Exam 5: Exponential-And-Logarithmic-Functions

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Select the correct graph for the given function ​ Select the correct graph for the given function ​   ​

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Solve for x: Solve for x:   .Round to 3 decimal places. .Round to 3 decimal places.

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Rewrite the logarithm as a ratio of common logarithms. ​ Rewrite the logarithm as a ratio of common logarithms. ​   ​

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The chemical acidity of a solution is measured in units of pH: The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution.If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7? , where The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution.If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7? is the hydrogen ion concentration in the solution.If a sample of rain has a pH of 3.4, how many times higher is its The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution.If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7? than pure water's, which has a pH of 7?

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Evaluate Evaluate   at the indicated value of x. ​   ​ at the indicated value of x. ​ Evaluate   at the indicated value of x. ​   ​

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Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years.The quantity of radium present after t years is Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years.The quantity of radium present after t years is   Determine the quantity present after 300 years.Round to the nearest hundredth of a gram. Determine the quantity present after 300 years.Round to the nearest hundredth of a gram.

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Write the exponential equation in logarithmic form. ​ Write the exponential equation in logarithmic form. ​   ​

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Put the expressions in the appropriate order: Put the expressions in the appropriate order:   . .

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Use the One-to-One Property to solve the equation for x. ​ Use the One-to-One Property to solve the equation for x. ​   ​

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$2500 is invested in an account at interest rate r, compounded continuously.Find the time required for the amount to double.(Approximate the result to two decimal places.) ​ $2500 is invested in an account at interest rate r, compounded continuously.Find the time required for the amount to double.(Approximate the result to two decimal places.) ​   ​

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Solve the logarithmic equation algebraically.Approximate the result to three decimal places. ​ Solve the logarithmic equation algebraically.Approximate the result to three decimal places. ​   ​

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Assume that x, y and c are positive numbers.Use the properties of logarithms to write the expression Assume that x, y and c are positive numbers.Use the properties of logarithms to write the expression   in terms of the logarithms of x and y. ​ in terms of the logarithms of x and y. ​

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Find the exponential model Find the exponential model   that fits the points shown in the graph. ​   ​ that fits the points shown in the graph. ​ Find the exponential model   that fits the points shown in the graph. ​   ​

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Write the logarithmic equation in exponential form. ​ Write the logarithmic equation in exponential form. ​   ​

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Condense the expression Condense the expression   to the logarithm of a single term. to the logarithm of a single term.

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Use the One-to-One Property to solve the equation for x. ​ Use the One-to-One Property to solve the equation for x. ​   ​

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Rewrite the exponential equation Rewrite the exponential equation   in logarithmic form. in logarithmic form.

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Use the One-to-One Property to solve the equation for x. ​ Use the One-to-One Property to solve the equation for x. ​   ​

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Solve for x.Approximate the result to three decimal places. ​ Solve for x.Approximate the result to three decimal places. ​   ​

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Write the exponential equation in logarithmic form. ​ Write the exponential equation in logarithmic form. ​   ​

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