An object with mass 0.200 kg is acted on by an elastic restoring force with force constant 10.0 N/m. (a) Graph elastic potential energy U as a function of displacement x over a range of x from −0.300 m to +0.300 m. On your graph, let 1 cm = 0.05 J vertically and 1 cm = 0.05 m horizontally. The object is set into oscillation with an initial potential energy of 0.140 J and an initial kinetic energy of 0.060 J. Answer the following questions by referring to the graph. (b) What is the amplitude of oscillation? (c) What is the potential energy when the displacement is one-half the amplitude? (d) At what displacement are the kinetic and potential energies equal? (c) What is the value of the phase angle ϕ if the initial velocity is positive and the initial displacement is negative?
An object with mass 0.200 kg is acted on by an elastic restoring force with force constant 10.0 N/m. (a) Graph elastic potential energy U as a function of displacement x over a range of x from −0.300 m to +0.300 m. On your graph, let 1 cm = 0.05 J vertically and 1 cm = 0.05 m horizontally. The object is set into oscillation with an initial potential energy of 0.140 J and an initial kinetic energy of 0.060 J. Answer the following questions by referring to the graph. (b) What is the amplitude of oscillation? (c) What is the potential energy when the displacement is one-half the amplitude? (d) At what displacement are the kinetic and potential energies equal? (c) What is the value of the phase angle ϕ if the initial velocity is positive and the initial displacement is negative?
An object with mass 0.200 kg is acted on by an elastic restoring force with force constant 10.0 N/m. (a) Graph elastic potential energy U as a function of displacement x over a range of x from −0.300 m to +0.300 m. On your graph, let 1 cm = 0.05 J vertically and 1 cm = 0.05 m horizontally. The object is set into oscillation with an initial potential energy of 0.140 J and an initial kinetic energy of 0.060 J. Answer the following questions by referring to the graph. (b) What is the amplitude of oscillation? (c) What is the potential energy when the displacement is one-half the amplitude? (d) At what displacement are the kinetic and potential energies equal? (c) What is the value of the phase angle ϕ if the initial velocity is positive and the initial displacement is negative?
disks have
planes
that are
parallel and centered
Three polarizing
On a common axis. The direction of the transmission axis
Colish dashed line) in each case is shown relative to the common
vertical direction. A polarized beam of light (with its axis
of polarization parallel to the horizontal reference direction)
is incident from the left on the first disk with int
intensity
So = 790 W/m². Calculate the transmitted intensity if 81=28.0°
O2-35.0°, and O3 = 40.0°
w/m²
horizontal
Өз
02
A polarized light is incident on several polarizing disks whose planes
are parallel and centered on common axis. Suppose that the transmission
axis of
the first polarizer is rotated 20° relative to the axis of polarization
of the incident
and that the transmission axis
of
each
exis of
light,
additional analyzer is rotated 20° relative to the transmission axis
the previous one. What is the minimum number of polarizer
needed (whole number), so the transmitted light through all
polarizing sheets has an
Striking
intensity that is less then 10% that
the first polarizer?
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