Question

Question 36 In corrosion, variation in electrolyte such as soil will lead to corrosion in metallic structure, these variation
Question 37 2 points Save Answen A compressive load (F 100 kN) applied on the shaft as shown in Figure below. The shaft consi
Question 36 In corrosion, variation in electrolyte such as soil will lead to corrosion in metallic structure, these variations can be: (select only three) a. moisture content O b. soil density C. soil specific gravity Od. soil resistively e. soil volume f. soil mass g. oxygen concentration A Moving to another question will save this response.
Question 37 2 points Save Answen A compressive load (F 100 kN) applied on the shaft as shown in Figure below. The shaft consisits of a solid segment AB and a hollow segment BC, which are rigidly joined by coupling at B The 400 mm long and solid segment AB has a diameter of 80 mm The 600 mm long and hollow segment BC has inner diameter of 80 mm and outer diameter of 100 mm. If the modulus of elasiioty for both segment is E 200 GPa. Determine the average normal stress between A and B. (CLO-5) A 80 mm B S0 mm 100 mm 19.89 MPa 13.30 MPa 35.37 MPa 1243 MPa
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Given that Soil il In coTvosion vaniabion in elecézodyte Such an ad to Connosion in metallic chrughe these vaiations be Can H

Add a comment
Know the answer?
Add Answer to:
Question 36 In corrosion, variation in electrolyte such as soil will lead to corrosion in metallic...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Question 30 The crystallographic plan along which the dislocation line travels is call : Oa. slip...

    Question 30 The crystallographic plan along which the dislocation line travels is call : Oa. slip plan b. dislocation plan C. none of the other choices O d. dislocation line uestion 31 2 points Save Anewer A compressive load (F 100 kN) applied on the shaft as shown in Figure below. The shaft consists of a solid segment AB and a hollow segment BC, which are rigidy joined by couping at B The 400 mm long and solid segment AlB...

  • Problem 10.86 3 of 6 > M Reviev The shaft consists of a solid segment AB...

    Problem 10.86 3 of 6 > M Reviev The shaft consists of a solid segment AB and a hollow segment BC, which are rigidly joined by the coupling at B. A 80 mm 180 mm 100 mm Part A If the shaft is made from A-36 steel, determine the maximum torque T that can be applied according to the maximum shear stress theory. Use a factor of safety of 1.8 against yielding Express your answer to three significant figures and...

  • Question - 5A [15 marks] Shaft BC is hollow with inner and outer diameters of 100...

    Question - 5A [15 marks] Shaft BC is hollow with inner and outer diameters of 100 mm and 130 mm, respectively. Shafts AB and CD are solid and of diameter d. For the loading shown in Figure Q-5A, determine (a) The maximum and minimum shearing stress in shaft BC [6 marks] (b) The required diameter d of shafts AB and CD if the allowable shearing stress in these shafts is 60 MPa [5 marks] (c) Which shaft is better to...

  • 01.   Shaft BC is hollow with inner and outer diameters of 90 mm and 120 mm,...

    01.   Shaft BC is hollow with inner and outer diameters of 90 mm and 120 mm, respectively. Shafts AB and CD are solid and of diameter d. For the loading shown, determine (a) the maximum and minimum shearing stress in shaft BC, (b) the required diameter d of shafts AB and CD if the allowable shearing stress in these shafts is 65 MPa. [TA = 7.5 kNm; TB = 16 kNm; TC = 30 kNm; TD = 7 kNm] 01....

  • this is a multi-parts question. I need all A, B, C, D. Only answer if you...

    this is a multi-parts question. I need all A, B, C, D. Only answer if you know them all. Thx and Will ThumbUp! Problem 3 (10 points) The stepped shaft made of a material having a shear modulus of elasticity G = 40 GPa is fixed at A and loaded by two torques T = 60 N.m and T2= 80 N.m as shown below. The shaft BC has solid circular cross-section with diameter of 50 mm and the shaft AB...

  • 4.11. A shaft ABC is made of two segments AB and BC (Figure 4. 11). Segment...

    4.11. A shaft ABC is made of two segments AB and BC (Figure 4. 11). Segment 4B is solid with a diameter of 100 mm and BC is hollowed with an outer diameter of 75 mm and wall thickness of 5 mm. The shear modulus is 80 GPa for segment AB and 60 GPa for BC Extemal torques To=25 Nm in the counter-clockwise direction is applied at Cand 1s=10 Nm in the clockwise direction is applied at B. A counter-clockwise...

  • st QUESTION 3 A hollow shaft is subjected to a twisting moment of 200 N.m and...

    st QUESTION 3 A hollow shaft is subjected to a twisting moment of 200 N.m and a bending moment of 80 Nm. Determine the outer diameter of the shaft (mm) according to the maximum shear stress theory, if the allowable shear stress is 40 MPa ? The outer diameter of the shaft is twice the inner diameter اللتي و Click Save and Submit to save and submit. Click Save All Answers to save all answers.

  • 7.4 The tension in the cable at 80 m from the lower pier (3) [10] QUESTION...

    7.4 The tension in the cable at 80 m from the lower pier (3) [10] QUESTION 8: COMBINED BENDING AND TWISTING OF SHAFTS A hollow shaft has an outside diameter of 100 mm and a bore of 75 mm. The yield stress in shear for the material is 200 MPa. The shaft is subjected to combined twisting and bending, with the bending moment being three times the applied torque. Calculate the following: 8.1 By using a safety factor of 4,...

  • Please also explain, thank you! In the system below, the shaft is solid from A to...

    Please also explain, thank you! In the system below, the shaft is solid from A to C, hollow from C to D and is made of a material with shear modulus G = 52 GPa. The solid shaft AB has diameter di = 29 mm, the solid shaft BC has diameter d2 = 51 mm and the tubular shaft CD has outer diameter d2 and inner diameter dį. A torque TB = 1421 N. m is applied at B and...

  • Learning Goal: To calculate torsional deformation and shear stress due to an applied force in a...

    Learning Goal: To calculate torsional deformation and shear stress due to an applied force in a door handle design. A locked door handle is composed of a solid circular shaft AB with a diameter fb = 105 mm and a flat plate BC with a force P = 76 N applied at point C as shown. Let c = 543 mm, d = 125 mm, and e = 145 mm. (Treat the handle as if it were a cantilever beam.)...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT