compression Basic ratios of span/effective depth for reinforced concrete members without axial Reinforced concrete continuous beam...
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compression Basic ratios of span/effective depth for reinforced concrete members without axial Reinforced concrete continuous beam (not to scale) End span distance = A(m) Interior span distance = B(m) End span distance = A(m) The reinforced concrete continuous beam shown in the figure above has equal end spans of distance A-9m and an interior span of distance B=4m. If the concrete of the beam is judged to be highly stressed (p= 1.5%), calculate the corresponding guideline value of the beam effective depth d, based on whichever span gives the more critical effective depth condition. Provide your answer in millimetres to the nearest whole mm. compression Basic ratios of span/effective depth for reinforced concrete members without axial Reinforced concrete continuous beam (not to scale) End span distance = A(m) Interior span distance = B(m) End span distance = A(m) The reinforced concrete continuous beam shown in the figure above has equal end spans of distance A-9m and an interior span of distance B=4m. If the concrete of the beam is judged to be highly stressed (p= 1.5%), calculate the corresponding guideline value of the beam effective depth d, based on whichever span gives the more critical effective depth condition. Provide your answer in millimetres to the nearest whole mm.
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SOLUTION The effective depth of a reinforced concrete member can be calculated using the formula d M ... View the full answer
Related Book For
Business Law and the Legal Environment
ISBN: 978-1285860381
7th edition
Authors: Susan S. Samuelson, Jeffrey F. Beatty
Posted Date:
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