Surely that should be only if it's accelerating?Why is it more difficult to walk in the same direction as the bus or train (especially if it’s accelerating) than it is to walk in the opposite direction.
Surely that should be only if it's accelerating?
When I was a kid, on the top deck of a bus, I never understood why if I jumped up in the air, I would invariably land in the same place, rather than at the back of the bus. Then I found out about inertia at secondary school.
No. Not against the laws of physics. Just nowhere near possible with real world bus perfromance.would someone end up at the back/front of the bus if they jumped when it was accelerating/decelerating providing they timed it correctly.
If you jump in the air and the bus crashes into a solid wall as you are in midair, you will “fly forward” towards the front of the bus.would someone end up at the back/front of the bus if they jumped when it was accelerating/decelerating providing they timed it correctly.
Coming down or up the stairs on a bus is difficult when moving or slowing down.
If you jump in the air and the bus crashes into a solid wall as you are in midair, you will “fly forward” towards the front of the bus.
Theoretically possible, but the bus would have to have acceleration/deceleration well beyond what is currently possible.would someone end up at the back/front of the bus if they jumped when it was accelerating/decelerating providing they timed it correctly.
I'm on a tram now and a kid (probably aged about 10-12) is trying this now; his parents just told him to sit down. They missed the opportunity to explain inertia to him.When I was a kid, on the top deck of a bus, I never understood why if I jumped up in the air, I would invariably land in the same place, rather than at the back of the bus. Then I found out about inertia at secondary school.