help please drw FBD and answer thanks
Q: Find relation and plot from Pressure readings with times as shown in below table using growth-rate…
A: Time(seconds)Pressure(atm)0171025203330384040
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Q: 1.8 (A). A steel bar ABCD consists of three sections: AB is of 20 mm diameter and 200 mm long, BC is…
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Q: A hollow steel shaft (oy = 410 MPa, E = 200 GPa) as shown in Figure Q5 is subjected to a force P =…
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Q: n the figure, the cylindrical capacitor, connected to a constant voltage source Vo= 80 V, rests with…
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Q: So the free-body diagram for AB can be drawn as shown in (Figure 2). Use a similar process to…
A: So the free-body diagram for AB is drawn;
Q: 0 W→ क्र h₂ F
A: h1= 1.05 mh2=0.25 mw=0.50 mF=210Nto determine the magnitude of moment of Force about point O.
Q: Note: Use values of MW, Cp, Cv, etc., from the Tables provided below. Indicate your answers in this…
A: The moles of each molecule in terms of volume are as follows.Similarly, the mass of each gas is in…
Q: 1.10 Figure 1.24 shows a special spanner used to tighten screwed components. A torque is applied at…
A: As per policy only 3 questions can be answered so resubmit for complete solution.
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Q: Required information A rigid tank contains 7 kg of saturated vapor steam at 100°C. The steam is…
A: Given Data:Initial temperature of the saturated vapour steam, T1 = 100 C = 373 KFinal temperature of…
Q: Question 2 1. The resistance to motion R for a sphere of diameter d moving at constant velocity u…
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Q: The viscous fully developed flow in a pipeline has a parabolic velocity distribution . Determine…
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Q: 2.2 (A). If the maximum stress allowed in the copper of the cable of problem 2.1 is 60 MN/m²,…
A: Given:Area of cross-section of the cable=Maximum allowable stress=60MN/m2
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Q: 14-26. The catapulting mechanism is used to propel the 10-kg slider A to the right along the smooth…
A: ma= 10 kgF = 20 kNsB=0.2 m
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Q: example For the instant shown, member AB is rotating clockwise with an angular velocity AB = 6 rad/s…
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Q: A thin polymer plate PQR is deformed so that corner Q is displaced downward by a distance L = 0.50…
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Q: The transverse component of velocity and acceleration in curvilinear motion are r and ro Option 1 r…
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Q: Since the mass of the rod AB is m=690(kg), calculate the reaction forces that will occur on the…
A: Given data :- m = 690 kgTo determine :- Reaction forces at point A and B.
Q: What is the ºAPI if the specific gravity at 15.6 ºC is 0.928?
A: specific gravity Sg = 0.928 @ 15.6o C To determine:
Q: f W=3.000 inches, Y=1.750 inches, and Z=0.875 inch, find X. E TE X A A W 1 B + B -Z- - с
A: Given:The value of .The value of .The value of .Formula used:It is observed from the figure, the…
Q: In a three-joint robot, L1=350mm, L2=250mm and L3=50mm. If x=300mm and Z=400mm and α=30° in…
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Q: The speed of a car increases uniformly with time from 48 km/h at A to 107 km/h at B during 13…
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Q: An overhead view of a door is shown. If the compressive force F acting in the coupler arm of the…
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Q: A) Find the magnitude and line of action of force on each side of the gate of the figure below. B)…
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Q: PROBLEM 2: Part a.) Derive the appropriate equations for shear and bending moment throughout the…
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Q: Solve for slope A and displacement A
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Q: Required information NOTE: This is a multi-part question. Once an answer is submitted, you will be…
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Q: 6 m Given the frame as shown below. Determine the following: 80 N 4 m 30 N/m 6 m 2 m 50 N 100 N The…
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Q: particle moves along the s-direction with constant acceleration. The displacement, measured from a…
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Q: (a) Determine the reactions at A and E if P = 1160 N. The reactions are positive if to the right or…
A: Magnitude of the force at point B is 4780 NAnd angle made by this force from vertical is 31 degree.
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Q: (a) the normal stresses (positive if in tension and negative if in compression) in both bars (1) and…
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Q: The force F = {-6i +3j +18 k) N is applied to the block shown in (Figure 1). Figure 3 m D F B F 1.5…
A: The force,To find:The moment of the force F about the diagonal AF,
Q: 2-) mA = 10 kg, mB = 5 kg, mC = 5 kg Initially at rest. In 2 secs, Block B displaces 3 meters.…
A: given:
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- Q1. The given structure was supported by pin supports at points D and E. Member EF, DFG and BGC are connected to each other by internal hinges at B and F and a slider at G. (The slider at G allows relative horizontal motions of members BGC and DFG but constrains the vertical movement of members BGC and DFG. Calculate the support reactions due to pin supports and all internal hinge reactions. Show your calculation steps in detail and write your answers in the box below. E 1 m 3 kN/m B G 1 m F +1m--1m-|-1 m 2 mQ1: Determine the force in members EG, HG, and HJ in the given frame as shown in figure 1 using Method of Sections.Determine the nature and magnitude of forces in the members 1,2 and 3 using section method.
- FREE-BODY DIAGRAM EXERCISES 3/A In each of the five following examples, the body to be isolated is shown in the left-hand diagram, and an in- complete free-body diagram (FBD) of the isolated body is shown on the right. Add whatever forces are nec- essary in each case to form a complete free-body dia- gram. The weights of the bodies are negligible unless otherwise indicated. Dimensions and numerical values are omitted for simplicity. Body Incomplete FBD 1. Bell crank supporting mass m with pin support at A. mg m Flexible cable A Pull P P. 2. Control lever applying torque to shaft at 0. Fo 3. Boom OA, of negligible mass compared with mass m. Boom hinged at O and supported by hoisting cable at B. B m mg 4. Uniform crate of mass m leaning against smooth vertical wall and supported on a rough horizontal surface. A mg B B 5. Loaded bracket supported by pin connection at A and fixed pin in smooth slot at B. Load L Figure 3/A Page5Question-4 Find the magnitude and nature of the forces in members AC, AD, DB, CE, CF and FD by section method. A 1 kN 2 m 2 kN 2 m F 2 m H 2 m 2 m BProblem 6: The figure represents the concurrent force system acting at a joint of a bridge truss. Determine the values of P and F (in lbs) to maintain equilibrium of the forces. (Show COMPLETE solutions in all the problems. FREE BODY DIAGRAMS ARE REQUIRED FOR EVERY PROBLEM BEFORE NUMERICAL SOLUTIONS. )
- Given the forces P1 = 6 kN, P2 = 10 kN and P3 = 9 kN determine the forces in members FE, FC, BC and BF of the truss by writing the magnitude in the empty box and choosing "T" if the member is in tension or "C" if the member is in compression from the dropdown next to each answer box. 3m P. |FEF| =| |FFc| =| N |FBc| =( |FBF| =|Frames & Machines The truck shown is used to deliver food to aircraft. The elevated unit weighs 2000 Ib with center of gravity at G. 1- Derive the expression for the force in the hydraulic cylinder AB as a function of 0 (the angle that member FD makes with the horizontal). 2- Plot the force over the range 0° < 0 < 45° and discuss your observations. Note: | would suggest that you first solve the problem based on the position (angle) shown. You will need to determine the length of members FD and FB before solving the problem for arbitrary 0. Note that the location of the roller at D and hence the force reactions will change as 0 varies. 40" 17" 57" C 54" E 54" H ABQ1/ The uniform beam has a mass of 50 kg per meter of length. Compute the reactions at the support O. The force loads shown lie in a vertical plane. 1.4 kN 3 kN 4 kN-m 0.6 m A 0.6 m 30° 1.8 m 0.6 m
- Draw the FBD for bar BCD The connections at A and B are ball-and-socket joints, C is a slider bearing, and D is a thrust bearing. Assume that the weights of members are negligible and recognize that AB is a two-force member How many unknowns appear on the FBD? Solve for the unknowns.)Use the method of MEMBERS to determine the true magnitude and direction of the forces in members1 and 2 of the frame shown below in Fig 3.2.Q2/ The uniform beam has a mass of 50 kg per meter of length. Compute the reactions at the support O. The force loads shown lie in a vertical plane. 3KN.m 0.5m 0.5m B 1.6 m 2.4 m 2KN 1.5 KN