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Lära Implementing Exponential-Log Functions in Python | Section
Python Math Module Essentials: Trigonometry, Logarithms, and Constants - 1769704232288

Implementing Exponential-Log Functions in Python

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Exponential Function

Exponential functions model rapid growth or decay, commonly used in population modeling, finance, and physics. This function is of the form f(x)=aebxf(x) = ae^{bx}.

Code Breakdown

  • Generates x values between -5 and 5;
  • Defines exponential_function(x, a, b), where a scales the function, and b controls the growth rate;
  • Plots the graph with arrows at both ends to show continuous growth;
  • Marks the y-intercept at x = 0 for clarity.

Logarithmic Function

Logarithms are the inverse of exponentials, useful in scaling data and measuring natural growth processes. This function is defined as f(x)=log2(x)f(x) = \log_2(x), meaning it calculates the power to which 22 must be raised to obtain xx.

Code Breakdown

  • Generates x values between 0.1 and 10 (to avoid log(0), which is undefined);
  • Defines logarithmic_function(x, base=2), ensuring base 2 is used throughout;
  • The graph includes an arrow at the right end, indicating it continues indefinitely;
  • The x-intercept is marked at x = 1, where log_2(1) = 0.
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Which base is used in the logarithmic function in this code?

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