Home
Class 12
PHYSICS
[" A mass is suspended separately by two...

[" A mass is suspended separately by two differ "],[" springs in successive order then time period "],[T_(1)" and "T_(2)" respectively.If it is connected by "b" ,"],[" spring as shown in figure then time period is "],[" the correct relation is: "],[[" (1) "T_(0)^(2)=T_(1)^(2)+T_(2)^(2)," Kigm "T-20_(0)],[" (2) "T_(0)^(-2)=T_(1)^(-2)+T_(2)^(-1)],[" (3) "T_(0)^(-1)=T_(1)^(-1)+T_(2)^(-1)],[" (4) "T_(0)=T_(1)+T_(2)]]

Promotional Banner

Similar Questions

Explore conceptually related problems

A mass is suspended separately by two different springs in successive order then time period is t_1 and t_2 respectively. If it is connected by both spring as shown in figure then time period is t_0 , the correct relation is : -

A mass is suspended separately by two different springs in successive order, then time periods is t_(1) "and" t_(2) respectively. It is connected by both springs as shown in fig. then time period is t_(0) . The correct relation is

A mass m is suspended separately by two different springs of spring constant k_(1) and k_(2) given the time period t_(1) and t_(2) respectively. If the same mass m is shown in the figure then time period t is given by the relation

When a block of mass m is suspended separately by two different springs have time period t_(1)" and "t_(2) . If same mass is connected to parallel combination of both springs, then its time period is given by :-

When a block of mass m is suspended separately by two different springs have time period t_(1)" and "t_(2) . If same mass is connected to parallel combination of both springs, then its time period is given by :-

When a block of mass m is suspended separately by two different springs have time period t_(1)" and "t_(2) . If same mass is connected to parallel combination of both springs, then its time period is given by :-

A mass is suspended separately by two springs of spring constants k_(1) and k_(2) in successive order. The time periods of oscillations in the two cases are T_(1) and T_(2) respectively. If the same mass be suspended by connecting the two springs in parallel, (as shown in figure) then the time period of oscillations is T. The correct relations is

A mass is suspended separately by two springs of spring constants k_(1) and k_(2) in successive order. The time periods of oscillations in the two cases are T_(1) and T_(2) respectively. If the same mass be suspended by connecting the two springs in parallel, (as shown in figure) then the time period of oscillations is T. The correct relations is

A body of mass m is suspended from three springs as shown in figure. If mass m is displaced slightly then time period of oscillation is