Step 2:Use the equation {eq}a=\frac{kx}{m} {/eq} to calculate the magnitude of the spring's acceleration. {eq}a=\frac{(50)(0.25)}{1} {/eq} a=12.5 {eq}\frac{m}{s^2} {/eq} The acceleration of the spring-mass system is 12.5 meters per second squared. ...
Divide the magnitude of the external force on the object by the object's mass. For this example, imagine a force of 1,000 Newtons acting on a mass of 20 kg: 1,000 ÷ 20 = 50. This is the object's acceleration, measured in meters per second squared. Step 2 Multiply the acceleration...
Multiply the weight's mass in kilograms by 9.8, the acceleration in meters per second squared due to gravity. The result is a downward force in newtons, which accounts for most of the tension on the rope. For example, if you use a rope to suspend a piano that weighs 200 kg, multiply ...
a: acceleration (meters per second squared) Example question:If you drop a baseball off of the grand canyon, how long will it take for the baseball to travel 100 meters? In this case, acceleration is 9.8 meters per second squared, while the change in position is 100 meters. Because the ...
If the initial velocity of a car is 14.62 meters per second and its final velocity is 45.46 meters per second, what is its acceleration in meters per second squared if it takes 2.57 sec to make this change? Round your answer to two decimal places. ...
Answer to: A car travels at a speed of 25.00 meters per second. If the car keeps a constant speed for 2 hours, how much distance does it cover? By...
To calculate the area of a room, you need to know its length and width. Since you want the result in square meters, both measurements should be taken in meters. Most measuring tapes have metric measurements along one side, so just make sure you read the right side of the tape and alway...
Convert all units to standard units of measurement. Acceleration should be in meters per second squared. Velocity should be in meters per second and time should be in seconds. Resultant Velocity Multiply the acceleration by the time the object is being accelerated. For example, if an object fall...
The equation form of Newton's second law allows us to specify a unit of measurement for force. Because the standard unit of mass is the kilogram (kg) and the standard unit of acceleration is meters per second squared (m/s2), the unit for force must be a product of the two — (kg)...
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