ere u(x1, x2) = 5 x 1014s-1 for ¤1 + x2 > 0, and nm, and Te = gth, and the coherence distance in the transverse sition dependent? If this wave were recorded on co 1 µs. Determine the intensity, the po
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- Give the relationship between a wave's velocity, frequency, and wavelength. Show that this equation is dimensionally correct. Note that a graph of λ vs 1/f should be a straight line. What is its slope and y-intercept?Problem 22: Two frequency generators are creating sounds of frequencies 460 and 462 Hz simultaneously. Randomized Variables f1 = 460 Hz f2 = 462 Hz What average frequency will you hear in Hz? fave = sin() cos() tan() 7 8 9 HOME cotan() atan() cosh() ODegrees O Radians asin() acos() E 4 5 6 acotan() sinh() 1 3 tanh() cotanh() END - VO BACKSPACE CLEAR DEL Submit Hint Feedback I give up! What will the beat frequency be in Hz?A standing wave us given by y(x,t) = 10cos(5(pi)t)*sin((2/3)(pi)x) find two waves that could be superimposed to generate this standing wave.
- Examine the wave function below. Suppose there is a point that goes from y = 2 mm to y = 6 mm. How long does it take for the point to make the move?(a) To appreciate the human ear’s twelve order of magnitude (10^12) span from barely audible to the pain threshold, consider the following. Suppose an equivalently dynamic instrument were designed to measure distances. Taking the lower limit of the instrument to be 1.00 mm, what would be the largest distance measurable? (b) To provide a perspective for the human ear’s frequency sensitivity range (audible frequency extremes differ by 10^3 ), consider a speedometer with a similar speed range. If the speedometer’s maximum speed reading is 90.0 mi/h, what is the smallest finite speed that it could register?(a) To appreciate the human ear’s twelve order of magnitude (1012) span from barely audible to the pain threshold, consider the following. Suppose an equivalently dynamic instrument were designed to measure distances. Taking the lower limit of the instrument to be 1.00 mm, what would be the largest distance measurable? (b) To provide a perspective for the human ear’s frequency sensitivity range (audible frequency extremes differ by 103 ), consider a speedometer with a similar speed range. If the speedometer’s maximum speed reading is 90.0 mi/h, what is the smallest finite speed that it could register?