In following structure, Determine the support reactions. 2 kN/m 6 m 45 B 3 m 3 m THANK YOU! :)
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- Draw FBD (Free Body Diagram) of the structure shown in the figure below. What type ofstructure is it? Justify. Find reaction at point A.For the simply supported beam carrying the concentrated load P = 268 N at its midspan, determine the magnitude of the maximum displacement (in mm) if d = 1.51 m, E = 11.77 GPa , and I =1679930mm4. NOTE: PLEASE ANSWER IT CORRECTLY. IF YOU ARE NOT SURE ABOUT THE ANSWER, PLEASE SKIP THE QUESTIONPLEASE BOX THE FINAL ANSWER(S)THANK YOU! image below for referenceanswer this ; Let ? represent the reaction force at Support B. By releasing the beam at Support B and imposing a force ? at Point B, the deflection of the beam consists of two parts,i.e. Part I- the deflection caused by ?? ; Part II- the deflection caused by ? Please treat R, w, h , L , E as variables in this step , the mathematical equation for the deflection at Point B caused by ? ( Part II) can be written as (Hint : to input equation ?2??2?ℎ , you can type (R^2*L)/(Q^2*w*h) )
- ts=600g, TL=18pounds , angle=780degree ,can you please find the solution and free body diagramCalculate the reaction at D for the structure described in Prob. 5.11.Textbook: Statics and Strengths of Materials, 6th EditionProblem: Chapter 13, Problem 13.3AURL: https://www.bartleby.com/solution-answer/shear-and-bending-moment-in-beams-6th-edition/9780133840544/b8786dd2-35c0-11e9-8385-02ee952b546e "Calculate the reactions at points A and B for the beams shown." For this problem, the answerer got:RA = 33.5 kips upwardsRB = 29.5 kips upwards I got:RA = 19.2 kips upwardsRB = 4.8 kips upwards The answer stops at:RA + 4.8 = 24RA = 19.2 kips I just don't see where the other numbers came from.
- Compute the reactions for the following structure. using E=young's modulus, I=moment of inertiaʙᴀꜱᴇᴅ ᴏɴ ᴀʀᴛɪᴄʟᴇ 3 ᴏꜰ ʀᴀ 8495, ᴡʜᴀᴛ ᴀʀᴇ ᴛʜᴇ ᴛʜɪɴɢꜱ ᴛʜᴀᴛ ʏᴏᴜ ᴄᴀɴ ᴅᴏ ᴛᴏ ʙᴇᴄᴏᴍᴇ ᴀ ʀᴇꜱᴘᴏɴꜱɪʙʟᴇ ʟɪᴄᴇɴꜱᴇᴅ ᴍᴇᴄʜᴀɴɪᴄᴀʟ ᴇɴɢɪɴᴇᴇʀ ɪɴ ᴛʜᴇ ꜰᴜᴛᴜʀᴇ?What is the reaction at A in kN? What is the reaction at B in kN? What is the reaction at C in kN? What is the reaction at D in kN?
- Construct Pourbaix diagram for aluminium; standard molar free energy of: Al3+ = - 481200 J/mol, Al2O3 = - 1608900 J/mol, AlO2- = - 839800 use 1 Molar Al3+2. Load-bearing part, as shown in Figure 2.1, find 2.1 Reaction force acting on points A and B 2.2 Then Panyasil recommends to modify the additional section as shown in Figure 2.2 to reduce the reaction force on point B can be reduced. Do students think that Panyasilp's statement is correct (Photo 2.1,2.2 L1=120mm L2=150mm)Solve for all support reactions using 3 moment equatio. (Structural analysis)