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A circular loop of wire with a radius of 0.8 cm carries a current of 6 A. The loop is in a region of space where the magnitude of the magnetic field is 0.03T.The orientation of the loop:The angle, Theta, is 600 and the current is flowing out of the page to into the page indicates the direction of the current in the loop.
Determine the direction the loop will want to rotate.
Find maximum height reached by the diver using the equation of motion.
A barge on a still lake is moving toward a bridge at 10 meter per second. Use x = x0 + v0t + 1/2at2 to obtain the time it takes the barge to reach the bridge
why to Assume charge 1 is located at the origin of x axis. A ball is thrown directly downward with an initial speed of 8.70 m/s, from a height of 30.6 m. After what time interval does it strike the ground.
A beam of electrons of 25eV kinetic energy is directed at a single slit of 2.0 x 10-6 m width, and then detected at a screen 4m beyond the slit. How far from a point directly in the line of the beam
A force F = 4.2 Ni + 3.7 Nj + 1.2 Nk acts on a particle located at x = 3.3 m. What is the torque on the particle around the origin
a 5.2cm -thick layer of oil n1.46 is sandwiched between a 1.5cm -thick sheet of glass and a 2.3cm -thick sheet of
A cylinder which is in a horizontal position contains an unknown noble gas at 4.63 × 104 Pa and is sealed with a massless piston. calculate the change in internal energy of the system
At the surface of a freshwater lake the pressure is 106 kPa. Determine the pressure increase in going 34.9 meter below the surface
An archeological specimen containing 10.2 gram of carbon has an activity of 0.8 Bq. Evaluate how old is the specimen
Given that at t=0 we have x=dx/dt=0, find the function x(t). Use BOTH with variation of the parameters and guessing methods. Describe the solution if ω is approximately, but not exactly, equal to ωo. Give an example of a physical system where this ..
The electric potential at aposition located a distance of 21.6 mm from a positive point charge of 8.70×10-9C and 15.1 mm from a second pointcharge is 1.22 kV. Calculate the value of the second charge.
Light of wavelength 605 nm falls on a double slit, and the first bright fringe of the interference pattern is seen at an angle of 12.0° from the central maximum. Find the separation between the slits. µm
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