Mass and center of mass Let S be a surface that represents a thin shell with density ρ. The moments about the coordinate planes (see Section 13.6) are
66. The constant-density hemispherical shall
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- A simple pendulum is formed of a rope of length L = 2.2 m and a bob of mass m. %3D When the pendulum makes an angle e 10° with the vertical, the speed of the %3D bob is 2 m/s. The angular speed, e', at the lowest position is equal to: (g = 10 m/s^2)arrow_forwardThe position as a function of time (x(t), y(t)) of a projectile fired with a speed of vo at an angle a is given by x(t) = v₁cosα t y(t) = vo sina.t- 1 2812 Ꮎ 1 where g = 9.81 m/s². The polar coordinates of the projectile at time t are (r(t), 0(t)), where r(t) = √x(t)²+y(t)² and tane = y(1) Consider the case where vo x(t) and 0 = 70°. Determine r(t) and 0(t) for t = 1, 6, 11, 31s. = 162 m/sarrow_forward2. The position of an object moving along the z-axis is described by *(t) = 21²-t +4, where the position, z, is in m and the time, t, is in s. Find: a. the average velocity between t = 1 8 and ty= 3 s. b. the velocity at t = 2 s. b. the acceleration at t = 4 s.arrow_forward
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- In matlab We have two vectors containing the weight and height of a group of people. The vector H contains the measurement data of height (in meters) H=[1.92 1.58 1.69 2.10 1.96 1.81 1.59 1.91 1.61 1.71 1.68 1.54 1.93 2.14 1.83 1.71 1.82 1.88 1.74 1.65 1.59 1.60 1.66 1.78 1.81] the vector V contains the measurements of weight in kilograms V= [116.4 52.7 67.2 51.8 100.8 102 94.3 68.6 92.9 46.3 82.1 89.3 66.6 77.6 137.7 83.8 72.2 77.7 96.9 44.6 57.4 86.6 72.8 58.1 66.7] Use the controllstructures (loops and condition tests), do not use mean() or std() in Matlab. create a script to find the following. a) what is the average height b) what is the standard deviation of the height c) find the BMI (body mass index) for all the subjects, it's going to be a vector with values for all the subjects. d) how many have a normal weight BMI (under 18.5 and over 25)arrow_forwardA simple pendulum of length L, has a maximum angular displacement e_max. At one point in its motion, its kinetic energy is K = 3 J and its potential energy is U = 4.2 J. When the pendulum's angular velocity is one-fourth its maximum value (0' = %3D O'_max/4), then its kinetic energy is:arrow_forwardThis is a Computer Graphics Question on Phong's Lighting Model. Question: A light source with intensity 50 and radius of influence 100 is located at (4,2,93) from which you are called to calculate the illumination of a point on the yz plane. For no shiny surface and negligible ambient light, find the point on the surface with the highest illumination and light intensity at that point. Given the diffuse coefficient is 0.7.arrow_forward
- The two blocks of Figure 6.17 are attached to each other by a massless string that is wrapped around a frictionless pulley. When the bottom 4.00-kg block is pulled to the left by the constant force P, the top 2.00-kg block slides across it to the right. Find the magnitude of the force necessary to move the blocks at constant speed. Assume that the coefficient of kinetic friction between all surfaces is 0.400.arrow_forwardGiven a circle C with radius 10 and center coordinates (1, 4). Apply the translation with distance 5 towards X axis and 1 towards Y axis. Obtain the new coordinates of C without changing its radius. (1,4) (4,1) (0,0) (4,5) (5,6) (6,7) (6,5) (-1,-4) (-4,-5) Other:arrow_forwardThe flight of a model rocket can be modeled as follows. During the first 0.15 s the rocket is propelled upward by the rocket engine with a force of 16 N. The rocket then flies up while slowing down under the force of gravity. After it reaches the apex, the rocket starts to fall back down. When its downward velocity reaches 20 m/s, a parachute opens (assumed to open instantly), and the rocket continues to drop at a constant speed of 20 m/s until it hits the ground. Write a program that calculates and plots the speed and altitude of the rocket as a function of time during the flight. SOLVE WITH MATLAB PLEASEarrow_forward
- C++ for Engineers and ScientistsComputer ScienceISBN:9781133187844Author:Bronson, Gary J.Publisher:Course Technology Ptr