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Q1. A planet of mass 8 × 1024 kg is at location ‹ -4 × 10^11, 7 × 10^11, 0 › m. A star of mass 7 × 1030 kg is at location ‹ 5 × 10^11, -5 × 10^11, 0 › m. What is the force exerted on planet by the star? (It will probably be helpful to draw a diagram, including the relevant vectors.)
Q2. After being accelerated to a speed of 1.26×105 m/s, the particle enters a uniform magnetic field of strength 2.00 T and travels in a circle of radius 35.0 cm (determined by observing where it hits the screen). The results of this experiment allow one to find.
Discover new angles with respect to the x-axis
The work completed by friction on the rock when it moves from point to point at the bottom of the bowl has magnitude 0.22. Just as the rock reaches point, what is the normal force on it because of the bottom of the bowl .
Describes possible scenarios among following
Find out parametric equations for the shell's trajectory relative to the coordinate system. What is the maximum distance at which these headlights could be resolved as separate points of light on a photograph taken with a camera whose aperture has a ..
Calculate the volume charge density of the atmosphere
Two point charges = 2.10 and = -6.40 are 0.100 apart. Point is midway between them; point is 0.080 from and 0.070 from. Take the electric potential to be zero at infinity.
Write x-versus-t equations of motion
An anchor holding a boat stationary on a river forms a 65 degree angle with the river bottom. The anchor line is 40 meters long. Assume the river has a uniform depth, how deep is the river directly below boat.
What temperature change would reason a 0.20 % enhance in the volume of a quantity of water that was at first at 20 ^circ {rm C}.
Coefficient of kinetic friction between tires and road
What is the coefficient of static friction
Calculate change in kinetic energy
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