If a body point at is translated to Br=[ 1 4 2 1] Gr=[2-5 10 1] Find the displacement, dx, dy, and dz
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Note: in G_r= [2 -5 10 1]^T
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- 1 3 -1 -1 0 11] |-3 2 5 b 3 and C=-8 9 Given that A=2 1 0 2 5 (а) B = 1 . If C = A" B , a 2 1 7 d 12 find the values of the a, b and c. 3 5 -1] Given that B=-2 0 1 у -3 (b) Find the values of x and y if M, =10 and C, =9. %3DV4 + x lim 2 |Question 6 What is the magnitude of the moment done by the force about the "z-axis" in the following figure. Not yet answered Marked out of 15.00 P Flag question 4 m F= (60i - 30j – 20k} N 3 m 7 m 4m 6 m 2m Select one: O a. 260 [N.m] Activate O b.0 Go to Setti O c. 510 [N.m] O d. 180 [N.m]
- Given: F₁ = + < -13.6, 15.6,07 [N] 1₂= 20.1[N] 8 = 45° witch w = 1.875 m Height = 1.875m h h L 144 ( force would need to act ? Y W 1644 11. X 154 varhar is X-dorance from the origin The resultant10 / 36 110% Q22](problem 2/28: p37) (¿ãt2) Determine the resultant `R" of the two forces Shown in fiqure, and find the angle o" between R and A- 10 800 N the x-axis . 900 N 25 4" Ane R=10379 N . 0 =66-8 Q23]( problem 2/25 's p37) Exemple201-2o At What angle x must the Type here to searchdefermine the magnitude of the NY8 = 8 KN FA= resultonf anel the direction measurud from the horizontal line. [o-60] 40
- Y[NOM] a all V q x [m] Given : a = 12,1 where does the resultant force from the distributed load act along the unir(on) X -axis ?a = 1.2 m b = 1.8 m C= 4 m Force AB = 500 Newtons FAB A Find the z-component of unit vector AB. (Hint: the value should be less than 1). If the calculated answer is not whole number, express it in 4 significant figures. If the value is negative, include a negative sign. Find the Length of AC in m. Find the x-component of unit vector AC. (Hint: the value should be less than 1).The state of stress at a point in an engine piston is given in the x-y-z coordinates by: 90 180 xx ху XZ [6]=0, |180 240 0 MPa ух yy yz 120 ZX zy Using the matrix transformation law, determine the state of stress at the same point for an element rotated about the x-axis (in the y-z plane) 60° clockwise from its original position. Calculate the stress invariants and write the characteristic equation for the original state of stress, Calculate the deviatoric invariants for the original state of stress, Calculate the principal stresses and the absolute maximum shear stress at the point. What are the stress invariants and the characteristic equation for the transformed state of stress, а. b. С. d. BRE