of pin A and the roller B on the beam. Find Support reactions at A and B. Only handwritten,no Chatgpt. Quick. 1500 N 800 N/m -2 m- 3 m 2m2m- B
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- Please only use knowledge from statics 1. Will upvote good solution, Thanks!Repeat Problem 11.2-3 assuming that R= 10 kN · m/rad and L = 2 m.Use the method of sections to determine the forces in members BD, CD, and CE. Note: The support reactions given below were determined in lecture last week (“Example: Method of Joints"). [Ans.: Fsp = -4 kN (comp), FCD = 2.83 kN (tension), FCE = 1 kN (tension)] Cut b Some potential (3 unk.) y section lines 1 kN Cut c (cuts a, b̟ and c): (3 unk.) Cut a (4 unk.), 2 m 2/n 2 m 2 th 2 m → F=-1 kN F = 2 kN 5 kN A, = 3 kN %3D %3D Note: The length of each member is 2 m and hence 0 = tan-1(2 m/2 m) = 45° E.
- What is static force analysis? A four bar mechanism has following dimensions: Length of crank=100 mm, Length of coupler link=450mm, length of rocker-270 mm and length of fixed link=250 mm. A force.F=-100i N is applied on to mid-point 'C' of rocker, when crank makes 120° from positive x-axis. Calculate pin forces and torque to be applied on to the crank for equilibrium. 1. A disturbing mass 'm' kg is attached to a shaft. The shaft is rotating at 'n' rpm, The radial distance of the center of gravity of the disturbing mass from the axis of rotation is 'r' mm. It is required that the disturbing mass should not be disturbed by any addition or subtraction of mass. Suggest the ways to balance the system and justify by proper expressions. 2.E T-50" 60 C Force ? Suppose rod AB is hinged to a fixed wall. Rope CDE is attached to the rod at C, 4 from the hinge. The rope passes over a pulley D. which is mounted on another fixed wall. The angle ACD is 60 degree. The other end of the rope is connected to a mechanism (not shown), which requires 50 lb. force to be actuated. How much downward hand force will be required at point B. 5' from the hinge, to actuate the mechanism? When the hand force is applied, what reaction force will be developed in hinge A? Assume the rod is weightless, rigid and amply strong and the rope is flexible and amply strong.Warm-up / Example "0" We will work through this problem together at the completion of lecture. The beam shown below is fixed at point A. Annotate the figure to make it a complete FBD. ΣFx = 0 = ΣF, = = 0 = 6 kN ΣMB = 0 = -1.5 m-1.5 m- Write out the equations of equilibrium to solve for the unknown support reactions (you do not need to solve for the unknowns). For the moment equilibrium equation, sum the moments about point B. 30° 1.5 m $30° 4 kN
- 2. The figure below show the incomplete or wrong free-body diagram. Your job is to modify the free- body diagram as needed to make it a correct free- body diagram. 1. Lawn roller of mass m being pushed up incline 8. 2. Prybar lifting body A having smooth horizontal surface. Bar rests on horizontal rough surface. 3. Uniform pole of mass m being hoisted into posi- tion by winch. Horizontal sup- porting surface notched to prevent slipping of pole. 4. Supporting angle bracket for frame; pin joints. 5. Bent rod welded to support at A and subjected to two forces and couple. 1 1 Body Notch- F Wrong or Incomplete FBD R ↑R mg mg P B 59 please answer the problems, the answer is already given i just need the solution please type your answer if you can because i can't view written answersCalculate external support reactions, forces of internal joints and draw FBD of assembly
- 3. Figure 3 shows a brake pedal assembly from a car. Under the action of an applied foot force, the pedal lever acts against the fixed pivot and transfers load to the brake cylinder via an actuation rod. The pedal lever is of hollow section, three-sided form with section dimensions as shown in the figure (Section A-A). Via consideration of the pedal lever as a free body, calculate the reactions acting at the fixed pivot and the 10 mm dia. pin. (hint-take the pin and the pivot as supports) Draw the bending moment diagram for the pedal lever and determine the maximum tensile and compressive stresses arising if a force of 1.3 kN is applied at the foot pedal as shown in Figure 3. (hint -exclude the areas of the holes) [Ans ot = 134 N/mm² oc = 215 N/mm*] i. ii. Fixed pivot 10 mm dia. pin 30 mm 5 mm 10 mm 3 mm Actuates brake throughout cylinder > 15 mm 1.3 kN Section A-A Floor pan Foot pedal force Pedal lever Figure 3 Brake pedal assembly from a car 100 200 mm mm- Please Provide Free Body Diagrams and Kinetic Diagrams.- Please state all equations in variable form first before substituting values for the variables.- Please show EVERY step of the solution, including all steps necessary to solve systems of equations.- once answered Correctly will UPVOTE!!Problem: Use method of joints (MOJ) and/or method of sections (MOS). Calculate the member force of EB. 4 m A 4 m E B 5 m F C 10 kN D 4 m