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Previous year question hub

Process Economics and Cost Estimation - Plant Design and Economics - Chemical Engineering Previous Year Questions

Practice Process Economics and Cost Estimation - Plant Design and Economics - Chemical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

19Papers
19Years
42Questions
1Topics

Process Economics and Cost Estimation question pattern

Every graph below is calculated only from this selection.

Questions by year

Compare question counts across years.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 27 64.3%
Medium 15 35.7%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 26 61.9%
Numerical Answer Type (NAT) 13 31%
Fill in the blanks 2 4.8%
MSQ 1 2.4%

Subject weightage

Top subjects by unique question coverage.

Chemical Engineering
42 Qs

Most asked topics

Top topics across the included previous year papers.

Plant Design and Economics
42 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Process Economics and Cost Estimation
42 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Chemical Engineering (CH) 2026
2 Qs
Chemical Engineering (CH) 2025
2 Qs
Chemical Engineering (CH) 2024
1 Qs
Chemical Engineering (CH) 2023
2 Qs
Chemical Engineering (CH) 2022
3 Qs
Chemical Engineering (CH) 2021
3 Qs
Chemical Engineering (CH) 2020
1 Qs
Chemical Engineering (CH) 2019
2 Qs
Chemical Engineering (CH) 2018
3 Qs
Chemical Engineering (CH) 2017
1 Qs
Chemical Engineering (CH) 2016
2 Qs
Chemical Engineering (CH) 2014
2 Qs
Chemical Engineering (CH) 2013
2 Qs
Chemical Engineering (CH) 2012
3 Qs
Chemical Engineering (CH) 2011
3 Qs
Chemical Engineering (CH) 2010
3 Qs
Chemical Engineering (CH) 2009
2 Qs
Chemical Engineering (CH) 2008
4 Qs
Chemical Engineering (CH) 2007
1 Qs

Included previous year papers

Newest papers appear first. Search these papers or sort by year and name.

Paper nameYearPDFAttempt
Chemical Engineering (CH) 20262026
2 questions in this view
2026
Chemical Engineering (CH) 20252025
2 questions in this view
2025
Chemical Engineering (CH) 20242024
1 questions in this view
2024
Chemical Engineering (CH) 20232023
2 questions in this view
2023
Chemical Engineering (CH) 20222022
3 questions in this view
2022
Chemical Engineering (CH) 20212021
3 questions in this view
2021
Chemical Engineering (CH) 20202020
1 questions in this view
2020
Chemical Engineering (CH) 20192019
2 questions in this view
2019
Chemical Engineering (CH) 20182018
3 questions in this view
2018
Chemical Engineering (CH) 20172017
1 questions in this view
2017
Chemical Engineering (CH) 20162016
2 questions in this view
2016
Chemical Engineering (CH) 20142014
2 questions in this view
2014
Chemical Engineering (CH) 20132013
2 questions in this view
2013
Chemical Engineering (CH) 20122012
3 questions in this view
2012
Chemical Engineering (CH) 20112011
3 questions in this view
2011
Chemical Engineering (CH) 20102010
3 questions in this view
2010
Chemical Engineering (CH) 20092009
2 questions in this view
2009
Chemical Engineering (CH) 20082008
4 questions in this view
2008
Chemical Engineering (CH) 20072007
1 questions in this view
2007

All Process Economics and Cost Estimation previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2007

A pump has an installed cost of Rs. 40,000 and a 10 year estimated life. The salvage value of the pump is zero at the end of 10 years. The pump value (in rupees), after depreciation by the double declining balance method, at the end of 6 years is

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2
2008 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2008

For the case of single lump-sum capital expenditure of Rs. 10 crores which generates a constant annual cash flow of Rs. 2 crores in each subsequent year, the payback period (in years), if the scrap value of the capital outlay is zero is

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3
2008 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2008

The relation between capital rate of return ratio (CRR), net present value (NPV) and maximum cumulative expenditure (MCE) is

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4
2008 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2008
Match the following

Question diagram

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5
2008 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2008

A reactor has been installed at a cost of Rs. 50,000 and is expected to have a working life of 10 years with a scrap value of Rs. 10,000. The capitalized cost (in Rs.) of the reactor based on an annual compound interest rate of 5% is

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6
2009 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2009

The total fixed cost of a chemical plant is Rs. 10.0 lakhs; the internal rate of return is 15%, and the annual operating cost is Rs. 2.0 lakhs. The annualized cost of the plant (in lakhs of Rs.) is

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7
2009 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2009

A column costs Rs. 5.0 lakhs and has a useful life of 10 years. Using the double declining balance depreciation method, the book value of the unit at the end of five years (in lakhs of Rs.) is

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8
2010 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2010
A reactor needs to be lined with a corrosion resistant lining. One type of lining costs Rs. 5 lakhs, and is expected to last for 2 years. Another type of lining lasts for 3 years. If both choices have to be equally economical, with the effective interest rate being 18%, compounded annually, the price one should pay for the second type of lining is
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9
2010 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2010
A plant produces phenol. The variable cost in rupees per tonne of phenol is related to the plant capacity P (in tonnes/day) as 45,000 + 5P. The fixed charges are Rs. 10,00,000 per day. The selling price of phenol is Rs. 50,000 per tonne.
The optimal plant capacity (in tonnes per day) for minimum cost per tonne of phenol, is
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10
2010 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2010
The break-even capacity in tonnes per day, is
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11
2011 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2011
A process plant has a life of 7 years and its salvage value is 30 %. For what MINIMUM fixed-percentage factor will the depreciation amount for the second year, calculated by declining balance method be EQUAL to that calculated by the straight line depreciation method?
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12
2011 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2011
A continuous fractionator system is being designed. The following cost figures are estimated for a reflux ratio of 1.4.
Fixed cost including all accessories (Rs.) forOperating cost (Rs./year) for
columncondenserreboilercondenser cooling waterreboiler heating steam
6 × 10⁶2 × 10⁶4 × 10⁶8 × 10⁶1 × 10⁶
The annualised fixed charge is 15 % of the fixed cost. The total annualised cost (in Rs.) is
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13
2011 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2011
The variable cost (V) of manufacturing a product varies according to the equation V= 4q, where q is the quantity produced. The fixed cost (F) of production of same product reduces with q according to the equation F = 100/q. How many units should be produced to minimize the total cost (V+F)?
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14
2012 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2012
A batch reactor produces \(1 \times 10^7\) kg of a product per year. The total batch time (in hours) of the reactor is \(k \sqrt{P_B}\), where \(P_B\) is the product per batch in kg and \(k = 1.0\) h/\(\sqrt{kg}\). The operating cost of the reactor is Rs. 200/h. The total annual fixed charges are Rs. \(340 \times P_B\) and the annual raw material cost is Rs. \(2 \times 10^6\). The optimum size (in kg) of each batch (adjusted to the nearest integer) is
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15
2012 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2012
Heat integration is planned in a process plant at an investment Rs. \(2 \times 10^6\). This would result in a net energy savings of 20 GJ per year. If the nominal rate of interest is 15% and the plant life is 3 years, then the breakeven cost of energy, in Rs. per GJ (adjusted to the nearest hundred), is
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16
2012 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2012
The cost function for a product in a firm is given by \(5q^2\), where \(q\) is the amount of production. The firm can sell the product at a market price of ₹50 per unit. The number of units to be produced by the firm such that the profit is maximized is
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17
2013 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2013
The purchase cost of a heat exchanger of 20 m² area was Rs. 500000 in 2006. What will be the estimated cost (in Rs. to the nearest integer) of a similar heat exchanger of 50 m² area in the year 2013? Assume the six-tenths factor rule for scaling and the cost index for 2006 as 430.2. The projected cost index for the year 2013 is 512.6.
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18
2013 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2013
A plant manufactures compressors at the rate of N units/day. The daily fixed charges are Rs. 20000 and the variable cost per compressor is Rs. 500 + 0.2 N^{1.3}. The selling price per compressor is Rs. 1000. The number of compressors to be manufactured, to the nearest integer, in order to maximize the daily profit is
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19
2014 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2014
A cash flow of Rs. 12,000 per year is received at the end of each year (uniform periodic payment) for 7 consecutive years. The rate of interest is 9% per year compounded annually. The present worth (in Rs.) of such cash flow at time zero is __________
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20
2014 · Chemical Engineering · Plant Design and Economics · Process Economics and Cost Estimation
Chemical Engineering (CH) 2014
A polymer plant with a production capacity of 10,000 tons per year has an overall yield of 70%, on mass basis (kg of product per kg of raw material). The raw material costs Rs. 50,000 per ton. A process modification is proposed to increase the overall yield to 75% with an investment of Rs. 12.5 crore. In how many years can the invested amount be recovered with the additional profit? __________
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Showing 20 of 42 questions