For Exercises 31-34, the given equation represents a conic section (nondegenerative case). Identify the type of conic section. (See Examples 5 and 6) a. 4 x 2 − 12 x y + 6 y 2 + 2 x − 3 y − 8 = 0 b. 4 x 2 − 12 x y + 9 y 2 + 2 x − 3 y − 8 = 0
For Exercises 31-34, the given equation represents a conic section (nondegenerative case). Identify the type of conic section. (See Examples 5 and 6) a. 4 x 2 − 12 x y + 6 y 2 + 2 x − 3 y − 8 = 0 b. 4 x 2 − 12 x y + 9 y 2 + 2 x − 3 y − 8 = 0
Solution Summary: The author explains that the given equation is in the form of Ax2+Bxy+Cy
For Exercises 31-34, the given equation represents a conic section (nondegenerative case). Identify the type of conic section. (See Examples 5 and 6)
a.
4
x
2
−
12
x
y
+
6
y
2
+
2
x
−
3
y
−
8
=
0
b.
4
x
2
−
12
x
y
+
9
y
2
+
2
x
−
3
y
−
8
=
0
Curve that is obtained by the intersection of the surface of a cone with a plane. The three types of conic sections are parabolas, ellipses, and hyperbolas. The main features of conic sections are focus, eccentricity, and directrix. The other parameters are principal axis, linear eccentricity, latus rectum, focal parameter, and major and minor axis.
Robbie
Bearing Word Problems
Angles
name:
Jocelyn
date: 1/18
8K
2. A Delta airplane and an SouthWest airplane take off from an airport
at the same time. The bearing from the airport to the Delta plane is
23° and the bearing to the SouthWest plane is 152°. Two hours later
the Delta plane is 1,103 miles from the airport and the SouthWest
plane is 1,156 miles from the airport. What is the distance between the
two planes? What is the bearing from the Delta plane to the SouthWest
plane? What is the bearing to the Delta plane from the SouthWest
plane?
Delta
y
SW
Angles
ThreeFourthsMe MATH
2
Find the derivative of the function.
m(t) = -4t (6t7 - 1)6
Find the derivative of the function.
y= (8x²-6x²+3)4
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