Answer:
Explanation:
First of all, let's convert everything into SI units:
n = 2.4 mol (number of gas moles)
(gas pressure)
(gas volume)
R = 8.31451 J/K · mol (gas constant)
The ideal gas equation states that
Solving for T, we find the gas temperature
And now we can find the average kinetic energy of the gas:
where
k = 1.38066 × 10−23 J/K is the Boltzmann's constant
Substituting,
Explanation:
A.) If two in-phase waves arrive simultaneously at a point, their amplitudes add up.
Power is the energy transferred or "WORK DONE" in one second
Answer:s=0.68 m
Explanation:
Given
Inclination
Speed of block(u)=1.6 m/s
Coefficient of kinetic Friction
deceleration provided by friction=g\sin \theta -\mu _kg\cos \theta [/tex]
Using
Final velocity v=0
s=0.68 m