019 . 0169 VVV . Follow your selected design, load, and dimesons shown on the figure below. • Each member has a cross

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answerhappygod
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019 . 0169 VVV . Follow your selected design, load, and dimesons shown on the figure below. • Each member has a cross

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019 0169 Vvv Follow Your Selected Design Load And Dimesons Shown On The Figure Below Each Member Has A Cross 1
019 0169 Vvv Follow Your Selected Design Load And Dimesons Shown On The Figure Below Each Member Has A Cross 1 (15.79 KiB) Viewed 38 times
019 0169 Vvv Follow Your Selected Design Load And Dimesons Shown On The Figure Below Each Member Has A Cross 2
019 0169 Vvv Follow Your Selected Design Load And Dimesons Shown On The Figure Below Each Member Has A Cross 2 (58.21 KiB) Viewed 38 times
019 . 0169 VVV
. Follow your selected design, load, and dimesons shown on the figure below. • Each member has a cross section 1cm X Icm. • The two ends or supports will be placed on two adjacent tables approximately 60 cm apart. The loading will be applied in the middle of the gap between the two tables. • The option of having both supports as free (sliding ones) will be accepted but the team members will be responsible for any instabilities of the bridge (sliding or slipping from the platform) during the test procedure. . Please use the same dimension given in your selected design. All units are in cm. • The top surface or upper deck of the bridge must have a flat portion in the mid-span of at least 10 cm long and 12 cm width to allow for the loading platform. In addition, there should be no members that would interfere with the loading bar right at the centerline of the bridge. • Assuming the member failure load is 70 N for both tensions and compression, mention your expectation for the applied load that will make the truss to break. 10 ch 15 cm No trus members here @CL 12 cm Based on your desine dimesion Figure-1 General shape and dimensions of the bridge Figure 21: Sample of 3D design model for truss
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