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- 600 mm 300 mm 300 mm 100 mm * 400 200 mm Figure 2. Determine i, ỹ and zEquation of the parabola in (Figure 1) is 1 - (400 – x²). dy = 80 mm. y = Figure dy 20 mm < 1 of 1 Part A Determine the moment of inertia of the area about the y axis. Express your answer to three significant figures and include the appropriate units. O μA Iy= Value Submit Request Answer Provide Feedback Units ?Equation of the parabola in (Figure 1) is (400²). dy = 67 mm. y = (400- Figure dy 20 mm 1 of 1 Part A Determine the moment of inertia of the shaded area about the x axis. Express your answer to three significant figures and include the appropriate units. I₂ = Submit μÀ Value Provide Feedback Request Answer Units ? Next >
- (Figure 1) Figure 30 mm 140 mm, 30 mm 30 mm 70 mm 30 mm 170 mm 1 of 1 Part A Determine the distance to the centroid C of the beam's cross-sectional area. Express your answer to three significant figures and include the appropriate units. X = Submit Part B Īy = Value μA Submit < Return to Request Answer Compute the moment of inertia Iy about the y' axis. Express your answer to three significant figures and include the appropriate units. Value Request Answer Units ignment Units ? Provide Feedback ?Ivana Alawi placed a 50.0 g mass at the 20 cm mark in meterstick as shown in the figure. what is the mass of the meter stick if fulcrum is placed at the 39.5 cm mark and the meter stick remains horizontal in static equilibrium? 20 39.5 60 80 100 50 g /// //// A 120.0 g B 18.0 g c 45.0 g D 135.0 g E 93.0 gThe second moment of area for the following figure is 50 Somm
- In the given figure below, a tube was supported at A and E with a ball and socket and a wire at D connected to F. Determine the following give that Force F is equal to 690.86 N. Note: Express your answer in terms of the units. Observe 3 decimal places. The error threshold is ± 2.50% Relative to the right answer. XB: 188.419mm Xc: 471.768mm Ya: 209.808mm Ze: 155.444 mm Zf: 471.096 mm 5.) Determine the x-component of the moment experienced by the system assuming that there is no wire support. 6.) Determine the y-component of the moment experienced by the system assuming that there is no wire support. 7.) Determine the z-component of the moment experienced by the system assuming that there is no wire support. 8.) Determine the Tension experienced by the wire DF.The I-section has the dimensions (in mm) shown in the figure. Calculate the second moment of area about the X-X axis when D = 248 mm and W = 136 mm. Input your answer as a value only in (centimetre) to zero decimal place. W mm 15 mm 10 mm XX D mm 15 mmIn the given figure below, a tube was supported at A and E with a ball and socket and a wire at D connected to F. Determine the following give that Force F is equal to 690.86 N. Note: Express your answer in terms of the units. Observe 3 decimal places. The error threshold is ± 2.50% Relative to the right answer. XB: 188.419mm Xc: 471.768mm Ya: 209.808mm Ze: 155.444 mm Zf: 471.096 mm 1.) Determine x-component of vector DF. 2.) Determine the y-component of Vector DF 3.) Determine the z-component of Vector DF. 4.) Determine the moment experienced by the system assuming that there is no wire support.
- SES/ 200 mm 300 mm 125 mm 125 mm 60 mm 150 mm - -- Using the figure above, calculate the following 1. Total area of the figure, mm2 2. xbar (location of the centroid along x axis ), mm 3. ybar (location of the centroid along y axis), mmIn the figure shown, what is the moment that this force exerts about point A? F = 75 N 30 deg B 8m A 60 deg |600 mm 300 mm 300 mm 100 mm 200 mm X.. Figure 2. Determine x, ỹ and z