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Solve the following problem:
Problem: Roughly estimate how much faster you would tumble when compacted in a ball than you would when your body was extended and straight.
Please show how you obtained the answer for above problem.
A 9.5 μC charge is at x = 15 centimeter, y = 5 centimeter and a -3.2 μC charge is at x = 4.4 centimeter, y = 11 centimeter. Determine the force on the negative charge
A 5kg particle is hit with a 5N force for 0.2s towards a wall 5m away. How long does it take for the particle to hit the wall
A student makes a simple ac generator by using a single square wire loop 15cm on a side. The loop is then rotated at a frequency of 60 Hz in a magnetic field of 1.8×10?2T, What is the maximum emf output
You measure the period of your heartbeat on a particular EKG graph to be 1.2841 ± 0.0619 s. Find what is your heart rate in beats per minute
A tennis ball is hit with a speed of 27 m/s at an angle of 45o. It lands on the flat roof of a 13-m-tall building. What is its velocity at landing
If an underwater vehicle were to explore such a depth, what force would the water exert on the vehicle's observation window (radius = 0.10 m)? For comparison, determine the weight of a jetliner whose mass is 1.20 105 kg
Light from a sodium lamp with a wavelength in a vacuum of 590 nm enters diamond in which the speed of light is 1.24 108 m/s. What is the wavelength of this light in diamond
If a drop is to be deflected a distance = 0.28 by the time it reaches the end of the deflection plate, what magnitude of charge should be given to the drop? Imagine that the density of the ink drop is 1000 and ignore the effects of gravity.
A 0.60-kg basketball is dropped out of the window that is 6.0 m above the ground. The ball is caught by a person whose hands are 1.2 m above the ground.
Compute the speed of the water just before striking the turbine blades (neglect air resistance).
which best describes the relationship between two systems in thermal equilibrium?a. no net energy is exchangedb.
A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed of 21.0 m/s. Compute with what speed and angle of impact does the stone land
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