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Coordinate Geometry

Expert replies
Source: — Problem Solving |

by theCodeToGMAT » Tue May 06, 2014 2:17 am
To find: (r,s) & (u,v) equidistant from origin

Statement 1:
r+s = 1
Doesn't give any info about other values
INSUFFICIENT


Statement 2:
u = 1 - r ==> u + r = 1
v = 1 - x ==> v + s = 1
we don't have any specific value
INSUFFICIENT

Combining...
u + r + v + s = 2
u + v = 1
r + s = 1
Also, u + r = 1 & v + s = 1
That means all values are same
SUFFICIENT

[spoiler]{C}?[/spoiler]
R A H U L
Join the discussion

by Brent@GMATPrepNow » Tue May 06, 2014 3:17 am
In the rectangular coordinate system, are the points (r,s) and (u,v ) equidistant from the origin?
(1) r + s = 1
(2) u = 1 - r and v = 1 - s
Tricky question!

Target question: Are the points (r,s) and (u,v) equidistant from the origin?

Statement 1: r + s = 1
There's no info about the point (u,v)
Since we cannot answer the target question with certainty, statement 1 is NOT SUFFICIENT

Statement 2: u = 1 - r and v = 1 - s
There are several sets of coordinates that meet this condition. Here are two:
Case a: (r,s) = (1,0), which means (u,v) = (0,1). In this case the points (r,s) and (u,v) are equidistant from the origin
Case b: (r,s) = (1,1), which means (u,v) = (0,0). In this case the points (r,s) and (u,v) are not equidistant from the origin
Since we cannot answer the target question with certainty, statement 2 is NOT SUFFICIENT

Statements 1 and 2 combined:
Statement 2 tells us that u = 1 - r and v = 1 - s
We can rearrange these two equations to get u + r = 1 and v + s = 1
Let's compare each of these equations with the equation in statement 1 (r + s = 1)

u + r = 1
s + r = 1
Subtract equations to get: u - s = 0, which means u = s

v + s = 1
r + s = 1
Subtract equations to get: v - r = 0, which means v = r

If r = v and s = u, then the points (r,s) and (u,v) are equidistant from the origin
Since we can answer the target question with certainty, the combined statements are SUFFICIENT

Answer = C

Cheers,
Brent
Brent Hanneson - Creator of GMATPrepNow.com
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