Two cars 1 and 2 move with velocities v 1 and v 2 respectively
A swimmer capable of swimming with velocity v relative to water jumps in a flowing friver having velocity u. The man swims a distance d down stream and returns back to the priginal position. Find out the time taken in complete motion.
27
Aug
A swimmer capable of swimming with velocity v relative to water jumps in a flowing friver having velocity u. The man swims a distance d down stream and returns back to the priginal position. Find out the time taken in complete motion. car 2 starts accelerating with a 2 . If v 1 [...]
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car 2 starts accelerating with a 2 . If v 1 >v 2 . Find the minimum initial separation between the cars to avoid collision between them. ,
on a straight road in same direction. When the cars are separated by a distance d ,
the driver of car 1 applies brakes and the car moves with uniform retardation a 1 . Simultaneously ,
Two cars 1 and 2 move with velocities v 1 and v 2 respectively ,
Two cars 1 and 2 move with velocities v 1 and v 2 respectively, on a straight road in same direction. When the cars are separated by a distance d, the driver of car 1 applies brakes and the car moves with uniform retardation a 1 . Simultaneously, car 2 starts accelerating with a 2 . If v 1 >v 2 . Find the minimum initial separation between the cars to avoid collision between them.
27
Aug
Two cars 1 and 2 move with velocities v 1 and v 2 respectively, on a straight road in same direction. When the cars are separated by a distance d, the driver of car 1 applies brakes and the car moves with uniform retardation a 1 . Simultaneously, car 2 starts accelerating [...]
Tags:
car 2 starts accelerating with a 2 . If v 1 >v 2 . Find the minimum initial separation between the cars to avoid collision between them. ,
on a straight road in same direction. When the cars are separated by a distance d ,
the driver of car 1 applies brakes and the car moves with uniform retardation a 1 . Simultaneously ,
Two cars 1 and 2 move with velocities v 1 and v 2 respectively ,