
The diagram that shows the position of a simple pendulum at equal time intervals while oscillating is
A.
B.
C.
D.
Answer
487.5k+ views
Hint: We must know the laws of oscillation of a simple pendulum. A simple pendulum consists of a mass hanging from a string of length and fixed at a pivot. When displaced to an initial angle and released, the pendulum will swing back and forth with the periodic motion.
Complete answer:
With the assumption of small angles, the frequency and time period of the pendulum are independent of the initial angular displacement amplitude. A pendulum will have the same period regardless of its initial angle.
If we pull the bob of the pendulum a little towards our right and then release it, it will be seen to come back and move on to the left (the other side) at an equal distance on the other side of the mean (initial position) and then go on repeating this back and forth motion between the two extreme positions. We call that the simple pendulum is oscillating.
The period of a pendulum does not depend on the mass of the ball, but only on the length of the string. Two pendulums with different masses but the same length will have the same period. Two pendulums with different lengths will have different periods; the pendulum with the longer string will have a longer period. From all the figures given the first figure depicts the true nature of the oscillation of a simple pendulum.
Hence option A is correct.
Note:Time period is the time taken by a pendulum bob to make one complete oscillation. We can consider the oscillation in a simple pendulum as simple harmonic motion because if we plot a graph of the displacement of the mass and the time, it shows an SHM motion curve.
Complete answer:
With the assumption of small angles, the frequency and time period of the pendulum are independent of the initial angular displacement amplitude. A pendulum will have the same period regardless of its initial angle.
If we pull the bob of the pendulum a little towards our right and then release it, it will be seen to come back and move on to the left (the other side) at an equal distance on the other side of the mean (initial position) and then go on repeating this back and forth motion between the two extreme positions. We call that the simple pendulum is oscillating.
The period of a pendulum does not depend on the mass of the ball, but only on the length of the string. Two pendulums with different masses but the same length will have the same period. Two pendulums with different lengths will have different periods; the pendulum with the longer string will have a longer period. From all the figures given the first figure depicts the true nature of the oscillation of a simple pendulum.
Hence option A is correct.
Note:Time period is the time taken by a pendulum bob to make one complete oscillation. We can consider the oscillation in a simple pendulum as simple harmonic motion because if we plot a graph of the displacement of the mass and the time, it shows an SHM motion curve.
Recently Updated Pages
Master Class 11 Business Studies: Engaging Questions & Answers for Success

Master Class 11 Computer Science: Engaging Questions & Answers for Success

Master Class 11 Maths: Engaging Questions & Answers for Success

Master Class 11 Chemistry: Engaging Questions & Answers for Success

Which cell organelles are present in white blood C class 11 biology CBSE

What is the molecular geometry of BrF4 A square planar class 11 chemistry CBSE

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Discuss the various forms of bacteria class 11 biology CBSE

Explain zero factorial class 11 maths CBSE

State the laws of reflection of light

Difference Between Prokaryotic Cells and Eukaryotic Cells

Show that total energy of a freely falling body remains class 11 physics CBSE

