PE = kx'/2 PE, Egla c. d. =hc/. Туре? Туре? a = F/m f. KE = (1/2)mv? KE e. a F m Type? Type?

College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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The assignment asks whether or not these relations are linear or non-linear, can you please inform on how I would figure out whether it is or isn't? 

The image contains a set of graphs and equations related to physics concepts, asking to identify the type of relationship.

**c. Potential Energy of a Spring (PEₛ = kx²/2)**

- **Equation:** PEₛ = kx²/2
- **Graph:** The graph is a parabolic curve showing Potential Energy (PEₛ) on the y-axis and displacement (x) on the x-axis.
- **Type:** Quadratic relationship between potential energy and displacement.

**d. Photon Energy (Eₚₕ = hc/λ)**

- **Equation:** Eₚₕ = hc/λ
- **Graph:** The graph shows Photon Energy (Eₚₕ) on the y-axis and wavelength (λ) on the x-axis.
- **Type:** Inversely proportional relationship between photon energy and wavelength.

**e. Newton's Second Law (a = F/m)**

- **Equation:** a = F/m
- **Graph:** The graph shows acceleration (a) on the y-axis and force (F) on the x-axis.
- **Type:** Linear relationship, direct proportionality between force and acceleration (constant mass).

**f. Kinetic Energy (KE = (1/2)mv²)**

- **Equation:** KE = (1/2)mv²
- **Graph:** The graph is a quadratic curve showing Kinetic Energy (KE) on the y-axis and mass (m) on the x-axis.
- **Type:** Quadratic relationship between kinetic energy and velocity (v).

The diagrams depict different physical relationships and are intended to illustrate fundamental principles in physics through graphical representation.
Transcribed Image Text:The image contains a set of graphs and equations related to physics concepts, asking to identify the type of relationship. **c. Potential Energy of a Spring (PEₛ = kx²/2)** - **Equation:** PEₛ = kx²/2 - **Graph:** The graph is a parabolic curve showing Potential Energy (PEₛ) on the y-axis and displacement (x) on the x-axis. - **Type:** Quadratic relationship between potential energy and displacement. **d. Photon Energy (Eₚₕ = hc/λ)** - **Equation:** Eₚₕ = hc/λ - **Graph:** The graph shows Photon Energy (Eₚₕ) on the y-axis and wavelength (λ) on the x-axis. - **Type:** Inversely proportional relationship between photon energy and wavelength. **e. Newton's Second Law (a = F/m)** - **Equation:** a = F/m - **Graph:** The graph shows acceleration (a) on the y-axis and force (F) on the x-axis. - **Type:** Linear relationship, direct proportionality between force and acceleration (constant mass). **f. Kinetic Energy (KE = (1/2)mv²)** - **Equation:** KE = (1/2)mv² - **Graph:** The graph is a quadratic curve showing Kinetic Energy (KE) on the y-axis and mass (m) on the x-axis. - **Type:** Quadratic relationship between kinetic energy and velocity (v). The diagrams depict different physical relationships and are intended to illustrate fundamental principles in physics through graphical representation.
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