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3. 1. a spring stretches 0.2 m when a force of 4 n is applied. what is …

Question

  1. 1. a spring stretches 0.2 m when a force of 4 n is applied. what is the spring constant? hint: use f = k x and solve for k. 4. 2. if a spring has a spring constant of 50 n/m and is compressed by 0.1 m, what is the force? hint: use f = k x. 5. 3. a spring is stretched by 0.3 m and stores 2.25 j of energy. what is the spring constant? hint: use pe = 1/2 k x² and solve for k. 6. 4. what is the potential energy stored in a spring with k = 100 n/m and x = 0.2 m? hint: use pe = 1/2 k x². 7. 5. a spring requires 10 n to stretch 0.5 m. what is the spring constant? hint: use f = k x. 8. 6. how much energy is stored in a spring with k = 30 n/m and x = 0.4 m? hint: use pe = 1/2 k * x².

Explanation:

1.

Step1: Rearrange Hooke's law formula

Given $F = kx$, we can solve for $k$ as $k=\frac{F}{x}$.

Step2: Substitute values

Substitute $F = 4N$ and $x=0.2m$ into the formula: $k=\frac{4}{0.2}$.

Step1: Apply Hooke's law

Use the formula $F = kx$.

Step2: Substitute values

Substitute $k = 50N/m$ and $x = 0.1m$ into the formula: $F=50\times0.1$.

Step1: Rearrange potential - energy formula

Given $PE=\frac{1}{2}kx^{2}$, we can solve for $k$ as $k=\frac{2PE}{x^{2}}$.

Step2: Substitute values

Substitute $PE = 2.25J$ and $x = 0.3m$ into the formula: $k=\frac{2\times2.25}{0.3^{2}}$.

Answer:

$20N/m$

2.