To find the initial velocity of the box when it fell out, you can use the formula: final velocity squared = initial velocity squared + 2 * acceleration * distance. Given that the final velocity is 0 m/s, acceleration is 3 m/s^2, and distance is 24 meters, you can solve for the initial velocity.
The deceleration of 3 m/s² is the result of friction and impact with the ground, causing the tackle box to slow down. The box skidding for 24 meters is the distance it traveled while decelerating. The impact of hitting the bump caused the tackle box to lose velocity and come to a stop.
The total distance traveled by the ball is 5 meters uphill + 9 meters downhill = 14 meters. The ball returns to its original position against the tree.
The total displacement of the ball is the difference between the uphill distance (5 meters) and the downhill distance (9 meters), as displacement considers the final position relative to the initial position. Therefore, the displacement of the ball is 9 meters (downhill distance) - 5 meters (uphill distance) = 4 meters.
If you traveled 100 meters in 30 seconds, then you would be traveling at 3.333... meters per second, or 200 meters per minute, or 12 kilometers per hour (7.45 miles/hour).
The formula to calculate wavelength is: wavelength = speed of sound / frequency. Plugging in the values: wavelength = 1430 m/s / 286 Hz = 5 meters. Therefore, the wavelength of the sound wave traveling through the water is 5 meters.
To convert meters per second to kilometers per hour, you multiply the speed in meters per second by 3.6. Therefore, if a car is traveling at 12 meters per second, it is traveling at 12 × 3.6 = 43.2 kilometers per hour.
That's easy, if the car is initially traveling at 25 meters per second and gradually accelerates 3 meters per second for 6 seconds then the car is traveling at 43 meters per second.
If an object is travelling 100 meters in 1400 seconds, then it is travelling (100 / 1400) or about 0.0714 meters per second.
10.2888888 is the speed in meters per second of a ship traveling at 20 knots.
The magnitude of the balls displacement is 9 meters.
The deceleration of 3 m/s² is the result of friction and impact with the ground, causing the tackle box to slow down. The box skidding for 24 meters is the distance it traveled while decelerating. The impact of hitting the bump caused the tackle box to lose velocity and come to a stop.
At 10 miles per hour, a car is traveling 16,090 meters per hour.
At 40 centimeters per second, you are traveling 24 meters per minute.
395000 meters/9000 seconds is 43.889 meters/second
The total distance traveled by the ball is 5 meters uphill + 9 meters downhill = 14 meters. The ball returns to its original position against the tree.
6.32766667 meters per second ==
20mps