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A single-turn current loop, carrying a current of 4.00A, is inthe shape of a right triangle with sides, 50.0, 120, and 130cm. Theloop is in a uniform magnetic field of magnitude 75.0 mT whosedirection is parallel to the current in the 130cm side of the loop. What is the magnitude of the magnetic force on (a) the 130cmside, (b) the 50.0cm side, and (c) the 120cm side? (d) What is the magnitude of the net force on the loop?
A 9.00 V battery has been used to fully charge a 3.00μF capacitor. How many electrons must be moved from the negative plate to the positive plate of the capacitor to completely reverse the electric field inside the capacitor, that is, the electric..
A dentist's drill starts from rest. After2.80s of constant angular acceleration, it turns at a rate of2.46104rev/min. Find the drill's angular acceleration
What does it mean for two variables, such as current and potential, to have a linear relationship to each other? Describe two devices "incandescent lamps and diodes" in which current and potential do not follow Ohm's Law.
A charge of -4.79 µC is located at the origin. A charge of 2.86 µC is located -3.93 cm along the y axis, that is, at the point (0.00,-3.93) cm. Find the electric field 6.95 cm along the x axis, that is, at the point (6.95, 0.00) cm
A particle of charge Q is fixed at the origin of an xy coordinate system. At t = 0 a particle (m = 0.897 g, q = 3.51 µC is located on the x axis at x = 15.4 cm, moving with a speed of 72.2 m/s in the positive y direction. For what value of Q (in ?..
A transverse wave of frequency 14 Hz propagates down a string. Two points 15 cm apart are out of phase by pi/6. What is the wave velocity
An X-ray photon scatters from a free electron at rest at an angle of 175 degree relative to incident direction. Find the kinetic energy of the recoil electron
describe in detail the effect of increasing torqueload on the excitation current armature current and output power as
A GaAs quantum well structure is given where a thin GaAs layer is embedded between AlGaAs layers. Assuming the we can treat the electrons in the GaAs conduction band as being trapped in a 1-D potential well in the x direction,
an object is placed in front of a converging lens in such a position that the lens f 11.0 cm produces a real image
A man whose mass is 80kg on the earth's surface is in a spacecraft at a height of 2 Earth radii above the earth's surface. At that height what is the acceleration due to gravity
I broke the Forces into their components: Fx=70N, Fy=40N. For the next part of this problem I used F=ma, and the horizontal force of 70N and found an acceleration of 5.8m/s^2, and this is where I think I went wrong, as after this all of my number..
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