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Find the centroid (x, y) of the shape. (5 pts.) 60 mm 30 m 60 mm 160 mm 60 mm
please show all work clearly. **the deg is 45, NOT 60**
The 60 deg strain rosette is mounted on a steel plate (E = 30e6 psi, G = 11.5e6 psi). Readings obtained from each gage are shown below. Using strain transformation equations, determine Ex, Ey and Yxy. Solve for Ox, Oy and Txy. Draw the stress element with values and directions. €2 = 737e-6 £1 = 389e-6 45° 45° €3 = -290e-6
its 45 deg rosette.Not 60 degree
Problem 1: The 60 deg strain rosette is mounted on a steel plate (E = 30e6 psi, G = 11.5e6 psi). Readings obtained from each gage are shown below. Using strain transformation equations, determine Ex, Ey and Yxy. Solve for Ox, Oy and Txy. Draw the stress element with values and directions. €2 = 737e-6 £1 = 389e-6 45° 45° £3 = -290e-6
FIND XI AND FOR THE SHAPE BELOW. 16" 12 o in 3 14"
Question 3. Using the Stress Transformation Equations, find the state of stress at 30 deg, 60 deg and the Principal Stresses (o and 02) and their orientation (@pi and 0.2) and the maximum in-plane shear stress (Tmax).for the following; 20 15 MPa
Question 13 Find the volume of the cylinder. [G-GMD. 1] T 12 m 2 3 m 10 m O 108 m3 O 7211? O 907 m3 O 60 m3
FIND XI AND FOR THE SHAPE BELOW. 16" 10" 12 in 3 2" DIA. 14"
If the shape below is a shaded 2D area, find the area and the
y-coordinate of the centroid. If the shape below is a composite
volume, find the x- and y-coordinates of the centroid. Include
units. Area or x-coordinate:
y-coordinate:
10 in- 4 in 4 in 6 in 4 in
Find the Perimeter of the outer shape. 60 45°88 450
find the magnitude and orientation of the principle moment of inertia of the given shape, 60 mm 40 mm 40 mm