Given the two planes: Plane#1: 4x +2y+z=3 Plane#2: -x + 5y+2z 1 %3D the equation for the line of intersection of these two planes is O a. x-1+-1.0t , y=-5.0+9.0t , z=13.0+22.0t O b. x=-1.0t , y=D-5.0-9.0t , z=13.0+22.0t OC.x-1.0t, y=-1.5+9.0t , z=-1.0-22.0t d. x-1.0t , y=-5.0-9.0t , z=-13.0+22.0t O e.x=-1.0t, y=-5.0-10.0t , z=16.0+42.0t
Given the two planes: Plane#1: 4x +2y+z=3 Plane#2: -x + 5y+2z 1 %3D the equation for the line of intersection of these two planes is O a. x-1+-1.0t , y=-5.0+9.0t , z=13.0+22.0t O b. x=-1.0t , y=D-5.0-9.0t , z=13.0+22.0t OC.x-1.0t, y=-1.5+9.0t , z=-1.0-22.0t d. x-1.0t , y=-5.0-9.0t , z=-13.0+22.0t O e.x=-1.0t, y=-5.0-10.0t , z=16.0+42.0t
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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