For Exercises 45-52, determine if the graph can represent a polynomial function. If so. Assume that the end behaviour and all turning points are represented in the graph. a. Determine the minimum degree of the polynomial. b. Determine whether the leading coefficient is positive or negative based on the end behaviour and whether the degree of the polynomial is odd or even. c. Approximate the real zeros of the function, and determine if their multiplicities are even or odd.
For Exercises 45-52, determine if the graph can represent a polynomial function. If so. Assume that the end behaviour and all turning points are represented in the graph. a. Determine the minimum degree of the polynomial. b. Determine whether the leading coefficient is positive or negative based on the end behaviour and whether the degree of the polynomial is odd or even. c. Approximate the real zeros of the function, and determine if their multiplicities are even or odd.
Solution Summary: The author explains that the graph represents a polynomial function and determines whether the leading coefficient is positive or negative based on the end behaviour.
For Exercises 45-52, determine if the graph can represent a polynomial function. If so. Assume that the end behaviour and all turning points are represented in the graph.
a. Determine the minimum degree of the polynomial.
b. Determine whether the leading coefficient is positive or negative based on the end behaviour and whether the degree of the polynomial is odd or even.
c. Approximate the real zeros of the function, and determine if their multiplicities are even or odd.
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rmine the immediate settlement for points A and B shown in
figure below knowing that Aq,-200kN/m², E-20000kN/m², u=0.5, Depth
of foundation (DF-0), thickness of layer below footing (H)=20m.
4m
B
2m
2m
A
2m
+
2m
4m
sy = f(x)
+
+
+
+
+
+
+
+
+
X
3
4
5
7
8
9
The function of shown in the figure is continuous on the closed interval [0, 9] and differentiable on the open
interval (0, 9). Which of the following points satisfies conclusions of both the Intermediate Value Theorem
and the Mean Value Theorem for f on the closed interval [0, 9] ?
(A
A
B
B
C
D
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