The intensity of the distributed load acting on the beam is w = 2.6 kN/m (Figure...
1 If the intensity of the distributed load acting on the beam is w = 3 kN/m, determine the reactions at the roller A and pin B. 3 kN/m 30° B 3 m 4 m
Question 10 If the intensity of the distributed load acting on the beam is w = 3 kN/m, determine the vertical reaction force at support B 9.05 KN 6.21 kN 3.15 KN 8.78 KN
Consider the beam shown in (Figure 1). The roller at A and the pin at B can support a load up to 4 kN and 8 kN, respectively. PartA Determine the maximum intensity of the distributed load w, measured in kN/m, so that failure of the supports does not occur Express your answer using three significant figures vec Figure 1 of 1> kN/m u, = Submit Request Answer Provide Feedback Next > 30 3 m 4 m homework answers
Problem 1.9 The beam supports the distributed load with Wmax 3.2 kN/m as shown. The reactions at the supports A and B are vertical. .5 m .5 m PartA Determine the resultant internal loadings acting on the cross section at point D Express your answers, separated by commas, to three significant figures. kN, kN, kN.m Submit Request Answer
The overhang beam is subjected to the uniform distributed load having an intensity of w = 46 kN/m (Figure 1) Part A Determine the maximum shear stress developed in the beam.
Consider the simply supported beam shown in (Figure 1). Suppose that P = 10 kN, w = 5 kN/m. Point D is located just to the left of the 10-kN concentrated load. Follow the sign convention Part A Determine the internal normal force at point C. Express your answer to three significant figures and include the appropriate units. НА ? Nc = Value Units Submit Request Answer Part B Determine the internal shear force at point C. Express your answer...
The beam is supporting a distributed load of w 840 lb/ft 60* 3ft 30 6ft Part A Determine the magnitudes of the resultant internal loadings acting on section b b through the centroid C on the beam separated by commas, to three significant figures Express your answers, Pat A Determine the magnitudes of the resultant internal loadings acting on section b-b through the centroid C on the beanks Express your answers, separated by commas, to three significant figures. να ΑΣφ...
The overhang beam is subjected to the uniform distributed load
having intensity of w = 55 kN/m. Determine shear stress developed
in the beam.
The uniform beam is supported by two rods AB and CD that have cross-sectional areas of 10 mm? and 15 mm”, respectively. (Figure 1) Part A Determine the intensity w of the distributed load so that the average normal stress in the rod AB does not exceed 360 kPa Express your answer to three significant figures and include the appropriate units. μΑ ? KN w = 2.325 m Submit Previous Answers Request Answer * Incorrect; Try Again; 3 attempts remaining...
Consider the T-beam shown in (Figure 1). Suppose that w = 15 kN/m. Part A Determine the maximum shear stress in the beam at point C. Express your answer to three significant figures and include the appropriate units. Tmax = Tmax = Value Units Figure < 1 of 1 > Submit Request Answer Provide Feedback C 3 m- --1.5 m -----1.5m-- 150 mm 150 mm 30 mm