A simply supported beam of length 1 m is subjected to a uniformly distributed bending moment of 1 N m per meter throughout the length as shown in the figure. The bending moment at the mid-point of the beam is ____________ N m (rounded off to the nearest integer).} 
Step 1: Understanding the problem setup.
The beam is simply supported, and a uniformly distributed bending moment of 1 N m per meter is applied throughout the length of the beam. The question asks for the bending moment at the mid-point of the beam.
Step 2: Formula for bending moment in a simply supported beam.
In this case, the bending moment at any point along the beam is related to the distance from the left support. However, for a uniformly distributed bending moment, the bending moment is constant throughout the beam. That means the moment at the mid-point is the same as the moment at any other point along the length of the beam. \[ M(x) = M_0 \] where \( M_0 = 1 \, {N m} \) is the uniformly distributed bending moment per unit length. Since the beam is simply supported and the distributed moment does not vary, the moment at the mid-point remains \( 0 \, {N m} \) because there is no additional external moment applied at the mid-point.
Step 3: Conclusion. The bending moment at the mid-point of the beam is \( 0 \, {N m} \).
A project involves eight activities with the precedence relationship and duration as shown in the table below. The slack for the activity D ____________ hours (answer in integer).
A company uses 3000 units of a part annually. The units are priced as given in the table below. It costs rupee 150 to place an order. Carrying costs are 40 percent of the purchase price per unit on an annual basis. The minimum total annual cost is rupee ___________ (rounded off to 1 decimal place).} 