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A point charge is accelerated from rest through a potential difference of 150V and gains a speed V0.
What speed (in terms of V0 ) would it gain if it were accelerated through 275V instead?
Through what potential difference should it be accelerated if we want its final speed to be 3.00V0?
A 50-kilogram woman balances on one heel of a pair of high heel shoes. If the heel is circular with radius of .5 cm, what pressure does she exert on the floor.
An L-R-C series circuit, R= 160 Ω, L= 0.700 H, and C= 1.90×10-2 μF. The source has a voltage amplitude of 160 V and a frequency equal to the resonance frequency of the circuit. what is the average power delivered by the source
A dish antenna with a diameter of 22.8 m receives (at normal incidence) a radio signal from a distant source, find the intensity of the radiation received by the antenna
question1a line of charge starts at x x0 and extends to positive infinity. the linear charge density is lambda
What frequency is heard by an observer who hears the 450-Hz siren on a police car traveling at 35 m/s away from her
Two waves traveling on a string in the same direction both have a frequency of 141 Hz, a wavelength of .43 m, and an amplitude of .16 m. What is the phase difference between the two waves
Illustrate what is the magnitude of the apparent weight of a 78kg astronaut 5200km from the center of the Earth's moon in a space vehicle moving at constant velocity?
Consider the circuit shown in the figure below, where C1 = 2.00 µF, C2 = 9.00 µF, and ?V = 18.0 V. Calculate the final charge on each capacitor
The voltage drop along a 30.0m segment of a power line made from copper wire (a very good conductor) is 1.2V, while carrying a current of 25.0 A. How large is the electric field along the wire
Calculate the volume charge density of the atmosphere
question1a 0.31 kg softball has a velocity of 14 ms at an angle of 44deg below horizontal just before making contact
Consider a large uniform rectangle, length L on the long edge and width W on the short edge. Calculate the moment of inertial of the rectangle
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