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The front wheel of a bicycle has a conducting rim whose electrical resistance is 0.01 Ohm. The bicycle is traveling along straight line at the speed v = 36 km/h when its path crosses a magnetic field, which induces a current in the front rim. The magnetic flux through the rim rises linearly from zero to 1.0 Wb in 0.1 seconds and then decreases back to zero again in 0.1 seconds. What is the speed of the cyclist after having passed the magnetic field region if the total mass of the bicycle-rider system is 100 kg and Ohmic heating in the front rim is the only energy dissipation mechanism in the problem?
The Achilles tendon, which connects the calf muscles to the heel, is the thickest and strongest tendon in the body. How much tensile stress is required to stretch this muscle by 5.4% of its length
A football is kicked such that is has an initial velocity of 30 m/s at an angle of 60 degrees above the ground. How would you calculate its maximum height
A copper bar is moved to the right while its axis is maintained in a direction perpendicular to a magnetic field, what is the direction of the magnetic field
A copper block is removed from a 310 C oven and dropped into 1.10 kg of water at 20.5 C. What is the mass of the copper block
mary needs to row her boat across a 104-m-wide river that is flowing to the east at a speed of 2.65 ms. mary can row
The planet Neptune is 4.17×1012 from the Earth. Its diameter is 5.02×107 m. What diameter telescope objective would be necessary to just barely see Neptune as a disk rather
A lighted candle is placed 36 cm in front of a diverging lens. The light passes through the diverging lens and on to a converging lens of focal length 10 cm that is 5 cm from the diverging lens. Find the focal length of the diverging lens
A fully loaded Boeing 777 commercial airplane with a mass of 303.6 tonnes is at one end of the runway and about to take off. Calculate the length of the runway
A column of oil of height 70.0 cm supports a column of an unknown liquid. Determine the density of the unknown liquid
question a charge of -1.0 microc is located at the origin a second charge of 3.4 microc is located at x 0 y 0.1 m and
Calculate the equivalent capacitance between the points α and β in Figure P26.72. Note that this is not a simple series or parallel combination.
The drawing shows two situations in which charges are placed on the x and y axes. find the magnitude of the net electric field at the origin
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