For the following exercises, for each polynomial, a. find the degree; b. find the zeros, if any; c. find the y −intercept(s), if any; d. use the leading coefficient to determine the graph’s end behavior; and e. determine algebraically whether the polynomial is even, odd, or neither. 85. f ( x ) = 1 2 x 2 − 1
For the following exercises, for each polynomial, a. find the degree; b. find the zeros, if any; c. find the y −intercept(s), if any; d. use the leading coefficient to determine the graph’s end behavior; and e. determine algebraically whether the polynomial is even, odd, or neither. 85. f ( x ) = 1 2 x 2 − 1
For the following exercises, for each polynomial, a. find the degree; b. find the zeros, if any; c. find the y −intercept(s), if any; d. use the leading coefficient to determine the graph’s end behavior; and e. determine algebraically whether the polynomial is even, odd, or neither.
I need help with this problem and an explanation of the solution for the image described below. (Statistics: Engineering Probabilities)
Question 4 Find an equation of
(a) The plane through the point (2, 0, 1) and perpendicular to the line x =
y=2-t, z=3+4t.
3t,
(b) The plane through the point (3, −2, 8) and parallel to the plane z = x+y.
(c) The plane that contains the line x = 1+t, y = 2 − t, z = 4 - 3t and is
parallel to the plane 5x + 2y + z = 1.
(d) The plane that passes through the point (1,2,3) and contains the line
x = 3t, y = 1+t, and z = 2-t.
(e) The plane that contains the lines L₁: x = 1 + t, y = 1 − t, z = 2t and
L2 : x = 2 − s, y = s, z = 2.
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