Answer:
(The diagram of the question is given in Attachment 1)
The largest load which can be applied is:
P=67.62 kN
Explanation:
<h3>Make a Free body Diagram:</h3>
All the forces are shown in the diagram in Attachment 2.
<h3>Analyze the equilibrium of Joint C in Figure (a):</h3><h3 />
∑ F(y)= 0 (Upwards is positive)

<h3>Substitute F(BC) in Figure (b):</h3><h3 />
∑ F(x)= 0 (Towards Right is positive)

∑ F(y)= 0 (Upwards is positive)

<h3>
Find Cross Sectional Area:</h3>
The cross sectional area of a-a:

<h3>Find P from Normal Stress Equation:</h3>
σ = N(a-a)/A(a-a)
Substitute values:

<h3>Find P from Shear Stress Equation:</h3>
Т= V(a-a)/A(a-a)
Substitute values:

<h3>Results:</h3>
To satisfy both the condition, we have to choose the lower value of P.
P=67.62 kN