Given two lines, determine whether or not they are parallel. Lines are represented by a list [a, b, c], which corresponds to the line ax+by3c. Examples lines are_parallel([1, 2, 3], [1, 2, 4)) - true * x+2y=3 and x+2y=D4 are parallel. lines are_parallel([2, 4, 1], [4, 2, 1]) false # 2x+4y 1 and 4x+2y 1 are not parallel. lines are_parallel([e, 1, 5], [e, 1, 5))-true # Lines are parallel to themselves.

Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
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Given two lines, determine whether or not they are parallel.
Lines are represented by a list [a, b, c], which corresponds to the line ax+by=c.
Examples
lines are_parallel([1, 2, 3), [1, 2, 4))
* x+2y33 and x+2y-D4 are parallel.
-true
lines are_parallel([2, 4, 1], [4, 2, 1)) false
# 2x+4y 1 and 4x+2y 1 are not parallel.
lines are_parallel([e, 1, 5], [e, 1, 5))-true
# Lines are parallel to themselves.
Transcribed Image Text:Given two lines, determine whether or not they are parallel. Lines are represented by a list [a, b, c], which corresponds to the line ax+by=c. Examples lines are_parallel([1, 2, 3), [1, 2, 4)) * x+2y33 and x+2y-D4 are parallel. -true lines are_parallel([2, 4, 1], [4, 2, 1)) false # 2x+4y 1 and 4x+2y 1 are not parallel. lines are_parallel([e, 1, 5], [e, 1, 5))-true # Lines are parallel to themselves.
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