Question: c ) ( 1 0 points ) Consider solving for the equation of the elastic curve ( i . e . , function for deflected

c)(10 points) Consider solving for the equation of the elastic curve (i.e., function for
deflected shape) for the beam below by the double integration method. What boundary
conditions and/or continuity conditions would you use to find the four constants of
integration? A to B is a continuous beam element (i.e,C is not a hinge).
NOTE: you do not need to solve anything, only state the boundary and continuity
conditions. Use the coordinates x1 and x2 to formulate your expressions.(10 points) Consider solving for the equation of the elastic curve (i.e., function for deflected shape) for the beam below by the double integration method. What boundary conditions and/or continuity conditions would you use to find the four constants of integration? A to B is a continuous beam element (i.e, C is not a hinge).
NOTE: you do not need to solve anything, only state the boundary and continuity conditions. Use the coordinates x1 and x2 to formulate your expressions.
C
A
a
X1
x2
c ) ( 1 0 points ) Consider solving for the

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