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Determine the magnitude of the electrikc fuld at the surface of a load 308 nuckeun, which...
Determine the magnitude of the electric field at the surface of a lead-203 nucleus, which contains 82 protons and 121 neutrons. Assume the lead nucleus has a volume 203 times that of one proton and consider a proton to be a sphere of radius 1.20 x 1015m 4.04e20 X Your response differs from the correct answer by more than 10%. Double check your calculations, NC Need Help?Read It
Determine the magnitude of the electric field at the surface of a lead-185 nucleus, which contains 82 protons and 103 neutrons. Assume the lead nucleus has a volume 185 times that of one proton and consider a proton to be a sphere of radius 1.20 ✕ 10-15 m.
Determine the magnitude of the electric field at the surface of a lead-199 nucleus, which contains 82 protons and 117 neutrons. Assume the lead nucleus has a volume 199 times that of one proton and consider a proton to be a sphere of radius 1.20 ✕ 10-15 m. N/C
Determine the magnitude of the electric field at the surface of a lead-204 nucleus, which contains 82 protons and 122 neutrons. Assume the lead nucleus has a volume 204 times that of one proton and consider a proton to be a sphere of radius 1.20 x 10-15 m. N/C
Determine the magnitude of the electric field at the surface of a lead-212 nucleus, which contains 82 protons and 130 neutrons. Assume the lead nucleus has a volume 212 times that of one proton and consider a proton to be a sphere of radius 1.20 x 10-15 m The correct answer is not zero. N/C
The nucleus of a 125Xe atom (an isotope of the element xenon which has a total of 125 protons and neutrons) is 6.0 fm in diameter. (1fm = 1 femtometer = 1×10−15m) Xenon has 54 protons; therefore, the nucleus has total charge q=+54e. Another proton (which is not part of the Xenon nucleus) is placed a distance d = 6.0 fm from the surface of the nucleus. What is the magnitude of the electric force on that other proton? Hint:...
Can you help me please. On the surface of a neutron star, with a mass of 1.4 × 10^30 kg and a radius of 1.0 × 10^4 m, there is an electric field with a magnitude of 6 × 10^3 NC − 1 that points vertically upwards. Compare the electric force on a proton, with the gravitational force on it.
The magnetic poles of a small cyclotron produce a magnetic field with magnitude 0.85 T. The poles have a radius of 0.40 m, which is the maximum radius of the orbits of the accelerated particles. a) What is the maximum energy to which protons (q = 1.60×10 -19C, m = 1.67×10-27 kg) can be accelerated by this cyclotron? Give your answer in electron volts and in joules. b) What is the time for one revolution of a proton orbiting at...
The nuclei of large atoms, such as uranium, with 9292 protons, can be modeled as spherically symmetric spheres of charge. The radius of the uranium nucleus is approximately 7.4×10−15m7.4×10−15m . What is the electric field this nucleus produces just outside its surface? What magnitude of electric field does it produce at the distance of the electrons, which is about 1.3×10−10 mm ?
I . A particle with the same mass and load as a proton enters a region where the magnetic field has a magnitude of 4000 G. The particle moves in a circular radius trajectory of 20 cm. Determine the speed and period of the particle in the magnetic field II. A proton in a particle accelerator has a speed of 5.0 x 10^6 m / s. The proton is found with a magnetic field whose magnitude is 0.40 T and...