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The train's speed is 250 km/h (500 km / 2 hours).

The velocity would be 250 km/h north, considering velocity is a vector quantity that includes both speed and direction.

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1y ago

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What is the average speed of trains in 1915?

The average speed of trains in 1915 varied depending on factors such as the type of train, track conditions, and technology used. On average, steam trains in 1915 traveled at speeds ranging from 25 to 50 miles per hour.


How is it possible for two trains moving at same speeds but have different velocites?

Two trains can have different velocities even if they are moving at the same speed if they are moving in different directions. Velocity is a vector quantity that includes both the speed of an object and its direction of motion. Therefore, if two trains are moving at the same speed but in different directions, they will have different velocities.


Which describes a trains acceleration if it changes speed from 25ms to 10ms in 240s?

The acceleration of the train can be calculated using the formula: acceleration = (final velocity - initial velocity) / time. Plugging in the values: (10 m/s - 25 m/s) / 240 s = -0.0625 m/s^2. The negative sign indicates that the train is decelerating.


Why would a train have more inertia then a car if they both had the same velocity?

A train has more inertia than a car because inertia depends on mass, and trains are typically much heavier than cars. Even if both the train and car were moving at the same velocity, the train's higher mass means that it requires more force to change its speed or direction, giving it greater inertia.


What type of energy makes a train move?

Trains are typically powered by electrical energy. This energy is converted into mechanical energy to move the train along the tracks. Some trains may also be powered by diesel engines, which convert chemical energy into mechanical energy.

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