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Homework Statement
A star-wars laser satellite, whose mass is 5000 kg, is orbiting Earth at a speed of 10.0 km/s. It launches a photon torpedo at an enemy missile which is directly in front of it. The photon torpedo contains 10^3^3 photons, each having a wavelength of 200nm. What is the speed of the weapons satellite just after the launch?
Homework Equations
Conservation Of Momentum(?)(COM)
K_m_a_x = hf - \varphi
KE = \gamma mc^2 - mc^2
p = E/c
v = f\lambda
The Attempt at a Solution
Since we have \lambda = 200nm we can then obtain f = 1.5*10^15 Hz.
However, from here on, i am lost. How do we use the number of photons and equate it into p = E/c and finally COM. And then there is also a problem of E which i am unable to find since i don't have h, K_m_a_x = hf - \varphi.
Any help will be appreciated. Thanks