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Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer? for Civil Engineering (CE) 2024 is part of Civil Engineering (CE) preparation. The Question and answers have been prepared
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the Civil Engineering (CE) exam syllabus. Information about Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer? covers all topics & solutions for Civil Engineering (CE) 2024 Exam.
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Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer?, a detailed solution for Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer? has been provided alongside types of Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice Consider a square-shaped area ABCD on the ground with its centre at M as shown in the figure. Four concentrated vertical load of P = 5000 kN are applied on this area, at each corner.The vertical stress increment (in kPa, up to one decimal place) due to these loads according to the Boussinesq’s equation, at a point 5 m right below M, is______Correct answer is '191.36'. Can you explain this answer? tests, examples and also practice Civil Engineering (CE) tests.