π An exponential growth function has base b>1, whereas an exponential decay function has base 0<b<1.
Growth uses b > 1, whereas decay uses 0 < b < 1.
β Must-know
π Formula β Exponential growth can be modeled by , where A(t) is the amount after t time periods, a is the initial amount, and r is the percent increase per period.
π Formula β Exponential decay with an initial amount a and a decay rate r can be modeled by .
Further detail
π Formula β A $50 million investment earning 5% annual interest is modeled, in millions of dollars, by .
A constant percent change each period causes multiplication by a constant factor.
For , the domain is all real numbers, the range is all positive real numbers, the y-intercept is (0,1), the asymptote is y=0, and as x approaches negative infinity f(x) approaches 0 while as x approaches positive infinity f(x) approaches infinity.
The graph of a basic exponential function has a horizontal asymptote at y=0 and never reaches zero.
π For a positive base, exponential growth increases as x increases, whereas exponential decay decreases as x increases.
A curve approaches a horizontal floor or ceiling without touching it.
β Must-know
π Formula β A transformed exponential function can be written as , where a controls vertical reflection and stretch or compression, h controls horizontal translation, and k controls vertical translation.
Further detail
To transform the graph of into , apply the vertical effect from a, translate horizontally by h units, and translate vertically by k units.
The function is obtained from by reflecting across the x-axis, stretching vertically by a factor of 2, translating 4 units right, and translating 3 units up.
Scale or reflect, shift horizontally, then shift vertically.
β Must-know
Further detail
One piece controls one interval, while another piece controls the remaining interval.
β Must-know
π Formula β A substance that starts at 27.3 grams and decreases by 10% each year is modeled by .
π Formula β A bacteria population that starts at 20,000 and reaches 30,000 after one day is modeled by .
Further detail
π For a real-world exponential model, the appropriate domain is restricted to the time values that make sense in the situation, such as tβ₯0 for elapsed time.
π The statement that an exponential function of the form has a y-intercept is always true when the function is defined at x=0.
π The statement that every exponential function of the form has an x-intercept is not always true because an exponential graph may approach its asymptote without crossing the x-axis.
Test your knowledge on Graphing Exponential Functions with 11 multiple-choice questions with detailed corrections.
1. Which expression represents an exponential function in which the variable appears in the exponent?
2. What is the defining characteristic of an exponential function?
Memorize the key concepts of Graphing Exponential Functions with 11 interactive flashcards.
What is the general form of an exponential function?
where b is a constant base and x is the exponent.
Exponential Function Base Label
b > 1 for growth, 0 < b < 1 for decay
What base values define exponential growth and decay functions?
Growth has base ; decay has base .
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