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For the image below:
1. Determine the centroid y
2. Determine the Moment of Intertia Ix
3. Determine moment of inertia Iy
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120 mm
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60 mm
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Solved in 2 steps with 3 images
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- 1. The built-up beam pictured on the right is subjected to an internal moment of M = 75 kNm. a) At which point(s) of the cross-section the normal stress is zero? b) Determine the maximum compressive and tensile bending stress in the beam.Determine the x, y, z components of reaction at the journal bearing C if 0 = 0°.Q2 For the beam section as shown in Fig. Q2, determine the following: a) X, the location of its centroid along x-axis b) Y, the location of its centroid along y-axis
- شكنبمسكبPlease do not rely too much on chatgpt, because its answer may be wrong. Please consider it carefully and give your own answer. You can borrow ideas from gpt, but please do not believe its answer.Very very grateful! Please do not copy other's work,i will be very very grateful!!Please do not copy other's work,i will be very very grateful!!e 10 ?What is the final reading for the below figure Prof. Eduerdo Stefanelli www.stefanell.eng.br 0 5 10 45 40 35 30 12.4 mm 11.4 mm 12.44 mm 12 mm
- Given the angle of rotation is small and the materials remain linear elastic, which statement below is incorrect for the torsional behavior of a long straight circular shaft. Radial lines does not remain straight anymore Plane section remains plane Straight member remains straight Longitudinal lines become twisted Section-shape remains unchangedPlease try to answer the question within 25-30 minutes here value of R is 48AT beam is made up of two plates and two angles as shown in the figure. Determine the moment of inertia of the T section about an axis passing through the centroid of the section and parallel to top plate. 160 mm 10 min 10 mm Angles (60 mm 60 mm to min) 160 mm 10 mm lealio mm
- a)The bore of each cylinder in a six-cylinder car engine is 45 mm and the stroke for each piston is 125 mm. calculate the cubic capacity of the engine in cubic centimetres (cm3 ); and calculate the clearance volume per cylinder for a compression ratio, r, of 8.75. b) The bore of each cylinder in a four-cylinder four-stroke internal combustion engine is 38 mm and the stroke of each piston is 165 mm. During testing, the engine runs at 180 revolutions per minute (rpm) with a pressure-volume indicator diagram showing a mean net area of 3.4 cm2 and a diagram length of 1.2 cm. The pressure scale on the indictor diagram is set to 150 kN/m2 per cm. Calculate the mean effective pressure (m.e.p) and the indicated power developed by this four-cylinder four-stroke engine.What is the worst-case distance between the bottom surface of the slot and the bottom surface of the part in the drawing below? B 4.000-4.020 1.475 O 1.030 2.950 B 4.00 O 1.450 O 1.500 1.000-1.010 .010M ABM 2.00 A(SI Units) In a tensile test, the starting gage length = 100.0 mm and the cross-sectional area = 150 mm2. During testing, the following force and gage length data are collected: (1) 17,790 N at 100.2 mm, (2) 23,040 N at 103.5 mm, (3) 27,370 N at 110.5 mm, (4) 28,910 N at 122.0 mm, (5) 27,480 N at 130.0 mm, and (6) 20,460 N at 135.1 mm. The final data point (6) occurred immediately prior to failure. Yielding occurred at a load of 19,390 N (0.2% offset value), and the maximum load (4) was 28,960 N. (a) Plot the engineering stress strain curve. Determine (b) yield strength, (c) modulus of elasticity, (d) tensile strength, and (e) percent elongation.
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