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The light boom AB is attached to the vertical wall by a ball-and-socket joint at A and supported by two cables at B. A force P = 12i − 16k kN is applied at B. Note that the reaction at A, acts along the boom because it is a two-force body. Compute the cable tensions and total reaction at A with fbd.
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- The figure shows the chain drive of a bicycle. How far will the bicycle move if the pedals are rotated through 180°? Assume the radius of the bicycle wheel is 12.7 inches. The bicycle will travel approximately (Round to the nearest tenth.) in. C -1.95 in 4.21 inENTER 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 C42 in 64 [in]- 50 in D 59 in B این دو سال است اند اما او شده از این سامانه 63 in -10 in 21 in ( Given: The plate( The shaded rectangular volume) has weighs 240 lbf. It is. suspended bycable CD, Which D is wall anchor. So, Find the magnitude of force in the cable CD such the system is in static equilibrium??. Show all works.
- Describe the Parallel-Axis Theorem for an Area?The landing gear system of a plane is made of an actuator AC and 2 rods CB and OAB. They are pin connected at O, A, B, and C. 4 The dimensions are OA-240 mm, AB-240 mm, BC-650 mm and theta-20deg. The plane drives at constant velocity on the airport runway. The weight of the plane is 25 kN. C decimal. D OA BC B AB o Find the magnitude of the force in the pin A (magnitude). Give your answer in kN with oneQ1 Figure Q1 shows a gear system. Find(i) The relationship between the number of the gear teeth N1 & N2 and the radius r1& r2(ii) The distance travelled along the surface of each gear(iii) The work done of each gear
- Hello, can you please solve for angle x and alpha (a). The solution is angle x = 17.62 degrees and angle alpha = 84.9 degrees but I don't understand how to get these values. Thank you.solve using analytical way Given a single disk system that rotates as in picture. If: m₁ = 10 kg; R₁ = 15 cm; 0, 30°, m₂ = 15 kg; R₂ = 20 cm; 0₂ = 100°, m3 = 10 kg; R3 = 10 cm; θ3= 160° dan R₂ = 12,5 cm, calculated "me" and "θe"Don't use chat gpt plz Solve correctly
- Use image below Read and Solve carefully please Write clearly and Box the Final answer(s) Express your answer to 3 Significant figures and include appropriate units. HINT : The elevator has a mass of 800 kg , the counterweight C has a mass of 200 kg, and the winding drum has a mass of 600 kg READ CAREFULLYIn the figure below, the masses of each object are: m₁ = 2.00 kg, m₂ = 2.00 kg, m³ = 3.00 kg. The labeled distances are: d₁ = 30.0 cm, d₂ = 106 cm, d3 = 60.0 cm (where d is the x distance for the center of the block). The height of each block is h₁ = 21.0, h₂ = 28.0 cm, and the h3 = 11.0 cm. Assume the center of mass for each individual object is at the center of the object. Hint: Consider the final center of mass (x,y) relative to the axes shown in the figure. Note the positions of the boxes relative to the axes and to one another. Determine the positions, x and y, of the center of mass for the system below. y Enter to 3 significant figures Center of mass (x, y): ( d1 m1 d3 d2 h1 cm m3 m2 h2 11h³ X ✔cm) Think and Prepare 1. For each of the boxes, m₁, m₂ and m3, where is the center of mass located? Carfefully, identify theMoment of Inertia about the X-axis Use three (3) decimal places, neglect small curves and fillets Fill in the blanks below x 106 mm4 Moment of Inertia about the Y-axis Use three (3) decimal places, neglect small curves and fillets Fill in the blanks below x 106 mm4 80 mm A 10 mm 60 mm 10 mm x