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Solve the each part of given problem:
Problem: An alpha particle (q = +2e, m = 4.00 u) travels in a circular path of radius 4.54 cm in a uniform magnetic field with B = 1.53 T.
Part A: Calculate its speed?
Part B: Calculate its period of revolution?
Part C: Calculate its kinetic energy (in eV)?
Part D: Calculate the potential difference (in V) through which it would have to be accelerated to achieve this energy?
I want help to find the potential difference (in V) through which it would have to be accelerated to achieve this energy.
find the ambulance's speed from these observations.
A cylindrical conducting shell of radius ρ=4mm and negligible thickness forms the inner conductor of coaxial line, What is the magnitude of the force (per unit length) acting to split the outer cylinder apart longitudinally
A person with mass m1 = 60 kg stands at the left end of a uniform beam with mass m2 = 107 kg and a length L = 3.5 m. What is the location of the center of mass of the system
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An ambulance is generating a siren sound at a frequency of 2,400 Hz. The velocity of sound is 345.0 m/s. find the frequency of the siren perceived by the observer
A capacitor consists of two plates which are 0.2mm apart from each other. The combined area of the two plates measures 14cm2. find the maximum electric charge on each of the plates
calculate the first five energy levels for co c12o16 molecule with bond length of 112.8.assume it rotates freely in the
The windshield of a speeding car hits a hovering insect. Consider the time interval from just before the car hits the insect to just after the impact. Which of the following are right.
question a centrifuge in a medical laboratory rotates at an angular speed of 3 600 revmin. when switched off it rotates
A closed Gaussian surface in the shape of a cube of edge length 2.50 m. It lies in a region where the nonuniform electric field is given by = (3.35x + 4.36) + 6.10 + 7.19N/C
How strong is the electric field between the plates.
The efficiency of a Carnot engine is 34.9 percent. Find what is the temperature of the hot reservoir if the temperature of the cold reservoir is 232 K
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