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
GMATLiveTeach Starts Oct 17
Chris Peckover, Target Test Prep GMAT expert
LIVE ONLINE CLASSES

Get Ready for GMAT Test Day Faster with Live Online Classes

with Chris Peckover, 100th-Percentile GMAT Scorer

Oct 17 · Chris Peckover
Sat · 11:00 AM to 2:00 PM ET
Oct 20 · Chris Peckover
Tue, Thu · 8:00 to 10:00 PM ET
Oct 25 · Josh Braslow
Sun · 1:00 to 4:00 PM ET
Included
40 hours of live online classes + 6 months of TTP OnDemand
  • Attend the first class for free
  • Every class is recorded, so you never fall behind
View classes & enroll
Limited seats availableTarget Test Prep
EALiveTeachOnDemand 5 seats left Start anytime
EXECUTIVE ASSESSMENT

Target Test Prep EA OnDemand

Self-paced EA prep. Study on your schedule.

Logan Thompson
EXECUTIVE ASSESSMENT

Sep 6 to Dec 6, 2026

with Logan Thompson

165+ EA score guarantee
$05-day trial no automatic billing
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 Start free 5-day trial
Limited cohort · enrollment openTrial includes full course accessTarget 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.

Work problem # 2

Expert replies
by oks » Fri Jun 12, 2009 4:59 pm
I must be missing a point with the work problems, b/c I keep missing all of them.

Five farm workers can pick 10 acres of blueberries in 20 hours. How many hours would it take 8 workers to pick the same amount of blueberries?

A. 12.5
B. 14
C. 16
D. 23
E. 32

OA is A

Since the amount is the same, we need to find how long does it take 1 worker: 5 workers - 20 hours, so 1 worker - 4 hours. Then it would take 32 hours for 8 workers?

Please explain. Thanks.
Join the discussion
Source: — Problem Solving |

by ssmiles08 » Fri Jun 12, 2009 5:17 pm
5 workers pick 10 acres of blueberry fields in 20 hours

1 worker can pick 2 acres of blueberry fields in 20 hrs.

1 worker can pick 1/10 (2/20) acres of blueberry fields in 1 hr.

8 workers can pick 4/5 (8/10) acres of blueberry fields in 1 hr.

8 workers can pick 10 (4/5)*(25/2) acres of blueberry fields in 25/2 hrs.

So total time it takes to pick for 8 workers in 10 acres is: 25/2 = 12.5hrs.
Join the discussion

Re: Work problem # 2

by Naruto » Fri Jun 12, 2009 7:02 pm
oks wrote:I must be missing a point with the work problems, b/c I keep missing all of them.

Five farm workers can pick 10 acres of blueberries in 20 hours. How many hours would it take 8 workers to pick the same amount of blueberries?

A. 12.5
B. 14
C. 16
D. 23
E. 32

OA is A

Since the amount is the same, we need to find how long does it take 1 worker: 5 workers - 20 hours, so 1 worker - 4 hours. Then it would take 32 hours for 8 workers?

Please explain. Thanks.
You know i used to face the same confusion in work, but if u like i can just clear a basic funda of yours which would always help you. Just remember in work its usually inverse variation instead of direct. You can always check it with logic, like here since 5 people take 20 hrs so it would be obvious that more ppl will take less than 20 hours right?
so now just plug in the equation but inverse variation.
i.e
lets assume the no. of hrs required to be x
so,
5/8=x/20
now solving for x you'll get x=12.5
Join the discussion

by Naruto » Fri Jun 12, 2009 7:04 pm
oh and one more thing , here it formed a simple inverse equation, because 10 acres was constant, else you would have to first calculate for a constant amount and then vary, had 10 acres changed to something else.
Join the discussion

by vpmba2009 » Sat Jun 13, 2009 8:57 am
Work problem is my concern, too.
I found an easier way to approach this kind of problem.
If it takes M workers H hours to finish a job, then each worker does 1/MH of the job in an hour. So the rate of each worker is 1/MH.
----------------------
Apply this to your problem: Five farm workers can pick 10 acres of blueberries in 20 hours. So the rate of each worker is 1/(5*20)=1/100.
8 workers will do 8*1/100=8/100 of the job in an hour.
Call T is the time it takes 8 workers to complete the job (1 job).
Then (8/100)(T)=1 => T=100/8=12.5
Join the discussion

Re: Work problem # 2

by Ian Stewart » Sat Jun 13, 2009 11:09 am
oks wrote: Five farm workers can pick 10 acres of blueberries in 20 hours. How many hours would it take 8 workers to pick the same amount of blueberries?

A. 12.5
B. 14
C. 16
D. 23
E. 32
Alternatively, we can use the management principle of 'person-hours' to solve problems when all of our workers are identical. The '10 acres' is irrelevant here; we know that 5 workers can finish the job in 20 hours. So the job requires a total of 5*20 = 100 hours of work. If we have 8 workers, they will each therefore need to work for 100/8 = 12.5 hours.
For online GMAT math tutoring, or to buy my higher-level Quant books and problem sets, contact me at ianstewartgmat at gmail.com

ianstewartgmat.com
Join the discussion

by tohellandback » Sat Jun 13, 2009 11:42 am
hey u can use the allegation method too:

5 x


8 20

5*20=8*x
x=12.5
The powers of two are bloody impolite!!
Join the discussion

by Umar82 » Fri Jun 19, 2009 3:23 pm
since you are keeping the "10 acres" constant . . . there is an easier way to do this.

5 workers__________10 acres___________20hours

1 worker___________10 acres___________100 hours

so . . . if it takes 1 worker 100 hours, it would take eight workers, 100/8 = 12.5
Join the discussion