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Solve the all parts of given question:
Question: A 12.6 µC particle with a mass of 2.80 × 105 kg moves perpendicular to a 1.02 T magnetic field in a circular path of radius 22.6 m.
Part A: How fast is the particle moving?
v=_____m/s.
Part B: How long will it take the particle to complete one orbit?
t=_______s.
I need help to find how long it will take the particle to complete one orbit.
A hot-air balloon is accelerating upward under the influence of two forces, its weight and the buoyant force. Calculate the acceleration of the rising balloon
in a hypothetical nuclear fusion reactor the fuel is deuterium gas at a temperature of about 9.8 x 108 k. if this gas
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An electromagnetic wave of intensity 180 W/m2 is incident normally on a rectangular card with sides of 20 cm and 32 cm that reflects the entire radiation incident on it. Discover the force exerted by the electromagnetic wave on the card if the radiat..
A baseball is seen to pass upward by a window 28m above the street with a vertical speed of 13 m/s. find the max height assuming the ball was thrown from the street
A 165 pF capacitor is connected in series with an unknown capacitor, and as a series combination they are connected to a battery with emf of 21.3 V. If the 165 pF capacitor stores 112 pC of charge on its plates, what is the unknown capacitance.
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A hiker's trip consists of three segments. Path A is 9km long heading 60.0° north of east. Path B is 6.0km long in a direction due east. Path C is 5.0 km long heading 315° counter clockwise from east.
A car is traveling at 53.0 mi/h on a horizontal highway. If the coefficient of static friction between road and tires on a rainy day is 0.104, what is the minimum distance in which the car will stop
A small ball is attached to one end of a spring that has an unstrained length of 0.152 m. By how much would the spring stretch if it were attached to the ceiling and the ball allowed to hang straight down, motionless
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