(II) The displacement of a bell-shaped wave pulse is described by a relation that involves the exponential function: D ( x , t ) = A e − α ( x − v t ) 2 where the constants A = 10.0 m, α = 2.0 m –2 , and v = 3.0 m/s. ( a ) Over the range –10.0 m ≤ x ≤ + 10.0 m, use a graphing calculator or computer program to plot D ( x , t ) at each of the three times t = 0, t = 1.0, and t = 2.0 s. Do these three plots demonstrate the wave-pulse shape shifting along the x axis by the expected amount over the span of each 1.0-s interval? ( b ) Repeal part ( a ) but assume D ( x , t ) = A e − α ( x + v t ) 2 .
(II) The displacement of a bell-shaped wave pulse is described by a relation that involves the exponential function: D ( x , t ) = A e − α ( x − v t ) 2 where the constants A = 10.0 m, α = 2.0 m –2 , and v = 3.0 m/s. ( a ) Over the range –10.0 m ≤ x ≤ + 10.0 m, use a graphing calculator or computer program to plot D ( x , t ) at each of the three times t = 0, t = 1.0, and t = 2.0 s. Do these three plots demonstrate the wave-pulse shape shifting along the x axis by the expected amount over the span of each 1.0-s interval? ( b ) Repeal part ( a ) but assume D ( x , t ) = A e − α ( x + v t ) 2 .
(II) The displacement of a bell-shaped wave pulse is described by a relation that involves the exponential function:
D
(
x
,
t
)
=
A
e
−
α
(
x
−
v
t
)
2
where the constants A = 10.0 m, α = 2.0 m–2, and v = 3.0 m/s. (a) Over the range –10.0 m ≤ x ≤ + 10.0 m, use a graphing calculator or computer program to plot D(x, t) at each of the three times t = 0, t = 1.0, and t = 2.0 s. Do these three plots demonstrate the wave-pulse shape shifting along the x axis by the expected amount over the span of each 1.0-s interval? (b) Repeal part (a) but assume
D
(
x
,
t
)
=
A
e
−
α
(
x
+
v
t
)
2
.
A creature can detect very small objects, such as an insect whose length is approximately equal to one wavelength of the sound the bat makes. If a bat emits chirps at a frequency of 56 kHz, and if the speed of sound in air is 315 m/s,
what is the smallest insect (in mm) the bat can detect?
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The amplitude of a wave disturbance
M20 (1
positive x-direction is given by y =
Tetromabruts esd (1+x)²
by y =
1 ad m
travelling in the
at time t = 0 and
[1 + (x − 1)²]
-
at t = 2 s, where x and y are in metre.
The shape of the wave disturbance does not change during
the propagation. The velocity of the wave is...... m/s.
A traveling wave along the x-axis is given by the following wave functionψ(x, t) = 3.5 cos(1.5x - 8.6t + 0.46). Calculate the phase constant in radians.
Chapter 15 Solutions
Physics for Scientists and Engineers with Modern Physics
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