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 one thousand dollars in the bank. Initial money management leads to no net change in the account balance so that vo 0. Unfortunately, management worsens over time so that a = -2.42 x 10² $/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 one thousand dollars in the bank. Initial money management leads to no net change in the account balance so that v. 0. Unfortunately, management
worsens over time so that a = -2.42 x 102 $/month2. Assuming a is constant, find the amount of time in months until the bank account is empty.
HINT
months
Mand Halan
Transcribed Image Text:The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person's bank account balance. The units of x would be dollars ($) 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 one thousand dollars in the bank. Initial money management leads to no net change in the account balance so that v. 0. Unfortunately, management worsens over time so that a = -2.42 x 102 $/month2. Assuming a is constant, find the amount of time in months until the bank account is empty. HINT months Mand Halan
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