Solve. \( F=K R \), for \( R \)
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To isolate \( R \) in the equation \( F=K R \), you need to divide both sides by \( K \). This gives you \( R = \frac{F}{K} \). Voilà! You've solved for \( R \) and can now find its value given any specific \( F \) and \( K \). Now, if you're diving into physics, consider the implications of this equation! It often represents Hooke's Law in spring mechanics. Understanding how force interacts with materials helps in everything from designing shock absorbers in cars to the engineering of buildings to withstand earthquakes.