Q3. a. What is the reading of the figure? (show calculation) 10 cm 11 cm 10 b. Why is it impossible for a ball to be 100% efficient? Why does it not reach the drop height after in bounces? c. What will be in the place of X? d. What is the formula of least count? e. What is the acceleration due to gravity in a region where a simple pendulum having a length o 74 cm has a period of 1.90 seconds?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Q3. a. What is the reading of the figure? (show calculation)
10 cm
11 cm
10
b. Why is it impossible for a ball to be 100% efficient? Why does it not reach the drop height
after in bounces?
c. What will be in the place of X?
mg
d. What is the formula of least count?
e. What is the acceleration due to gravity in a region where a simple pendulum having a length of
74 cm has a period of 1.90 seconds?
Transcribed Image Text:Q3. a. What is the reading of the figure? (show calculation) 10 cm 11 cm 10 b. Why is it impossible for a ball to be 100% efficient? Why does it not reach the drop height after in bounces? c. What will be in the place of X? mg d. What is the formula of least count? e. What is the acceleration due to gravity in a region where a simple pendulum having a length of 74 cm has a period of 1.90 seconds?
Q2. Draw the graph of the following table. (T² vs l)
Table 1. Length Dependence of the Period
Length
A Single Period
Tavg
Tavg2
(m)
(sec)
(sec)
(sec2)
0.40
1.65
1.70
1.62
0.45
1.90
1.88
1.95
0.50
2.01
2.10
2.15
0.55
2.45
2.50
2.40
0.60
2.60
2.65
2.55
Transcribed Image Text:Q2. Draw the graph of the following table. (T² vs l) Table 1. Length Dependence of the Period Length A Single Period Tavg Tavg2 (m) (sec) (sec) (sec2) 0.40 1.65 1.70 1.62 0.45 1.90 1.88 1.95 0.50 2.01 2.10 2.15 0.55 2.45 2.50 2.40 0.60 2.60 2.65 2.55
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