ANSWER
a) The current at P is 1.0A and it is moving towards the node.
b) A total of 1C charges flow through P in 1.0 seconds
Step-by-step explanation
a) To find this, we have to apply Kirchoff's node law which states that:
Therefore, we have that:

Solve for P:

This implies that the current at point P is 1A and it is moving towards the node (in the left direction).
b) To find the electric charge that flows through P in 1.0s, we have to use the formula for current:

where I = current, q = electric charge and t = time
Therefore, we have to find q:

Therefore, a total of 1C charges flow through P in 1.0 seconds.