To solve for the mass of the first car (m1) in an elastic collision problem, the relevant equations include the conservation of momentum and kinetic energy principles. The equation m1 = (-u2 * m2) / (u2 - 2v1) is derived from rearranging the momentum conservation equation. The discussion highlights the importance of correctly applying these principles to isolate m1. The solution provided by a user named whozum was confirmed to be effective. This approach clarifies how to manipulate the equations to find the desired mass in collision scenarios.
TL;DR Summary: I came across this question from a Sri Lankan A-level textbook.
Question - An ice cube with a length of 10 cm is immersed in water at 0 °C. An observer observes the ice cube from the water, and it seems to be 7.75 cm long. If the refractive index of water is 4/3, find the height of the ice cube immersed in the water.
I could not understand how the apparent height of the ice cube in the water depends on the height of the ice cube immersed in the water. Does anyone have an...
Kindly see the attached pdf. My attempt to solve it, is in it.
I'm wondering if my solution is right. My idea is this: At any point of time, the ball may be assumed to be at an incline which is at an angle of θ(kindly see both the pics in the pdf file). The value of θ will continuously change and so will the value of friction.
I'm not able to figure out, why my solution is wrong, if it is wrong .