Final answer:
The work done by the force F₁ is 73.35 J.
Step-by-step explanation:
The work done by a force is given by the equation:
W = F * d * cos(theta)
where W is the work done, F is the magnitude of the force, d is the displacement, and theta is the angle between the force and the displacement.
In this case, the force is given by F₁ = (2y)i + (3x)j. When the particle moves from the origin to a point 5 meters to the right on the x-axis, the displacement is 5 meters in the x direction and 0 meters in the y direction. The angle between the force and the displacement is 0 degrees because the force is purely in the x direction.
Substituting the values into the equation, we get:
W = (2 * 0)i + (3 * 5)j = 15j = 15 * 4.89 = 73.35 J
Therefore, the work done by the force F₁ is 73.35 J.