Calculate the electrical potential energy of the nucleus if electrons could exist in it.
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Q: Rutherford found the size of the nucleus to be about 10-15 m. This implied a huge density. What…
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Q: Needs Complete solution with 100 % accuracy don't use chat gpt or ai plz plz plz.
A: Step 1: a). Radius of the sphere r=r0A31Where,A = number of nucleonsr0 = 1.25 fm = 1.25 ×10−15 m…
Q: Rutherford found the size of the nucleus to be about 10-15 m. This implied a huge density. What…
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A: Electric potential energy of the nucleus =work done to bring the nucleus to the particular location…
Q: Rutherford found the size of the nucleus to be about 10-15 m. This implied a huge density. What…
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Q: Now you have a nucleus with 15 protons at x = 7.3 Angstroms on the x-axis. How much work would it…
A: The distance 1m is very large compared to the distances 7.3 Angstroms and 3 Angstroms. Thus, the…
Q: In a Rutherford scattering experiment, an a-particle (charge = +2e) heads directly toward a gold…
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Q: What forces hold the nucleus together? And how do those forces compare in magnitude to the…
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- A certain atom has 76 protons. Assume that the nucleus is a sphere with radius 6.63 fm and with the charge of the protons uniformly spread through the sphere. At the nucleus surface what are (a) the magnitude and (b) direction (radially inward or outward) of the electric field produced by the protons? Units (a) Number (b)Now you have a nucleus with 20 protons at x = 7.9 Angstroms on the x-axis. How much work would it take to bring in ANOTHER nucleus with 4 protons from 1 m away and place it at y = 7.0 Angstroms on the y-axis? Question 10 options: A 50.4 eV B 100.8 eV C -8.2 eV D 109.0 eVhttps://www.compadre.org/PQP/quantum-need/prob4_5.cfm *Link to HW problem
- Prove using the uncertainty principle that an electron cannot exist inside a nucleus.Why is there zero probability of finding an electron at the center of the nucleus?Assume a hypothetical atom with a nucleus that consists of two positrons (instead of two protons). Positron has a charge of +1 and the mass of an electron. Write down the hydrogen like energy of a neutral 2-positrons atom.