q. pV = nRT n₁ r. sin n2 s. qV qv = = -mv² 2 ,T= ‚0c = , V =

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Author:Paul Peter Urone, Roger Hinrichs
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Chapter13: Temperature, Kinetic Theory, And The Gas Laws
Section: Chapter Questions
Problem 44PE: Nuclear fusion, the energy source at the Sun, hydrogen bombs, and fusion reactors, occurs much more...
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### Physics Formulas Practice

Ensure that you understand the following fundamental physics equations and be able to solve for the missing variables as specified.

#### q. Ideal Gas Law
\[ pV = nRT \]
Solve for temperature (\( T \)):
\[ T = \ \_\_\_\_\_\_\_\_\_\_ \]

#### r. Snell's Law for Critical Angle
\[ \sin \theta_c = \frac{n_1}{n_2} \]
Solve for the critical angle (\( \theta_c \)):
\[ \theta_c = \ \_\_\_\_\_\_\_\_\_\_ \]

#### s. Kinetic Energy
\[ qV = \frac{1}{2} mv^2 \]
Solve for velocity (\( v \)):
\[ v = \ \_\_\_\_\_\_\_\_\_\_ \]
Transcribed Image Text:### Physics Formulas Practice Ensure that you understand the following fundamental physics equations and be able to solve for the missing variables as specified. #### q. Ideal Gas Law \[ pV = nRT \] Solve for temperature (\( T \)): \[ T = \ \_\_\_\_\_\_\_\_\_\_ \] #### r. Snell's Law for Critical Angle \[ \sin \theta_c = \frac{n_1}{n_2} \] Solve for the critical angle (\( \theta_c \)): \[ \theta_c = \ \_\_\_\_\_\_\_\_\_\_ \] #### s. Kinetic Energy \[ qV = \frac{1}{2} mv^2 \] Solve for velocity (\( v \)): \[ v = \ \_\_\_\_\_\_\_\_\_\_ \]
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