Radius of curvature rho of path for position of particle
A particle moving in the x-y plane has a position vector given by r = 1.31t2i + 1.43t3j, where r is in inches and t is in seconds. Calculate the radius of curvature rho of the path for the position of the particle when t = 2.3 sec.
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What is the maximum angular speed at which the particle can travel in a horizontal circle? (Conical pendulum). Appreciate if you could help solve the problem with detailed explanation and a detailed diagram.
Assume the 67% of the cars on a particular freeway are traveling faster than 70 miles per hour. A random sample of 15 cars was observed under normal driving conditions with no police car in sight. What is the probability that 8 or more of them wer
Assuming these 190 nights represent the population of all nights in this police precinct, what do you estimate the probability is that on a randomly selected night, there will be from 25 to 29 (including 25 and 29) calls to the dispatcher that res
The second subsystem consists of two components in parallel. The components in subsystem 1 are all of the same design and each has a 1/10,000 chance of failure. The parallel components each has a 3/10,000 chance for failure. What is the overall re
A particle moving in the x-y plane has a position vector given by r = 1.31t2i + 1.43t3j, where r is in inches and t is in seconds.
A repeated-measures study comparing two treatments with n = 4 participants produces MD = 2 and SS = 75 for the difference scores. What is the estimated standard error for the sample mean difference to one decimal place.
Assume no temperature change during the pumping and find the gauge pressure in the tank after 100 strokes of the piston. Whats is the volume of the air pump (ft3)?
Find the speed which makes the cost of a voyage of 2000 sea miles a minimum. Appreciate if you could give a detailed solution.
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