1. a). A value of the acceleration of free fail g was determined by measuring the period of oscillation T of a simple pendulum of length l. The relation between g, T and l is given by: g= 4π (l /T2) In the experiment, l was measured as 0.55±0.02 m and T was measured as 1.50±0.02 s. Find the: i. Value of g ii. Uncertainty in the value of g B. (a) State newton’s second law of motion and write an equation. (b)Define the term INERTIA. (c) Define impulse and write the equation.
1. a). A value of the acceleration of free fail g was determined by measuring the period of oscillation T of a simple pendulum of length l. The relation between g, T and l is given by: g= 4π (l /T2) In the experiment, l was measured as 0.55±0.02 m and T was measured as 1.50±0.02 s. Find the: i. Value of g ii. Uncertainty in the value of g B. (a) State newton’s second law of motion and write an equation. (b)Define the term INERTIA. (c) Define impulse and write the equation.
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1. a). A value of the acceleration of free fail g was determined by measuring the period
of oscillation T of a simple pendulum of length l. The relation between g, T and
l is given by:
g= 4π (l /T2)
In the experiment, l was measured as 0.55±0.02 m and T was measured as
1.50±0.02 s. Find the:
i. Value of g
ii. Uncertainty in the value of g
B. (a) State newton’s second law of motion and write an equation.
(b)Define the term INERTIA.
(c) Define impulse and write the equation.
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