Question

In: Mechanical Engineering

Determine the magnitude and direction of the principal voltages for the voltage state given by ???...

Determine the magnitude and direction of the principal voltages for the voltage state given by ??? = 200, ??? = 400, ??? = −100 and ??? = ??? = ??? = 0 (all in MPa). Sketch Mohr's voltage circles in the ?? - plane and draw in the xy - plane the direction of its main voltages, coupled to the correct main voltage.

What is the greatest shear stress for this stress state?

Please explain the answer clearly and in a way easy to follow as I am still just a beginner. Thanks in advance!!

Solutions

Expert Solution

I have solved problem using concepts of normal and shear stress and Mohr circle is drawn. Each concept and step with proper reason is explained.Go through complete solution step by step and if u find it helpful then hit thumbs up and share feedback. Thanks.


Related Solutions

Magnitude and direction.
A long straight wire in the horizontal plane carries a current of 50A in north to south direction. Find the magnitude and direction of B at a point 2.5m east of the wire.
Determine the magnitude of the resultant force. Determine the coordinate direction angle α of the resultant force.
Determine the magnitude of the resultant force. Determine the coordinate direction angle α of the resultant force. Determine the coordinate direction angle β of the resultant force.Determine the coordinate direction angle γ of the resultant force.   
A vector, V, has a magnitude of 350 N and a direction of 55°.   Determine the...
A vector, V, has a magnitude of 350 N and a direction of 55°.   Determine the following: Vx = ______ Vy = ______ If Vx = 12 m and Vy = 17 m then determine the following: What is the magnitude, V, of this vector? What is the direction, θ, of this vector? A hiker walks 2.5 km at an angle of 45 degrees north of west, and then hikes 4.0 km at an angle of 30 degrees north of...
Determine the magnitude and direction of the electric field at point 1 in the figure(Figure 1).
Figure 1 Part A Determine the magnitude and direction of the electric field at point 1 in the figure(Figure 1). E1→=(2500V/m,up) E1→=(7500V/m,up) E1→=(3750V/m,down) E1→=(2500V/m,down) Part B Determine the magnitude and direction of the electric field at point 2 in the figure. E2→=(2500V/m,up) E2→=(3750V/m,down) E2→=(7500V/m,down) E2→=(5000V/m,up)
If F= 80 N, determine the magnitude and coordinate direction angles of the ouple moment. The...
If F= 80 N, determine the magnitude and coordinate direction angles of the ouple moment. The pipe assemblylies in the x-y plane.
Determine the magnitude and direction of the resultant force. Show your work. A. R = 80.3...
Determine the magnitude and direction of the resultant force. Show your work. A. R = 80.3 lb, = 106.2° B. R = 80.3 lb, = 73.8° C. R = 72.1 lb, = 63.6° D. R = 72.1 lb, = 116.4°
Magnitude and direction of the magnetic field
A proton moves perpendicular to a uniform magnetic field B at a speed of 1.30 x 10^7 m/s and experiences an acceleration of 2.40 x 10^13 m/s^2 in the positive x direction when its velocity is in the positive z direction.  Determine the magnitude and direction of the field?
What are the magnitude and direction of the electric field?
A small object of mass 3.96 g and charge -17.1 µC is suspended motionless above the ground when immersed in a uniform electric field perpendicular to the ground. What are the magnitude and direction of the electric field?What is the magnitude _________ N/CWhat is the direction (upward East West downward)
1. Magnitude & Direction of Vector Write a function m-file to find the magnitude and the...
1. Magnitude & Direction of Vector Write a function m-file to find the magnitude and the direction of cosine of vector F which expresses 3 dimension - x, y, and z. Here are requirements for the function m-file. - Parameter-list (input(s)): · 3 dimensional vector · row vector or column vector - undetermined - Return Value (outputs): · Magnitude of a given vector, |F| = √ F2 x + F2 y + F2 z · Angles(degree) from direction of cosine...
3. Electric power is transferred at very high voltages over long distances. Transmission of high voltage...
3. Electric power is transferred at very high voltages over long distances. Transmission of high voltage Explain how it reduces power loss on the lines. 4. If two points have the same potential, this test load will be taken from one point to another. Does it mean that no work will be carried out during the course? This need no force application shows that it is not? Discuss.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT