Answer:
1.67 m towards right
Step-by-step explanation:
Let the position of the center of mass of the canoe be at the origin
= mass of canoe = 40 kg
= position of center of mass of canoe = 0 m
= mass of person on left = 50 kg
= position of center of mass of person on left = - 1.5 m
= mass of person on right = 90 kg
= position of center of mass of person on right = 0.5 m
Position of center of mass of the system is given as

After the two people rearrange their positions, we have
= mass of canoe = 40 kg
= position of center of mass of canoe
= mass of person on left = 50 kg
= position of center of mass of person on left = - 1 m
= mass of person on right = 90 kg
= position of center of mass of person on right = 0.75 m
Position of center of mass of the system remains at the same location and is given as

Distance traveled by the canoe is given as

direction of movement : towards right.