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Prove the “parallel axis theorem”: The moment of inertia I of a body about a given axis is
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Mathematical Methods in the Physical Sciences
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- For the sphers x-12+y+22+z-42=36 and x2+y2+z2=64, find the ratio of their a surface areas. b volumes.arrow_forwardA soda can is made from 40 square inches of aluminum. Let x denote the radius of the top of the can, and let h denote the height, both in inches. a. Express the total surface area S of the can, using x and h. Note: The total surface area is the area of the top plus the area of the bottom plus the area of the cylinder. b. Using the fact that the total area is 40 square inches, express h in terms of x. c. Express the volume V of the can in terms of x.arrow_forwardSolve these prism and cylinder exercises. Where necessary, round the answers to 2 decimal places unless otherwise specified. A solid right cylinder 9.55 centimeters high contains 1910 cubic centimeters of material. Compute the cross-sectional area of the cylinder.arrow_forward
- A particle of mass m is moving under the force of attraction of another particle of mass m1 at a distance r , find the mathmatical model that describe the problemarrow_forward4. A spiral staircase in a building is in the shape of a helix of radius 5 meters. Between two floors of the building, the stairs make one full revolution and climb by 4 meters. A person carries a bag of groceries up two floors. The combined mass of the person and groceries is 70 kg and the gravitational force is 70g downward, where g is the acceleration due to gravity. Calculate the work done by the person against gravity.arrow_forwardPlease answer ALL parts (a, b, & c) completely.arrow_forward
- thank you!arrow_forwardCan This question be answered with detailed explinations to help better understand the concept.arrow_forwardA catenary cable is one which is hung between two points not in the same vertical line. As depicted in figure(right) it is subject to no loads other than its own weight. Thus, its weight acts as a uniform load per unit length along the cable w (N/m). A free-body diagram of a section AB is depicted in Fig. P6.17b, where TA and Tâ are ... the tension forces at the end. Based on horizontal and verti- cal force balances, the following differential equation model of the cable can be derived: W= ws (a) (b) 2 d²y dx² (dy` 1+ dx w %3D Calculus can be employed to solve this equation for the height of the cable y as a function of distance x: w TA y = cosh х) + yo — w w (a) Use a numerical method to calculate a value for the parameter TA given values for the parameters w = 10 and yo = 5, such that the cable has a height of y = 15 at X=200 The value of Ta is Blank 1. Express your answer in decimal with two decimal digits after the decimal point.arrow_forward
- Find an expression for a unit vector normal, no, to the surface x = (4 – cos (v)) cos (u), y = (4 – cos (v)) sin (u), z = sin (v) at the image of a point (u, v) for –x < v < a and -a < u < a. (Write your solution using the form (*,*,*). Use symbolic notation and fractions where needed.) no = Identify this surface. ellipsoid hyperboloid torus cylinderarrow_forwardA seasoned parachutist went for a skydiving trip where he performed freefall before deploying the parachute. According to Newton's Second Law of Motion, there are two forcës acting on the body of the parachutist, the forces of gravity (F,) and drag force due to air resistance (Fa) as shown in Figure 1. Fa = -cv ITM EUTM FUTM * UTM TM Fg= -mg x(t) UTM UT UTM /IM LTM UTM UTM TUIM UTM F UT GROUND Figure 1: Force acting on body of free-fall where x(t) is the position of the parachutist from the ground at given time, t is the time of fall calculated from the start of jump, m is the parachutist's mass, g is the gravitational acceleration, v is the velocity of the fall and c is the drag coefficient. The equation for the velocity and the position is given by the equations below: EUTM PUT v(t) = mg -et/m – 1) (Eq. 1.1) x(t) = x(0) – Where x(0) = 3200 m, m = 79.8 kg, g = 9.81m/s² and c = 6.6 kg/s. It was established that the critical position to deploy the parachutes is at 762 m from the ground…arrow_forwardOn a sunny day, your friend Issac was daydreaming under an apple tree. All of a sudden, an apple dropped from the tree and hit Issac's head. From there Issac had the idea that the apple was dragged down from the tree by a "force". He contemplated an equation to describe this "force": F = m*g Where F is the force exerted onto the apple (in unit N), m is the mass of the apple (in unit kg), and g is a fundamental constant of nature, Issac named it the gravitational constant. Issac was intrigued by this idea and he wanted to measure the gravitational constant. He designed a simple experiment to do this: 1. Collect 5 apples 2. Measure the mass of each of them and put them into a dataset M 3. Put each apple onto the tree branch, and let 4. Measure the force exerted on each apple F = it drop from the tree [6.9, 7.3, 9.8, 9.0, 10} = {0.7, 0.7, 0.9, 0.8, 1.0} Issac carefully prepared his dataset so that there is one-to-one correspondence between each element in M and F. (i.e., the 1st apple…arrow_forward
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