6. A source of vibration begins abruptly and is represented by the equation: X1 = 5.2 e i(t-0.5) where the phase is given in radians. A second source of vibration of the same frequency as the first, begins 5ms after the first and is twice as loud. Write down the equation for this second vibration, x2 in the same form as x1 if both vibrations have a frequency of 55Hz.
6. A source of vibration begins abruptly and is represented by the equation: X1 = 5.2 e i(t-0.5) where the phase is given in radians. A second source of vibration of the same frequency as the first, begins 5ms after the first and is twice as loud. Write down the equation for this second vibration, x2 in the same form as x1 if both vibrations have a frequency of 55Hz.
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
Transcribed Image Text:6. A source of vibration begins abruptly and is represented by the equation:
X1 = 5.2 e i(ot-0.5)
where the phase is given in radians.
A second source of vibration of the same frequency as the first, begins 5ms after the
first and is twice as loud. Write down the equation for this second vibration, x2 in the
same form as x₁ if both vibrations have a frequency of 55Hz.
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