The displacement of an object for a round trip between two locations is zero if the object returns to its starting point after completing the journey. This is because displacement is a vector quantity that represents the straight line distance and direction between the initial and final positions of an object, and a round trip involves equal distance covered in opposite directions.
Distance is the length of the path traveled by an object, while displacement is the distance between an object's initial and final positions, measured in a straight line. Distance is a scalar quantity, while displacement is a vector quantity that includes both magnitude and direction.
The magnitude of displacement is the shortest distance between the initial and final position. In case of a particle completing one full round around a circle the displacement is ZERO. Because the initial and final positions are one and the same
The displacement of a satellite when it completes one round along its circular path is zero. This is because the displacement is the shortest distance between the starting and ending points, and in a circular path, the starting and ending points are the same.
Yes. If you end up where you started, your displacement is zero, but the distance you travel is the actual amount of ground covered. For example, if you made a round trip of 50 miles, your displacement would be zero miles, but your distance would be 50 miles. This is because the final position and the initial position are the same. Round trips always have a displacement of zero.
Displacement is a vector quantity while distance is a scalar quantity. so in case of displacement, it depends on final position. For example:- If a man walks on a circle, then if he completes one round then his displacement will be zero because the man is at same position as start position. But, his distance travelled will not be zero; it is equal to circumference of the circle.
Displacement is distance from starting point. If the object is always travelling in the same direction then they are the same. If the object turns round, the distance would still be increasing, however the displacement would be decreasing at the same rate.
Distance is the length of the path traveled by an object, while displacement is the distance between an object's initial and final positions, measured in a straight line. Distance is a scalar quantity, while displacement is a vector quantity that includes both magnitude and direction.
The magnitude of displacement is the shortest distance between the initial and final position. In case of a particle completing one full round around a circle the displacement is ZERO. Because the initial and final positions are one and the same
The displacement of a satellite when it completes one round along its circular path is zero. This is because the displacement is the shortest distance between the starting and ending points, and in a circular path, the starting and ending points are the same.
Yes. If you end up where you started, your displacement is zero, but the distance you travel is the actual amount of ground covered. For example, if you made a round trip of 50 miles, your displacement would be zero miles, but your distance would be 50 miles. This is because the final position and the initial position are the same. Round trips always have a displacement of zero.
Friction
The displacement for a round trip is zero. Displacement is defined as the shortest distance from the initial position to the final position in a straight line, along with the direction. Since a round trip returns to the starting point, the initial and final positions are the same, resulting in zero displacement regardless of the distance traveled.
friction daw ehh
Displacement is a vector quantity while distance is a scalar quantity. so in case of displacement, it depends on final position. For example:- If a man walks on a circle, then if he completes one round then his displacement will be zero because the man is at same position as start position. But, his distance travelled will not be zero; it is equal to circumference of the circle.
How to calculate the volume for an irregular shape? Well, this is easy. First let me tell you the materials you need for this experiment.1. Displacement can2. Tripod Stand3. A Beaker4. A measuring cylinder5. A thread6. Water7. You irregular objectSteps:Place your displacement can on your tripod standPlace your beaker right below the spout of your displacement canfill the displacement can to its brimlet the water flow out of the spout into the beakerwhen it has stopped, replace your beaker with a measuring cylindertie your irregular object to your piece of thread, make sure it is tightslowly lower your irregular object into the displacement canyou will see water flowing out of the spout while you do thatafter your irregular object is at the bottom of the displacement can, read your measuring cylinder at eye levelExtraIf you see an round curve when you are reading the measurementread the lower line at eye levelYou have found the volume of your irregular object! Congratulations.
A cylinder is a long round object with flat circular ends.
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