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Assume that the energy of the two particles in the field of each other is given bywhereα and β are cosntants and r is the distance between the centres of paiticles. In stable configuration, the ratio of energy of attraction to the energy of repulsion will be____________(Answer should be an integer)Correct answer is '8'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared
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Assume that the energy of the two particles in the field of each other is given bywhereα and β are cosntants and r is the distance between the centres of paiticles. In stable configuration, the ratio of energy of attraction to the energy of repulsion will be____________(Answer should be an integer)Correct answer is '8'. Can you explain this answer?, a detailed solution for Assume that the energy of the two particles in the field of each other is given bywhereα and β are cosntants and r is the distance between the centres of paiticles. In stable configuration, the ratio of energy of attraction to the energy of repulsion will be____________(Answer should be an integer)Correct answer is '8'. Can you explain this answer? has been provided alongside types of Assume that the energy of the two particles in the field of each other is given bywhereα and β are cosntants and r is the distance between the centres of paiticles. In stable configuration, the ratio of energy of attraction to the energy of repulsion will be____________(Answer should be an integer)Correct answer is '8'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice Assume that the energy of the two particles in the field of each other is given bywhereα and β are cosntants and r is the distance between the centres of paiticles. In stable configuration, the ratio of energy of attraction to the energy of repulsion will be____________(Answer should be an integer)Correct answer is '8'. Can you explain this answer? tests, examples and also practice GATE tests.