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If instead the axle must give the buckets an upward acceleration of 0.400m/s^2, what should the angular acceleration of the axle be?
Consider a spin 1/2 particle placed in a magnetic field Bowith components
A uniform thin solid door has height 2.20 m, width 0.870 m, and mass 23.0 kg. Find its moment of inertia for rotation on its hinges.
What is the magnitude and direction of the centripetal acceleration due to the earth's rotation at a location near Kansas City at 38 degrees latitude?
Consider a free particle Consider a free particle
Does the mirror equation (p^-1 + d^-1 = 2R^-1 = f^1) apply to a plane mirror? What relationship between p and d does it imply?
A uniform cylinder of radius 10 cm and mass 20 kg is mounted so as to rotate freely about a horizontal axis that is parallel.
A particle of positive energy approaches the square well illustrated. Some of the wave will be transmitted and some will be reflected.
Temperature plays a role in determining the relevance of electronic, vibrational, and rotational spectral lines in room-temperature biomedical optics.
Consider three particles, each of mass m, moving in one dimension and bound to eachother by harmonic forces, i.e., V=k/2*[(x_1-x_2)^2+(x_2-x_3)^2+(x_3-x_1)^2]
A disc of Radius a lies on x-y plane with the z axis through its center. Surface Charge of uniform density P (row ) lies on the disk.
A hoop of mass M and radius 1? rolls without slipping along a track which has the shape of a circle with radius 4R. It is subject to gravity.
Name the element corresponding to each characteristic below:
If we define the period of the fan as the time it takes for the fan to rotate and appear to return to its "starting position", what is the frequency.
At t=3s, a point on the rim of a .2m radius wheel has a tangential speed of 50m/s as the wheel slows down with a tangential acceleration of constant magnitude.
The condition that must exist when a body is at rest is that the magnitude of the resultant of forces acting on the body must be
A fountain has jets that squirt water in all directions at a speed of 16 ft/sec from a central point as shown.
Suppose the largest surface of the body through which flux passes has an area of 0.024 m2 and a normal that is parallel to a magnetic field of 2.0 T.
The 3-D time independent Schrodinger equation for a particle of mass m in a spherically symmetric potential is
Ball a, of mass m_a, is connected to ball b, of mass m_b, by a massless rod of length L. The two vertical dashed lines in the figure, one through each ball.
What is the torque (TD) about axis D due to F? (D is the point located at a distance d from the origin and making an angle phi with the x axis.)
We saw in class that a 3-dimensional ideal gas obeys pV = 3/2E, where p is the pressure, V is the volume, and E is the internal energy (average kinetic energy)
A circular disk of radius 0.010 m rotates with a constant angular speed of 5.0 rev/s. What is the acceleration of a point on the angle of the disk?
The one dimensional parity operator (pie) is defined by attached. in other wards (phi) changes x into -x everywhere in the function
Given matrix A = 1 2 0 where i found the eigenvalues to be 3hw, 0, -3hw.