Academic Integrity: tutoring, explanations, and feedback — we don’t complete graded work or submit on a student’s behalf.

You are designing a delivery ramp for crates containing exercise equipment. The

ID: 1903122 • Letter: Y

Question

You are designing a delivery ramp for crates containing exercise equipment. The crates of weight 1520N will move with speed 2.2m/s at the top of a ramp that slopes downward at an angle 25.0^circ. The ramp will exert a 642N force of kinetic friction on each crate, and the maximum force of static friction also has this value. At the bottom of the ramp, each crate will come to rest after compressing a spring a distance x. Each crate will move a total distance of 7.6m along the ramp; this distance includes x. Once stopped, a crate must not rebound back up the ramp. Calculate the maximum force constant of the spring k_max that can be used in order to meet the design criteria.

Explanation / Answer

Conserving energy,

mgdSin+0.5mv2=f.d+0.5k_max*x2 (Here v is speed initially, f is friction, d is distance moved along ramp)

1520*7.6*Sin25+0.5*1520/9.8*2.22=642*7.6+0.5k_max*x2

0.5k_max*x2=378.2J

Assuming the spring compresses by 20 cm,

k_max=18912N/m

Hire Me For All Your Tutoring Needs
Integrity-first tutoring: clear explanations, guidance, and feedback.
Drop an Email at
drjack9650@gmail.com
Chat Now And Get Quote