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2. The time T' required for one complete oscillation of a mass m on a spring of force 111 constant k is T = 2π k a. Find
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2. The time T' required for one complete oscillation of a mass m on a spring of force 111 constant k is T = 2π k a. Find
2. The time T' required for one complete oscillation of a mass m on a spring of force 111 constant k is T = 2π k a. Find the dimensions k must have for this equation to be dimensionally correct. (3) b. Assign units for k based on the dimensional analysis. (1) c. Potential energy E for the same spring is E = kx², where x is the distance the spring being stretched from equilibrium. Find the dimension for E. (3) d. Assign units for E based on your answer on c. (1)