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A charge of q1 = 6 μC is locate at (0 m, 12 m ) and a charge q2 = 15 μC is placed at ( 8 m, 0 m ). Assume that particle q3 = -5 μC is placed at the origin. What is the force on particle 3 due to particles 1 and 2? What would be the force on particle 2 due to particles 1 and 3?
Consider hydrogen atom in the ground state. Determine, in electron volts, the total energy. Decide, in electron volts, the potential energy.
Initially, the translational rms speed of a molecule of an ideal gas is 460 m/s. The pressure and volume of this gas are kept constant, find the final translational rms speed of the molecules
A rotating wheel requires 8.00 s to rotate 26.0 revolutions. evaluate the constant angular acceleration of the wheel
A 0.48-kg mass is hanging from a spring with spring constant 10 N/m. What is the resulting period of the oscillation
The plate seperation of a parallel plate capacitor is 1 cm. The potential on the negatively charged plate of the capacitor is zero. find the strength of the electric field in the capacitor
A metal rod with a diameter of 2.30 cm and length of 1.10 m has one end immersed in ice at 32oF, what is the thermal conductivity of this metal and Identify the metal
The power of a certain CD player operating at 120V rms is 20.5W. determine the maximum instantaneous power
The pendulum in the figure consists of a uniform disk with radius r = 15.0 cm and mass 420 g attached to a uniform rod with length L = 380 mm and mass 240 g. Calculate the rotational inertia of the pendulum about the pivot point
A rock climber throws a small first aid kit to another climber who is higher up the mountain. What is the vertical height between the two climbers
What is the approximate distance between the Earth and the Moon if the radius of the Earth is approximately 6x10^6m
a charge q= 8 uC is moving along the x axis with a velocity of v=4 x 10^4 m/s. a magnetic field of magnitude B=3T is along the y-axis. a) find the magnitude and direction of the net force acting on the charged particle.
Lasers can be utilized to drill or cut material. One such laser generates a series of high-intensity pulses rather than a continuous beam of light. Each pulse contains 500mJ of energy and lasts 9.0ns. The laser fires 10 such pulses per second.
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