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About 55 results
  • https://math.libretexts.org/Courses/Coastline_College/Math_C115%3A_College_Algebra_(Tran)/03%3A_Functions/3.02%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Courses/Fresno_City_College/Math_3A%3A_College_Algebra_-_Fresno_City_College/02%3A_Functions/2.01%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Bookshelves/Precalculus/Precalculus_1e_(OpenStax)/01%3A_Functions/1.01%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Courses/Hartnell_College/MATH_25%3A_PreCalculus_(Abramson_OpenStax)/01%3A_Functions/1.01%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Courses/Prince_Georges_Community_College/MAT_1350%3A_Precalculus_Part_I/03%3A_Functions/3.01%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Courses/Highline_College/MATHP_141%3A_Corequisite_Precalculus/03%3A_Inequalities_and_Functions/3.03%3A_Functions_and_Function_Notation
    The set of the first components of the ordered pairs is called the domain and the set of the second components of the ordered pairs is called the range. \[\begin{array}{ll} h \text{ is } f \text{ of }...The set of the first components of the ordered pairs is called the domain and the set of the second components of the ordered pairs is called the range. \[\begin{array}{ll} h \text{ is } f \text{ of }a \;\;\;\;\;\; & \text{We name the function }f \text{; height is a function of age.} \\ h=f(a) & \text{We use parentheses to indicate the function input.} \\ f(a) & \text{We name the function }f \text{ ; the expression is read as “ }f \text{ of }a \text{.”}\end{array}\nonumber\]
  • https://math.libretexts.org/Workbench/Algebra_and_Trigonometry_2e_(OpenStax)/03%3A_Functions/3.02%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Bookshelves/Combinatorics_and_Discrete_Mathematics/Discrete_Mathematics_for_Computer_Science_(Fitch)/04%3A_Relations/4.04%3A_Partially_Ordered_Sets
    This page defines partially ordered sets (posets) and their properties like reflexivity, anti-symmetry, and transitivity. It explains representation through Hasse diagrams and illustrates examples suc...This page defines partially ordered sets (posets) and their properties like reflexivity, anti-symmetry, and transitivity. It explains representation through Hasse diagrams and illustrates examples such as numeric divisibility and subset relations. Key terms related to posets, including comparable elements, total ordering, and lattices, are defined, alongside practical checkpoints for assessing poset properties and constructing Hasse diagrams.
  • https://math.libretexts.org/Courses/Highline_College/Math_141%3A_Precalculus_I_(old_edition)/02%3A_Inequalities_and_Functions/2.02%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Courses/Palo_Alto_College/College_Algebra/02%3A_Functions/2.02%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.
  • https://math.libretexts.org/Under_Construction/Purgatory/Remixer_University/Username%3A_hdagnew@ucdavis.edu/PreCalc_(DSL)/01%3A_Functions/1.02%3A_Functions_and_Function_Notation
    A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a ...A jetliner changes altitude as its distance from the starting point of a flight increases. The weight of a growing child increases with time. In each case, one quantity depends on another. There is a relationship between the two quantities that we can describe, analyze, and use to make predictions. In this section, we will analyze such relationships.

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