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A complete lab write-up includes a Title, a Purpose, a Data section, and a Conclusion/Discussion of Results. The Data section should include the provided sheet. Centripetal Force Purpose: In this lab we will study the relationship between acceleration of an object moving with uniform circular motion and the force required to produce that acceleration. Introduction: An object moving in a circle with constant tangential speed is said to be executing uniform circular motion. 2012-03-04 · The centripetal force is related to mass, radius, rotations/sec, period of rotation as follows: Centripetal force = Fc = m ω^2 r = m (2πf)^2. r where m is the mass of the rotating body, f is the rate of rotations per sec.
Computer with DataStudio and photo gate 2. object. An object moving in a circular path is continuously being accelerated since it is continuously changing direction. This means that there is a continuous unbalanced force acting on the object that pulls it out of a straight-line path. The force that pulls an object out of a straight-line path and into a circular path is called a centripetal force.
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Mass Swinging Pass both by 10/25, end of day. Centripetal Force Lab. • Lab should be completed in the classroom by 10/28.
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Activities: Centripetal Force Lab – Student Version (PDF) Preset Unknowns: Coefficients of friction for … Join the ladybug in an exploration of rotational motion. Rotate the merry-go-round to change its angle, or choose a constant angular velocity or angular acceleration. Explore how circular motion relates to the bug's x,y position, velocity, and acceleration using vectors or graphs. centripetal acceleration (aC) - the acceleration of an object moving in a circle that is directed toward the center of the circle. centripetal force (FC) - any force that causes an object to move in a circle.
Centripetal force F C = mv2/r.Recall angular speed ω = 2π/T and linear speed, v = rω. Hence v2 = r2ω2 = r24π2/T2.
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Inside the car, it seems that you are forced away from the middle of the turn. This fictitious force is called the centrifugal force.
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Add a straight line from the dot to the center of the circle, representing the radius of rotation (the string). Now label the direction of the tangential velocity and the centripetal force. For this lab you will be looking at the force necessary to hold a hover disk in circular motion based on the speed of the disk, the radius of the circle and the mass of the disk. Click on the "BEGIN" button below to start the lab. Use the arrows to adjust the mass and radius. Generate new speeds when you want to see how speed influences tension. Circular Motion Lab Report Rohan Tandon Physics 151 Section LQ 04/07/15 Abstract In this experiment we studied centripetal force with the help of a spring and a rotating bob.