Determine the magnitude of the force equivalent to the forcing system as shown. Specify its location from point A on the beam
Q: a/3 a/3 a/3
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Q: Replace the loading on the frame by a single resultant force. Specify where its line of action…
A: To find resultant force and it's location from A along AB
Q: (3) The beam is subjected to an internal moment of M = 50 kN.m as shown. Determine the percentage of…
A: parallel axis theorem : The parallel axis theorem, also known as the Huygens–Steiner theorem or…
Q: Determine the horizontal and vertical components of force at pins A and D 2m 03m 1.5 m 12AN
A: Free Body Diagram ∑V =0 2T - 12 = 0 T = 6 kN
Q: Determine the maximum force P that can be applied without causing movement
A: Given weight of the box = W = 1803 lb It acts at G in above shown figure when force P is applied…
Q: a) All of these b) Location of the force + c) Magnitude of the force
A: Answer- All of these Because to determine the effect of force of moment we we will need location and…
Q: Determine the resultant of the parallel forces system acting on the beam shown and the position of…
A: Resultant of forces:R=36+8+18+12103=59kN
Q: The streetlight A is attached to the end of the horizontal boom ABO. The light, which weighs 100 N,…
A: The given figure is shown below:
Q: Determine the greatest force P that can be applied to the frame if the largest force resultant…
A: Given: The resultant force at A is 2 kN.
Q: Determine the equivalent resultant force - couple with the resultant force acting at point O for the…
A: The FBD (Free-body diagram) of the above figure can be given as,
Q: Determine the moment of the 360 N force about (a) point A, (b) point B.
A: Consider the figure,
Q: Determine the moment of the force 360 N about points A and B.
A: Given:- F=360N To find:- Moment about points A and B
Q: Find the moment of force (300 N) about points A, B, C.
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Q: Replace the loading on the frame by a single resultant force. Specify where its line of action…
A: ∑ Fy=RyRY=-400+600-90045+40035=-280N∑ FX=RX RX=90035-40045=220N
Q: Determine the moment of each of the three forces about point A.
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Q: Determine the internal forces at point D of the frame. I WILL RATE YOU.
A: Introduction- In building, framing is the fitting of parts together to provide structural stability…
Q: Q/ Replace the force system acting on the beam with an equivalent resultant force and moment at B? *…
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Q: In the given loaded beam determine the resultant force, R and its location from the point A.
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Q: Determine the resultant moment of forces about the point O? Neglect the beam thickness
A: We will take perpendicular direction of forces to calculate moment .
Q: Determine
A:
Q: Cable AC exerts on beam AB a force P directed along line AC. Knowing that P must have a 350-lb…
A: Given; Vertical component of force P,Py=350lb
Q: For the statically determinate system below, draw all three internal force diagrams (N, V, and M)…
A: It is asked to draw all the internal diagrams.
Q: Determine the moment about point O of distrubuated force system acting on the beam shown. 3 kN/m 1.5…
A: To find : Moment at point O
Q: Determine the x and y components of the force system and the magnitude of the resultant and the…
A: ###Determination of component of forces and resultant and direction ####
Q: 3. Determine the length b of the triangular load and its position a on the beam such that the…
A: Reaction =012×6×b-2×a+b=03b-2a-2b=0b=2a...........1
Q: Determine the maximum weight W of the block that can be suspended in the position shown if each…
A: Tension in the chord = 100N It has been asked in the question to determine the maximum weight W that…
Q: he bar supported by a pin at A and a cable at Bcarries a load of 260 N at C. Neglecting the weight…
A: T cosθ=100kn T=100cosθ=100cos60=10012=200kn…
Q: Determine the resultant internal shear force acting on the cross section at point C in the beam…
A: Data given D = 334 kg = 3276.54 N Asked: Determine the resultant internal shear force acting on the…
Q: 80 D E kN 8 m A C 8 m 5 m
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Q: The vertical bar is cantilevered at the floor as shown. Determine the resultant of the trapezoidal…
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Q: A cantilever beam is being loaded. Determine the moment at point o and the vertical reaction at the…
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Q: The beam is made up of four boards, and is subjected to a moment of M=200 kip in, calculate the…
A: Due to the moment top board will be in compression , we have to find out the compressive stress…
Q: Determine the resultant of the force and locate its intersection with x and y axes with respect to…
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Q: For the force system shown, determine the moment of the system about the origin.
A: Introduction- The tendency of a force to make a body to spin about a certain point or axis is…
Q: For the beam and loading shown, (a) draw the shear and bending-moment diagrams, (b) determine the…
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Q: Determine the required magnitude (kN) of force F B. Determine the direction Ɵ (degrees) of force F…
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Q: Determine the absolute maximum moment of the beam due the series of live concentrated loads.
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Q: Determine the moment of force about point O in the cases below
A: Find Moment of force about point O
Q: Determine the theoretical nominal moment capacity of the beam
A: Step: 1 Working stress method (WSM):- In this method structures will design for permissible…
Q: For the beam and loading shown, determine the maximum absolute value of bending moment
A: Find reaction at A:∑ MB=0RA7-20073.5-12400-200333=0RA=742.857kN
Q: Determine the moment of force F about point 0. F h b
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Q: The streetlight A is attached to the end of the horizontal boom ABO. The light, which weighs 100 N,…
A: The given data is shown below: Weight of light=100 NWind load=20 N
Q: 1. Cables AB and BC connect to a ring., which is held stationary as the load of P = 3 kN is applied…
A: The magnitudes of forces in member AB and BC is to be determined.
Q: Determine the height h above the base B at which the resultant of the three forces acts.
A: Given Data: Force F1=200 lb. Force F2=250 lb. Force F3=565 lb. Distance d1=39" Distance d2=39"…
Q: 1. A frame held taut by a rope connected at D and E, is pin connected at B. If 1500 N is…
A: Determine the tension on the rope and the horizontal and vertical components of forces at B. Assume…
Q: Determine the horizontal and vertical components of force at pins A and D.
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Q: Determine the moment associated with these forces.
A: Solution: Givendata, force = 80 lb perpendicular distance = 1.4"
Q: If the resultant of the loads shown passes through point B, determine the equivalent force ‐ couple…
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Q: *2-40. Determine the magnitude of the resultant force and its direction 0, measured counterclockwise…
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- HELP ASAP!!!! P: 4.5 kN , x: 10.8 m, y: 8.7 mGEOTECHNICAL ENGINEERINGFor the clay slope, on rock determine the FS. If Kh = 0.4 (seismic factor)data H = 16 m β = 30 ° Ysat = 20 kn / m3 Cu = 50 kn / m2What is horizontal component of 15 kN? a. 7.5 kN b. 8.5 kN c. 9.5 kN d. none of the above What is the vertical component of 15 kN? a. 13 kN b. 12 kN c. 11 kN d. 10 kN
- Readings on a rod held at two points and B, 75 m apart, are 2.965 m and 1.295 m, respectively. Determine the rod reading at points on line AB which are 25 m and 45 m from A. Assume that there is a uniform gradient along line AB. A rectangular scow 9.15 m wide by 15.25m long and 3.65 m high has a draft of 2.44m in sea water. Its center of gravity is 2.75m above the bottom of the scow. A) determine the initial metacentric height, b) If the scow tilts until one of the longitudinal sides is just at the point of submergence, determine the righting couple or the overturning couple.Draw the diagram of the following superelevation data. (Curves without spirals)STA of PC = 2 + 000STA of PT = 2 + 800Curves to the RTSuperelevation rate = 6%Length of spiral = 85 m
- A horizontal plate turns an oil jet. If ?1 = 30 m/s, ?2 = 25m/s, and the area of incoming jet ?1 = 0.06 m2. Determine the required force in the x-direction to hold the plate.Determine the head loss in the "smooth" pipe in meters if its friction factor is 0.014. a.12.9517 b.39.5136 c.30.4889 d.99.9358 What gage pressure p1 in kPa, is needed to provide the given flow rate? a.1692 kPa b.1121 kPa c.1328 kPa d.1725 kPa11 A cylindrical caisson having an outside diameter of 9 m floats in sea water with its axis vertical and its lower end submerged 9 m, below the water surface. If its center of gravity is on the vertical axis and is 3.6 m above the bottom. a. Determine the value of ??? b. Find the true metacentric height. c. Find the righting couple when the caisson is tipped through an angle of 8°