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A bee loaded with pollen flies in a circular path at a constant speed of 3.20 m/s. If the mass of the bee is 133 mg and the radius of its path is 11.0 m, what is the magnitude of the centripetal force?
Three moles of a monoatomic ideal gas are placed in a portablecontainer with a volume of 0.0029 m3. The temperature ofthe gas is 250°C. What is the average kinetic energy per molecule
in a simple picture of the hydrogen atom the electron moves in circular orbits around the central proton attracted by
Two capacitors (C1=1.00 ?F and C2=2.00 ?F) are charged with Q1=3.00 ?C on the positive plate of capacitor 1 and Q2=3.00 ?C on the positive plate of capacitor 2, the total charge on the positive plate of capacitor 1
A sphere of radius r starts from rest and rolls without slipping along a curved surface, dropping through a vertical distance of 0.596 m. Find the final speed v of the sphere's center of mass.
A furlong is a distance of 220 yards. A fortnight is a time period of two weeks. What is his speed in furlongs per fortnight
Find out the angular velocity at the beginning of the 4.60 interval; the angular acceleration of the flywheel.
Two passenger trains A and B, each 240 mlong, pass a 40 m long railroad platform in Winnepeg. The trains are moving in opposite directions at equal speeds of 0.500cwith respect to the ground. Train A is traveling west and alltracks are perfectly stra..
a manufacturer of fasteners uses a four die nut former to produce blanks and the piercer punch began to break down
A projectile is fired at v0 = 420.0 m/s at an angle of theta = 73.2o with respect to the horizontal. Determine how far will the projectile travels in the horizontal direction
A submarine is stranded on the bottom of the ocean with its hatch 38 m below the surface. Calculate the force needed to open the hatch from the inside
A sphere of radius r starts from rest and rolls without slipping along a curved surface, Find the final speed v of the sphere's center of mass
A transverse wave on a string is described by the equation y(x, t) = (2.29 cm) sin[(107 rad/s)t + (18 rad/s)x]. How fast does the wave move along the string
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