A particle moves along a straight line in such a manner that its displacement, at any instant, from a fixed point on its path is given by the equation s 1/10 (t+ 6t-4t). How far will the particle travel during the 10th second?
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A: Hello dear this is the solution of your problem The answer is found to be Displacement=33.792m
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A: answer = 46 explanation is given in below step
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- The object W1 in the figure is at an angle of 45 to the horizontal It is based on its frictionless surface at point B. Point A is articulated (fixed support) and ground friction Since (μ = 0.3) body W2 is a surface What should be the weight of W1 that will cause it to start? W2= 26 [kN]sin45=cos45=0.7The 2.4kg particle moves in the horizontal x-y plane and has the velocity shown at time t=0. If theforce F = 2+3t^2/4 N, where t is time in seconds, is applied in the particle in the y-direction beginning attime t = 0, determine the velocity of the particle 4s after F is applied and specify the corresponding anglemeasured counter clockwise from the x-axis to the direction of the velocityThe acceleration of a particle along a straight line is defined by a = (2t - 9) m/s2, where t is in seconds. At t = 0, s = 1 m and v = 10 m/s. When t = 9s, determine (a) the particle’s position, (b) the total distance traveled, and (c) the velocity
- Determine the magnitude of velocity of the ball (m/s) when t = 1.45 seconds.A cylindrical tank has a diameter of 1.4 m. and a total height of 1.8 m. It contains water to a depth 2/3 of its total height. What will be the required angular velocity (in rad/s) such that half of its content will be spilled out? A. 9.80 rad/s B. 10.40 rad/s C. 14.00 rad/s D. 8.09 rad/sFluid Mechanics question: A device used for measuring the specific weight of a liquid consists of a u-tube manometer as shown. The manometer tube has an internal diameter of 0.5 cm and originally has water in it. Exactly 2 cm3 of unknown liquid is poured into one leg of the manometer, and a displacement of 5cm is measured between the surfaces as shown. What is the specific weight of the unknown liquid?