Welcome to our comprehensive guide on Pipe and Cistern Questions and Answers tailored for competitive exams! Mastering the concepts of pipes and cisterns is pivotal for acing quantitative aptitude sections in various competitive exams. In this Pipe and Cistern Questions and Answers blog, we'll delve into the fundamental concepts, problem-solving strategies, and a series of solved examples that will help you grasp this topic with ease. Let's dive into the world of pipes, cisterns, and their intricate problem-solving techniques to empower your exam preparation.
In this article Pipe and Cistern Questions and Answers for Competitive Exams, we are sharing the latest and most important questions related to Pipe and Cistern Problems under the Aptitude section for upcoming competitive exams. Practice with Pipe and Cistern Questions and Answers now!
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Q : One-fourth of a tank holds135 litres of water. What part of the tank is full if contains 180 litres of water?
(A)
(B)
(C)
(D)
A tank can be filled by A in 60 minutes and emptied by B in 75 minutes. The tank is half filled and Ravi wants to fill the tank but opens B mistakenly and realizes after half hour and closed tap B. He then opens A and tank is completely filled in _______ minutes.
(A) 48
(B) 54
(C) 50
(D) 64
(E) None of these
Pipes A and B can fill a tank in 12 minutes and 15 minutes, respectively. The tank when full can be emptied by pipe C in x minutes. When all the three pipes are opened simultaneously, the tank is full in 10 minutes. The value of x is:
(A) 18
(B) 15
(C) 20
(D) 24
Pipes A and B can fill a tank in 43.2 minutes and 108 minutes, respectively. Pipe C can empty it at 3 litres/minute. When all the three pipes are opened together, they fill the tank in 54 minutes. The capacity (in litres) of the tank is:
(A) 200
(B) 160
(C) 180
(D) 216
There are two inlets A and B connected to a tank. A and B can fill the tank in 32 h and 28 h, respectively. If both the pipes are opened alternately for 1 h, starting with A, then in how much time (in hours, to nearest integer) will the tank be filled?
(A) 22
(B) 30
(C) 36
(D) 24
There are three taps of diameter 2 cm, 3 cm and 4 cm, respectively. The ratio of the water flowing through them is equal to the ratio of the square of their diameters. The biggest tap can fill an empty tank alone in 81 min. If all the taps are opened simultaneously, then how long will the tank take (in min) to be filled?
(A)
(B)
(C)
(D)
Two pipes, D and E, can fill a cistern in 26 and 78 hours, respectively, while working alone. If the two pipes are opened together, the time taken to fill the cistern is:
(A)
(B)
(C)
(D)
A pipe can empty a tank in 40 minutes. A second pipe with diameter twice as much as that of the first is also attached with the tank to empty it . The two pipe together can empty the tank in:
(A) 8 minutes
(B) 13 minutes
(C) 30 minutes
(D) 38 minutes
A tank is fitted with two taps. The first tap can fill the tank completely in 45 minutes and the second tap can empty the full tank in one hour. If both the taps are opened alternately for one minute, then in how many hours the empty tank will be filled completely?
(A) 2 hours 55 minutes
(B) 3 hours 40 minutes
(C) 4 hours 48 minutes
(D) 5 hours 53 minutes
Two pipes P and Q would fill a cistern in 24 hours and 32 hours respectively. If both pipes are opened together, find when the pipe “P” must be turned off so that the cistern may be just filled in 16 hours-
(A) After 8 hrs
(B) After 12 hrs
(C) After 14 hrs
(D) After 16 hrs
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