BREAKING: Target Test Prep releases Brand New 2026 On Demand GMAT prep course

Redeem

Target Test Prep · GMAT

Choose how you want to prepare

Learn live with an expert or move at your own pace. Every option includes the complete TTP study system.

★★★★★5.0559 reviews
Vote for Target Test Prep, Newsweek Readers’ Choice Awards 2026
NEWSWEEK READERS’ CHOICE 2026

BIG NEWS! Target Test Prep has been nominated, and they’d love your vote!

TTP has worked incredibly hard to build the best test prep experience possible, and winning Newsweek’s 2026 Readers’ Choice Award for Best Test Prep would mean a lot to them. If TTP has helped you, they’d be incredibly grateful for your vote. You can vote once each day through September 9.

Vote for TTP
GMATLiveTeach 7 seats left
Chris Peckover
NEXT LIVE COHORT

Oct 13 to Jan 7, 2027

with Chris Peckover

Schedule
Tue, Thu · 8:00 to 10:00 PM ET
Included
40 live hours + 6 months of GMAT OnDemand
  • Live instruction and real-time questions
  • Class recordings and assigned practice
View class & enroll
Limited cohort · enrollment openTarget Test Prep
EALiveTeach 5 seats left
Logan Thompson
EXECUTIVE ASSESSMENT

Sep 6 to Dec 6, 2026

with Logan Thompson

Schedule
Sun · 9:30 AM to 12:30 PM ET
Included
40 hours of live online classes plus six months of access to the complete TTP EA OnDemand course.
  • 165+ EA Score Guarantee
  • 4,100+ Quant, Verbal, and Integrated Reasoning practice questions
  • 400+ hours of in-depth video lessons
  • 3,000+ step-by-step video solutions
View EA class & enroll
Limited cohort · enrollment openTarget Test Prep
GMATOnDemand Start anytime
SELF-PACED MASTERCLASS

Target Test Prep GMAT OnDemand

Complete access from day one. Study on your schedule.

715+ score guarantee
$0to start then $127/mo
  • Personalized study plan and analytics
  • Thousands of lessons and practice questions

Compare the format, schedule, and included access before enrolling. Prices and seat counts shown reflect the supplied offer details.

algebra!

Expert replies
by vscid » Sun Dec 06, 2009 2:10 pm
If o represents one of the operations +, _, and x, is k o (l+m) = (k o l) + (k o m), for all numbers k.l, and m ?

1] k o 1 is not equal to 1 o k for some numbers k.

2] o represents subtraction.
Last edited by vscid on Mon Dec 07, 2009 9:36 am, edited 1 time in total.
The GMAT is indeed adaptable. Whenever I answer RC, it proficiently 'adapts' itself to mark my 'right' answer 'wrong'.
Join the discussion
Source: — Data Sufficiency |

by Gmat09_5ALL » Mon Dec 07, 2009 9:30 am
IMO - D
Join the discussion

by vscid » Mon Dec 07, 2009 9:36 am
Gmat09_5ALL wrote:IMO - D
Please explain.
The GMAT is indeed adaptable. Whenever I answer RC, it proficiently 'adapts' itself to mark my 'right' answer 'wrong'.
Join the discussion

by BuckeyeT » Mon Dec 07, 2009 11:01 am
In order to find the solution, you must determine what the "_" operator is.

From the stem, we're trying to find:
Is k o (l+m) = (k o l) + (k o m), for all numbers k.l, and m.

For "+". k + (l+m) = k + l + m.
Is this equal to (k + l) + (k + m) = k + l + k + m = 2k + l + k. NO. So, the equation will always fail if "o" is "+".

For "x". k x (l+m) = kl + km.
Is this equal to (k x l) + (k x m) = kl + km. YES. So, the equation will always succeed if "o" = "x".

Now because "_" can equal another operation, we must test the other two.
For "-". k - (l+m) = k - l - m.
Is this equal to (k - l) + (k - m) = k - l + k - m = 2k - l - m. NO.

For "/". k/(l+m).
Is this equal to (k/l) + (k/m) = (km - kl)/(lm) = [k(m-l)]/(lm). NO.

So for the equation to succeed, the operator must be "x".

(1) k o 1 is not equal to 1 o k for some numbers k.
You should be able to determine that this is true for "-" (subtraction) and "/" (division). So, we know "o" is either "-" or "/". Both cause the stem question to FAIL, so this is SUFFICIENT to answer the question (as we KNOW the answer will ALWAYS be NO).

(2) o represents subtraction.
As proven in our initial work, "-" causes the stem question to FAIL, so this is SUFFICIENT to answer the question (as we KNOW the answer will ALWAYS be NO).

Answer: D. Either statement, by itself, is Sufficient to answer the question.
Join the discussion