Answer:
0.64 m
Explanation:
The first thing is calculate the center of mass of the system.
[tex]X_{cm}= \sum_{n=1}^{n}\frac{X_n\times M_n}{M_n}[/tex]
now multiplying every coordinate x by the mass of each object (romeo, juliet and the boat) and dividing all by the total mass  taking by reference the position of juliet.
[tex]X_{cm}=\frac{53\times0 +81\times2.7+79\times1.35}{53+81+79}[/tex]
X_cm = 1.4589 m
When the forces involved are internals, the center of mass don't change Â
After the movement the center of mass remains in the same distance from the shore, but change relative to the rear of the boat.
[tex]X_{cm}=\frac{79\times1.35+(81+53)\times2.7}{53+81+79}[/tex]
X_cm= 2.10 m
this displacement is how the boat move toward the shore.
2.10-1.46= 0.64 m