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  1. Block Coefficient ( c) = Example Formula. The primary formula used to calculate the displacement of a ship is based on its physical dimensions and block coefficient. The block coefficient is a dimensionless number that describes how closely the shape of a ship resembles a rectangular block.

  2. Problems with detailed solutions on displacement and distance of moving objects. Problem 1. An object moves from point A to point B to point C, then back to point B and then to point C along the line shown in the figure below. a) Find the distance covered by the moving object. b) Find the magnitude and direction of the displacement of the object.

  3. Define distance and displacement, and distinguish between the two; Solve problems involving distance and displacement

  4. In our problem, the 80 m corresponds to the distance A, and so the average speed of 4 m/s (average speed in the direction straight across the river) should be substituted into the equation to determine the time. time = (80 m)/ (4 m/s) = 20 s. It requires 20 s for the boat to travel across the river.

  5. Displacement can be calculated by measuring the final distance away from a point, and then subtracting the initial distance. Displacement is key when determining velocity (which is also a vector). Velocity = displacement/time whereas speed is distance/time.

  6. Displacement: Change in position of an object. We use the symbol Δ x ‍ for displacement, where Δ ‍ means "change." A vector quantity with units of distance ‍ . Distance: Total amount the object has moved. This depends on the whole path traveled, not just the starting and ending points. Distance traveled is always a non-negative number.

  7. Calculate the total displacement of the man. A dog runs 400 m north then turns at right angles and runs 300 m east. 8. A package on a conveyor belt in a factory moves forwards a distance of 5 m and then travels to the right 3 m. Find the displacement of the package. 9. A sailing boat travels 20 km north followed by 16 km west.