Draw force diagram 5m
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- The positive directions are indicated in the figure. The system is in static equilibrium. 1. For the forces applied on point B, determine the component BAx =__N 2 Determine the component BAy=__N 3 Determine the component BDx=__N 4. Determine the component BDy= __N 5. Determine the component of force BD =__N 6. For the forces applied on point D, determine the component DBx=__N 7 Determine the component DFx=__N 8 Determine the component DFy =__N 9 Determine the tension in cable DF, Tdf=__N 10. The system is in static equilibrium determine the angle =__° 11. Determine the distance d=__mSelect the correct statements regarding the equilibrium of coplanar forces. (Select 3) For forces acting in the same direction and having the same line of action, the resultant force is the arithmetic sum of the separate forces If forces applied on the object do not share the same line, then the object is not possible to reach an equilibrium state Conditions for equilibrium require that the sum of all moments from external forces is zero Conditions for equilibrium require that the sum of all external forces acting on the body is zeroThe following forces are acting on the bracket below (a free-body diagram of the bracket is shown), that is hinged at point 1 (bottom left point). The bracket is in equilibrium (not accelerating). The force at point 2 must act horizontally, but can act to the right or left. I drew the force acting at point 2 (the middle point) pushing the bracket to the right. For the given forces, did I draw the force acting on the bracket in the correct direction? F2 F1x 10 Ibf Yes No Can't be determined based on the given information
- (Figure 1) shows two of the three forces acting on an object in equilibrium. Figure L < 1 of 1 Part A Redraw the diagram, showing all three forces. Label the third force F3. Remember that the object is in equilibrium, meaning, the acceleration is zero. Equilibrium requires that the net force is zero. Draw the force vector starting at the black dot. The location, orientation, and length of the vector will be graded. You can move the vectors F₁ and F2 to construct the required vector, but be sure to return them into their initial positions before submitting the answer. 11 No elements selected F₂ Select the elements from the list and add them to the canvas setting the appropriate attributes. P Pearson F₁ QFigure Q1c shows a bracket on rollers that allow the bracket to move along a beam in the horizontal direction. A force F₁ of 2625 N acts at point A where the angle between F, and the x-axis is 100. If force F₂ acts at an angle a = 40° between F2 and the y-axis: (i) Determine the magnitude of F2 necessary to maintain bracket on horizontal equilibrium. (ii) Determine the vertical force at A acting along the y-axis. Give your answers to the nearest newton (N) to 2 decimal places. Assume coplanar forces and assume horizontal rolling is frictionless. F1 y २ Figure Q1c F2A FBD should include the isolated system and only the known forcesand moments. false O true
- Equilibrium of Concurrent Force System. The piston of a reciprocating engine exerts a force of 175 kN on the crosshead when the crank is 45° (angle B) past TDC. If the stroke of the piston is 800 mm and the length of the connecting rod is 1.80 m, find the guide force and the force in the connecting rod. Hint: 1=½ stroke; Angle o may be solved using Sine Law in AACO. K= Compressive Force in the connecting Rod E= Piston Effort 70 120 F, = Guide Force Fig. P-1 Fig. P-2 a Tools: EF cos0=0; F sin .=0. R = Ev)* + (E#): ; R 771 =- : tane = sin A sin B sin CEquilibrium of a particle: ΣF = 0 .. ΣF = 0 and Fy Find the tensions in the two cables which are supporting a load of 10 kg. h = 2.5 m, d₁ = 3.75 m, and d₂ = 3.75 m. Give numeric answers to three significant figures. e) h AC = d₁ BC= α с X W d₂ Substitute the known weight and angles a and B into your equations, then solve them simultaneously to find the tensions in cables AC and BC B -B1. Three forces act on particle A located at the origin of an x-y coordinate system. Force B acts at 140o from the positive x-axis, and force C acts at 15o from the positive x-axis. The weight acts down with a magnitude of W = 100 kN. Use the equations of equilibrium to determine the magnitudes of B and C such that particle A is in equilibrium. For problems 2-5, consider the following scenario. Equilibrium of a particle: ΣF=0 ∴ ΣFx=0 and ΣFy=0. Dimensions are: h = 2.5 ft, d1 = 4.75 ft, and d2 = 3 ft. Give numeric answers to three significant figures. The load W = 50 lb. Carefully draw a neat, labeled, free body diagram of particle C. Based on your FBD develop two equilibrium equations in terms of the symbols defined on your free body diagram. Find angles α and β. 5. Using your FBD from problem 5, substitute the known weight and angles α and β into your equations, then solve them simultaneously to find the tensions in cables AC and BC. These houses be the answers , 1. B = 117.9 kN,…
- The ratio of moment of a force about an axis to the perpendicular distance from the axis to the line of the force is called the arm of a couple. Select one: O True O False A ball which is resting on the floor, will have the reaction opposite to the self - weight. Select one: O True False A car moving on a highway without changing the speed is an example of an equilibrium condition. Select one: O True WiRFalses buiü انتقل إلى الإعدادت لتنشيطProblem Set No.5 - AutoRecovered - Compatibility Mode A Share P Comments AutoSave ff View Help O Search References Mailings Review File Home Insert Design Layout 3. The resultant of the three forces acting along the members of the truss is the force R = 200k lb. DetermineP1,P2, and P3. %3D P2 32 in. В 15 in. 15 in. 20 in. P3 + 130% 11:10 PM O G 4 ENG 4 Recovered 132 words E English (United States) 13/01/2021 Page 3 of 4 O Type here to searchPlease help. Please make sure you clearly state how you got the numbers you got and why you are using them. Also please make sure you clearly put your formulas and label your units along the numbers that you are using. In the following frame ilustration, F1s 60 N and F2 is 9 N. What is the tension in the cable AB and the reaction force vector necessary to keep the system in static equilibrium? Give the X component reaction force at C( for an x axis going left to right). Also please solve for the rest of the 3 unknowns please. Thank you