5 @ 3m 15m- H A 4 @ 4m 16m- B C D E J K L G 60 kips
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For the truss shown, determine the number of zero force members. This is my last question please answer properly thank you.


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- Please answer all parts or don't answer bcz this is my last question of monthQUESTION 6 Select the type of this mechanism below: L2 02 L3 А L1 C L4 O Crank-rocker O Triple rocker O Crank-crank O Slider-crank10. A simply supported shaft between bearings camies a steady load of 10 kN at the centre. The length of shaft between bearings is 450 mm. Neglecting the effect of stress concentration, find the minimum diameter of shaft. Given that Endurance limit = 600 MPa; surface finish factor = 0.87; size factor = 0.85; and factor of safety = 1.6. [Ans. 35 mm]
- A pump is driven by an electric motor through a open type flat belt drive.Motor pulley diameter (DS) = 300 mm, Pump pulley diameter (DL) = 600 mm. The Center distance between the pulleys=1000 mm. Find the length of the belt in inchesQuestion 1: A race car is turning (cornering) on a flat road, as shown in Figure Q1-1. The speed of the car is 300 kph and the turning radius is 260 m. Having the car parameters as below, answer questions a) and b). ● . ● ● m = 890 (kg) (57% of the weight is on the rear axle); Air density = 1.225 (kg/m3); Equivalent aerodynamic lift coefficient for front axle= -0.915 (-); Aerodynamic frontal area= 1.11 (m²); Slip angle of the front tyres= +2.4 (°); Slip angle of rear tyres= +1.2 (°); The steering angle of wheels= -1.9 (°); The efficiency of the drivetrain from the engine to the contact patch of tyres is 100%. 8=-1.9°- ---R=260 m α = +2.4° αR = +1.2° Figure Q1-1 Motion of the vehicle and the angles a) Calculate the engine power delivered to tyres to overcome the total induced drag due to lateral force.solve 4,5,6,7
- Problem 7: Non-circular cross section shaft related to torque problems are difficult to be solved using the basic theory as for circular shaft. Your role is to make use of FAE to analyze the stress in squared cross section shaft shown in Figure.5. g= 6.5(10%) N/cm? e = 0.035 deg 0.5 cm 0.5 cm 0.5 cm- 0.5 cm Figure.5: Squared cross section shaft applied to torque T as 3D model Provide justified explanation and recommendations to simplify the problem from three-dimensional (3D) to two- dimensional (2D). b. а. If the governing boundary value problem equation of such a problem can be given by: + 2g0 = 0, dy? $(x,y) at boundary is 0 dx2At A, B, C and E there is a pin and at D a short wire. Determine By When solving the question please: 1)Free-Body diagram Clearly 2)dentify the data and constraints of the problem correct units 3)Equations used to solve the problem No big text just dataPlease help. Written on paper not typed on computer or keyboard please. Need help on all questions. Please include all units, steps to the problem and information such as its direction or if it is in compression or tension. Thx.

