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The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person's bank account balance. The units of X w...

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The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person's bank account balance. The units of X would be dollars ($) and velocity would give the rate at which the balance changes (in units of, for example, S/month) Acceleration would give the rate at which changes. Suppose person begins with two thousand dollars in the bank: Initial money management leads to no net change in the account balance so that v Unfortunately, management

The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person's bank account balance. The units of X would be dollars ($) and velocity would give the rate at which the balance changes (in units of, for example, S/month) Acceleration would give the rate at which changes. Suppose person begins with two thousand dollars in the bank: Initial money management leads to no net change in the account balance so that v Unfortunately, management worsens over time so that ~2.57 10' #/month? . Assuming a is constant; find the amount of time in months until the bank account is empty. HINT months



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The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person’s bank account balance. The units of x would be dollars ($), and velocity v would give the rate at which the balance changes (in units of, for example, $/month). Acceleration would give the rate at which v changes. Suppose a person begins with ten thousand dollars in the bank. Initial money management leads to no net change in the account balance so that v0 5 0. Unfortunately, management worsens over time so that $a=-2.5 \times 10^{2} \$ /$ month $^{2}$ . Assuming $a$ is constant, find the amount of time in months until the bank account is empty.


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