Z 5 m 8 m 8 5 m 2.5 m 2.5 m x
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hree cables are used to tether a balloon as shown in the figure. Knowing that the balloon exerts a 1000 N vertical
force, and the wind exerts a 100 N force along positive x-direction both acting at point A. With fbd.
a. Which of the following most nearly gives the force at cable
AB, in N? Answer: D. 436.35
b. Which of the following most nearly gives the force at cable
AD, in N? Answer: A. 247.67
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- In the four-rod mechanism. You have a closed polygon, where: a = length of input crank = 1 inch b = length of connecting rod = 2 inches c = length of output crank = 2 inches d = length of fixed rod = 2 inches. By varying the angle θ, the perimeter of the polygon is preserved, but not its area. Determine the angle θ where its maximum area is reached and the minimum area of the polygon.ENTER YOUR ANSWER THE WAY I SPECIFY HERE IN ADDITION TO DOING IT ON SCRATCH PAPER Copyright © McGraw-Hill Education. Permission required for reproduction or display. -3.6 m A 2400 N 2.7 m D 2.7 m F E -4.8 m a. Determine the vertical component Cy and its direction at C (use "up" or "down"); enter your answer as a whole number. b. Determine the vertical component Ay and its direction at A (use "up" or "down"); enter your answer as a whole number. Example If Cy=300.5 N in the positive direction and if Ay=200.3 N in the negative direction, enter 301up;200down in that order. B C-800- Dimensions in mm F1 600 F2 F3 900 3. -560-480- What is the x component of F1=701 N?
- 4. Determine which of the following systems has the highest magnitude of torque using cross product vector operations. Also, use the right hand rule to find the direction of the torque of each system. Use the symbol 2 for torques whose directions are towards the page and 2 for torques whose directions come out of the page. 10cms 10 c F-20n ww 10 maThe following diagram corresponds to questions 1 to 3. A beam rests on two sharp edges as shown on the image. The beam has a length of 7,50 m and a mass of 4,25 kg. Object 1 has a mass of 1,50 kg; object 2 has a mass of 2,35 kg. Point P is 0,50 m form the center of the beam. d 2 Pl CG 1. How much is the torque done by object 1 around point P? A. 55,2 N*m B. 7,36 N*m С. 62,5 N*m D. Object 1 doesn't exert a torque.How do you find the external forces' resultant and the application point?
- Write down the homogeneous transformations AT & T for the frames shown in Fig.2 Fig.2 Ŷ₁ 30⁰ ZA XA Ŷc XB & Xc 2B 2c ŶB 2The following diagram corresponds to questions 1 to 3. A beam rests on two sharp edges as shown on the image. The beam has a length of 7,50 m and a mass of 4,25 kg. Object 1 has a mass of 1,50 kg; object 2 has a mass of 2,35 kg. Point P is 0,50 m form the center of the beam. CG 1. How much is the torque done by object 1 around point P? A. 55,2 N*m B. 7,36 N*m C. 62,5 N*m D. Object 1 doesn't exert a torque. 2. How much is the torque done by the force of gravity of the beam around point P? A. 20,8 N*m N-m ך177 .B C. 156 N*m D. 313 N*m 3. If you needed to cancel the nomal forces of the two objects, where you should place object 2? The axis of rotation is point P. A. 3,30 m from point B. 9,18 m from point P C. 5,69 m from point P D. 3,62 m from point P1