Find the moment of inertia about the x and y axis for the region shown below. y 500 50 -60 400 500 50 80 340 80 -
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Q: Find the moment of inertia about the x and y axis for the region shown below. 500- 50 -60 500 400 50…
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- Compute the value of the following using 3 decimal places: - Moment of Inertia about the X-axis - Moment of Inertia about the Y-axis - Product of Inertia, Ixy - Maximum Moment of Inertia - Minimum Moment of Inertia - Angle of the Principal Axes40 - A cylindrical tank with a diameter of 15 cm and a height of 40 cm was filled with water to a height of 25 cm. If the tank is rotated around the vertical axis of symmetry at a constant speed of 20 rad/s, what will be the difference in water height between the edge and the middle of the tank? a) 15cm B) 11.5cm NS) 9.5cm D) 5.4cm TO) 7.2cmA nozzle discharges 255lit/sec with a velocity of 35m/s. The entire jet strikes a vane moving in the same direction as the jet with a velocity of 20m/s. Compute the Force exerted on the vane Group of answer choices 3166.86 6381.68 3611.68 3866.86
- For the shown cross-sectional area, calculate Ix and Ixy. Note: calculate the moment of inertia with the given axis, not the centroid axis.Determine the smallest moment of inertia I required for the beam shown so that its maximum deflection does not exceed the limit of 1/360 of the span length (L/360). Let E=200 GPa. A. 6355 (10^6) mm^4 B. 6552 (10^6) mm^4 C. 5625 (10^6) mm^4 D. 5256 (10^6) mm^41. A steel tape with a coefficient of linear expansion of 0.0000115/degree Celsius is known to be 50 m long at 30 degree Celsius. The tape was used to measure a line which was found to be 1255.45 m long when the temperature wwas 18 degree Celsius. Determine the correct length of the line.a. 1255.28b. 1255.62c. 1245.55d. 1252.32
- Calculate the moment of inertia of around the x-axis a=20mm b=30mm c=30mm d=42mm e=23mm f=10mmcalculate the centroid and moment of inertiaA jet having a diameter of 50mm and a velocity of 15m/s is deflected 60degree by a curved vane. Determine the horizontal component of force if the vane is moving at 5m/s at the same direction as that of jet. Group of answer choices 17.89 78.91 98.17 89.71
- Hello, thank you for the help. Could you please tell me why you divided the velocity by 1000 in the image? I understand the velocity^2/2 but I do not understand where the 1000 comes from.calculate the moment of inertia alon x axisCalculate the moments of inertia of the area in question 2 about the X-X and Y-Y centroidal axes.