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Determine the work (in J) released when the mass falls are 2:01 am?Supposing you used this work generated by the engine to run a 4-watt
Christmas tree bulb, how long could the bulb be made to light using the energy/work generated?
Attachment:- 1546528_1_ga6-201.pdf
a duck has a mass of 3.0 kg. as the duck paddles a force of 0.06 n acts on it in a direction due east. in addition the
A wagon is rolling forward on level ground. Friction is negligible. The person sitting in the wagon is holding a rock. The total mass of the wagon, person and rock is 95.0 kg. The mass of the rock is 0.300 kg. Originally the wagon is rolling forward ..
Charge 1 is -3x10^-6C and has a velocity of 9x10^6 m/s while charge 2 is 8x10^-6C, What is the total magnetic field at the origin
consider the function fx cosbsqrt of x where b 6.28 cm-0.5.a argue that this wave has crests at x0.1 cm 4cm 9cm and so
Compton used photons of wavelength 0.0711 nanometer. Determine what is the recoil energy of the electrons
Two ac generators supply the same voltage. However, the firstgenerator has a frequency of 1.5 kHz, and the second has afrequency of 6.4 kHz. When an inductor isconnected across the terminals of the first generator, the currentdelivered is 0.55 A.
A proton moves at 4.9x106 m/s in a magnetic field where B = 0.42 T. what force does the proton experience
There are 2 spaceships, A and B, that approach the earth from opposite directions. Now according to an observer on spaceship A, she approaches the earth at 0.7c.
A proton and an electron are both accelerated through a potential difference of 7200V. What is the velocity of each particle
When the sun is directly overhead, a hawk dives toward the ground with a constant velocity of 6.90 m/s at 70.0 degrees below the horizontal. find the speed of her shadow on the level ground
Charge q1 = 5.47*10^-8 is placed at the origin. Charges q2 =-1.45*10^-8 C and q3 = 1.95*10^-8 C, Determine the direction of the net electrostatic force on charge q3
light ray is incident normally to the long face (the hypotenuse) of a 45° -45° -90° prism surrounded by air, Calculate the minimum index of refraction of the prism
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