,000 years. (The large number of significant
figures given for the frequency simply illustrates the
remarkable accuracy to which it has been
measured.)
How many cycles occur in 1.4 h?
?
N =
cycles
Transcribed Image Text:A maser is a laser-type device that produces electromagnetic waves with frequencies in the microwave and radio-wave bands of the Part B electromagnetic spectrum. You can use the radio waves generated by a hydrogen maser as a standard of frequency. The frequency of these waves is 1,420,405,751.786 hertz. (A hertz is another name for one cycle per second.) A clock controlled by a hydrogen maser is off by only 1 s in 100,000 years. (The large number of significant figures given for the frequency simply illustrates the remarkable accuracy to which it has been measured.) How many cycles occur in 1.4 h? ? N = cycles
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