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One way to analyze the behavior of a diatomic molecule such as hydrogen chloride (HCI) is to model it as two point particles connected by

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One way to analyze the behavior of a diatomic molecule such as hydrogen chloride (HCI) is to model it as two point particles connected by a tiny spring. As shown in the following diagram, an HCI molecule takes about 3.0 x 10 10 s to go from its "unstretched" equilibrium state to its maximally "stretched" state (where the two atoms are at their greatest separation). CI H Equilibrium (Unstretched) Takes about 3 x 101's CI H Maximally Stretched Using this information, calculate the effective spring constant, k, of the bond connecting the two atoms in an HCI molecule. Give your answer using standard SI units for the spring constant rounded to a reasonable number of significant figures (assume that the time given in the problem has a precision of two significant figures). In your explanation, be sure to clearly state your assumptions and approximations and describe the logic used to arrive at your numerical value. Hint: You might find it useful to know that the ratio of the mass of a chlorine atom to the mass of a hydrogen atom is approximately equal to 35. Note: The majority of the points for the problem are for your explanation and justification of choices. As such, please be sure to provide a concise yet thorough explanation

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