Find the center of mass of the system shown if M1= 10 kg, and M2= 20 kg.
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- Resolve the 360-lb force into components along the cables AB and AC. Use =60 and =40.Determine the length of v-belt in meters for a shredder with two sets of blades rotating in opposite direction whose larger pulley diameter is 400 mm, diameter of the smaller pulley is 150 mm and center to center distance of the pulley shaft of 1 meter.A uniform sheet of metal 6ft square weighs 60lb. If the following weights are hung on each corner of the square in a consecutive manner: 20Ib at A, 60lb at B, 80lb at C, & 40lb at D, find the center of gravity of the system.
- 4. Given: Curb shown below Find: (1) Surface area and (2) volume 100 mm 150 mm 4 m 30° 150 mm 150 mmA 100 kN block is on a plane inclined at an angle of 30° with the horizontal. Find the parallel component of the weight of the block with the plane. .1-) Balancing masses from the axis of rotation to the distance of ei and Li mm in the rotor R and L balancing planes seen in the figurewant to balance by putting, Find the balancing masses and angular positions to be used in balancing. Tableuse the given values. Find L and R support reactions.
- Three hydraulic cylinders control the motion of the backhoe arm and bucket in the given figure. In the position shown, a 18.86-kN horizontal force is applied to the bucket at point L. Assuming the weight of the backhoe arm is negligible compared to forces acting on it, find the force acting on pin A (FA) in kN.Problem 1d: Find the resultant for this system of forces: 7 ft F₁-81 lb F₁-100 lb 3 ft 40%Find the volume of a right circular cylinder of radius a and height h if the density varies as the distance from the base. Note :- By Triple Integrals |
- Find box for the given Plane, where by =120m, d=25m, bz=25m, d2=100m, b3=80m & d3=25 m (Enter only the values in the boxes by referring the unit given in brackets. Also upload your hand written answers in the link provided) b2 dz di bị The value of X= (unit in m) The value of Y= (unit in m) The moment of inertia for sec 1 = lyyi = (unit in m) The moment of inertia for sec 2 = lyy2 = (unit in m4) The moment of inertia for sec 3 = lyya = (unit in m4) The moment of inertia of the given plate = lyy = (unit in m)The Cylinder C in the Figure shown weighs 1000lb. Draw the FBD of cylinder C & of Rod ABQ3 (a) Define the following terms:- (i) A moment (ii) A couple (b) The turnbuckle is tightened until the tension in the cable AB equals to 2.4 kN as shown in Figure Q3 (b); Determine the position vector of OA and OB in Cartesian Vector Notation. (i) (iii) Determine the vector expression for tension in cable AB in Cartesian V Notation at A. (iv) Determine the moment acting on the turnbuckle about point O in Cartesian Vector Notation. (iv) Determine the magnitude of the projection of T along the line AC.