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Properties of Functions Section 1.6
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Even functions f(-x) = f(x) Graph is symmetric with respect to the y-axis
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Odd functions f(-x) = -f(x) Graph is symmetric with respect to the origin
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Vote: (A) Even (B) Odd (C) Neither 1.2.3.
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Verify graphically, then algebraically f(x) = x 2 – 5
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Verify graphically, then algebraically g(x) = 2x 3 – 1
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Verify graphically, then algebraically h(x) = 4x 3 – x
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When is a function constant?
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Local maxima? Local minima? Increasing intervals? Decreasing intervals?
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Use a graphing utility to graph f(x) = 6x 3 – 12x + 5 for -2 < x < 2 Local maxima? Local minima? Increasing intervals? Decreasing intervals?
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pages 66-67 (29-50) ======================= page 67 (51-70)
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Library of Functions Section 1.6
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Domain: Nonvertical line with slope m and y-intercept b Increases if m > 0 Decreases if m < 0 Constant if m = 0 Linear function
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Domain: Range: b Even function Constant over domain Constant function
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Domain: Range: Slope: 1 y-intercept: 0 Odd function Increasing over domain Identity function
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Domain: Range: Nonnegative x-intercept: 0 y-intercept: 0 Even function Decreasing on the interval (-∞, 0) Increasing on the interval (0, ∞) Square function
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Domain: Range: x-intercept: 0 y-intercept: 0 Odd function Increasing on the interval (-∞, ∞) Cube function
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x-intercept: 0 y-intercept: 0 The function is neither even nor odd Domain & range nonnegative Increasing on the interval (0, ∞) Minimum value of 0 at x = 0 Square root fx:
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x-intercept: 0 y-intercept: 0 Domain & range: The function is odd Increasing on the interval (-∞, ∞) No local minimum or maximum Cube root fx:
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Domain and range: Nonzero No intercepts The function is odd Decreasing on (-∞, 0) and (0, ∞) Reciprocal fx:
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x-intercept: 0 y-intercept: 0 Domain: Range: Nonnegative The function is even Decreasing on the interval (-∞, 0) Increasing on the interval (0, ∞) Local minimum value of 0 at x = 0 Absolute value fx:
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Greatest integer less than or equal to x Domain: Range: y-intercept: 0 x-intercepts [0, 1) Neither even nor odd Constant on [k, k + 1) Greatest integer fx:
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pages 66-68 (13-28, 71, 73-76)
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