Advertisements
Advertisements
प्रश्न
Find the time period of the oscillation of mass m in figures a, b, c. What is the equivalent spring constant of the pair of springs in each case?]
उत्तर
(a) Spring constant of a parallel combination of springs is given as,
K = k1 + k2 (parallel)
Using the relation of time period for S.H.M. for the given spring-mass system, we have :
\[T = 2\pi\sqrt{\frac{m}{K}} = 2\pi\sqrt{\frac{m}{k_1 + k_2}}\]
(b) Let x be the displacement of the block of mass m, towards left.
Resultant force is calculated as,
F = F1 + F2 = (k1 + k2)x
Acceleration \[\left( a \right)\] is given by,
\[a = \left( \frac{F}{m} \right) = \frac{\left( k_1 + k_2 \right)}{m}x\]
Time period \[\left( T \right)\] is given by ,
\[T = 2\pi\sqrt{\frac{\text { displacement }}{\text { acceleration }}}\]
\[\text { On substituting the values of displacement and acceleration, we get: }\] \[T = 2\pi\sqrt{\frac{x}{x\frac{\left( k_1 + k_2 \right)}{m}}}\]
\[ = 2\pi\sqrt{\frac{m}{k_1 + k_2}}\]
Required spring constant, K = k1 + k2
(c) Let K be the equivalent spring constant of the series combination.
\[\frac{1}{K} = \frac{1}{k_1} + \frac{1}{k_2} = \frac{k_2 + k_1}{k_1 k_2}\]
\[ \Rightarrow K = \frac{k_1 k_2}{k_1 + k_2}\]
\[\text { Time period is given by, } \]
\[T = 2\pi\sqrt{\frac{m}{K}}\]
\[\text { On substituting the respective values, we get: } \] \[T = 2\pi\sqrt{\frac{m\left( k_1 + k_2 \right)}{k_1 k_2}}\]
APPEARS IN
संबंधित प्रश्न
If sound waves are reflected from surface of denser medium, there is phase change of.......
You are riding in an automobile of mass 3000 kg. Assuming that you are examining the oscillation characteristics of its suspension system. The suspension sags 15 cm when the entire automobile is placed on it. Also, the amplitude of oscillation decreases by 50% during one complete oscillation. Estimate the values of the damping constant b for the spring and shock absorber system of one wheel, assuming that each wheel supports 750 kg.
What should be tension applied to a wire of length 1 m and mass 10 gram, if it has to vibrate with fundamental frequency of 50 Hz?
Assuming expression for impedance in a parallel resonant circuit, state the conditions for parallel resonance. Define resonant frequency and obtain an expression for it.
Show that the time period (T) of oscillations of a freely suspended magnetic dipole of magnetic moment (m) in a uniform magnetic field (B) is given by `"T" = 2pi sqrt("I"/"mB")`, where I is a moment of inertia of the magnetic dipole.
Obtain the resonant frequency ωr of a series LCR circuit with L = 2.0 H, C = 32 µF and R = 10 Ω. What is the Q-value of this circuit?
With increase in frequency of an A.C. supply, the inductive reactance ______.
You are riding in an automobile of mass 3000 kg. Assuming that you are examining the oscillation characteristics of its suspension system. The suspension sags 15 cm when the entire automobile is placed on it. Also, the amplitude of oscillation decreases by 50% during one complete oscillation. Estimate the values of the spring constant k.
Resonance occurs, when?
Four pendulums A, B, C and D are suspended from the same elastic support as shown in figure. A and C are of the same length, while B is smaller than A and D is larger than A. If A is given a transverse displacement ______.
Plot a graph to show the variation of current with a frequency of the ac source, explaining the nature of its variation for two different resistances R1 and R2 (R1 < R2) at resonance.