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Previous year question hub

Farm Power - Farm Power - Agricultural Engineering Previous Year Questions

Practice Farm Power - Farm Power - Agricultural Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

15Papers
15Years
26Questions
1Topics

Farm Power 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.

Medium 19 73.1%
Easy 6 23.1%
Hard 1 3.8%

Question type distribution

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

MCQ 13 50%
Numerical Answer Type (NAT) 13 50%

Subject weightage

Top subjects by unique question coverage.

Agricultural Engineering
26 Qs

Most asked topics

Top topics across the included previous year papers.

Farm Power
26 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Farm Power
26 Qs

Paper coverage

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

Agricultural Engineering (AG) 2026
1 Qs
Agricultural Engineering (AG) 2025
1 Qs
Agricultural Engineering (AG) 2024
3 Qs
Agricultural Engineering (AG) 2023
2 Qs
Agricultural Engineering (AG) 2022
2 Qs
Agricultural Engineering (AG) 2021
1 Qs
Agricultural Engineering (AG) 2018
1 Qs
Agricultural Engineering (AG) 2017
1 Qs
Agricultural Engineering (AG) 2016
2 Qs
Agricultural Engineering (AG) 2014
1 Qs
Agricultural Engineering (AG) 2013
1 Qs
Agricultural Engineering (AG) 2011
1 Qs
Agricultural Engineering (AG) 2009
3 Qs
Agricultural Engineering (AG) 2008
4 Qs
Agricultural Engineering (AG) 2007
2 Qs

Included previous year papers

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

Paper nameYearPDFAttempt
Agricultural Engineering (AG) 20262026
1 questions in this view
2026
Agricultural Engineering (AG) 20252025
1 questions in this view
2025
Agricultural Engineering (AG) 20242024
3 questions in this view
2024
Agricultural Engineering (AG) 20232023
2 questions in this view
2023
Agricultural Engineering (AG) 20222022
2 questions in this view
2022
Agricultural Engineering (AG) 20212021
1 questions in this view
2021
Agricultural Engineering (AG) 20182018
1 questions in this view
2018
Agricultural Engineering (AG) 20172017
1 questions in this view
2017
Agricultural Engineering (AG) 20162016
2 questions in this view
2016
Agricultural Engineering (AG) 20142014
1 questions in this view
2014
Agricultural Engineering (AG) 20132013
1 questions in this view
2013
Agricultural Engineering (AG) 20112011
1 questions in this view
2011
Agricultural Engineering (AG) 20092009
3 questions in this view
2009
Agricultural Engineering (AG) 20082008
4 questions in this view
2008
Agricultural Engineering (AG) 20072007
2 questions in this view
2007

All Farm Power previous year questions

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

1
2007 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2007
While testing a tractor, the airborne sound intensity is increased so that the root mean square sound pressure is doubled. The corresponding increase in sound pressure level to the reference sound pressure of \(2 \times 10^{-5}\) Pa is
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2
2007 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2007

A single phase 230 V electric motor while running at 1400 rpm develops a torque of 3.1 Nm. If the phase angle between the voltage and current is 38° and the power efficiency of the motor is 80%, the amount of electric current drawn by the electric motor is

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3
2008 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2008
The torque exerted on the crankshaft of a two stroke engine is given by the equation
\[ T \ (N \ m) = 450 + 30 \sin 2\theta - 90 \cos 2\theta \]
where θ is the crank angle displacement from the inner dead centre. If the resisting torque is constant, the power developed by the engine at a speed of 1500 rpm is
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4
2008 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2008
A four stroke cycle engine has the following valve events: inlet valve opens at 8° before HDC; inlet valve closes at 55° after BDC; exhaust valve opens at 47° before BDC; exhaust valve closes at 12° after HDC. If the engine runs at 2000 rpm, the time in milli-seconds during which inlet and exhaust valves remain closed simultaneously is
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5
2008 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2008

At an engine throttle position of 75 percent, the high idle speed of the engine is shifted by 200 rpm towards the maximum torque position. If the engine is maintaining a uniform speed of 2475 rpm at a given load, the governor regulation is

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6
2008 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2008
A hydraulic motor receives a flow rate of 72 L min-1 at a pressure of 12 MPa. The motor speed is 800 rpm. If the motor has a power loss of 3 kW, the actual torque delivered by the motor is
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7
2009 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2009

In a diesel engine with variable compression ratio, the initial compression ratio is 16:1. The ratio of specific heats is 1.4. For the same cut-off ratio of 4.0, if the compression ratio is increased by 25%, the air standard thermal efficiency of the engine will be

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8
2009 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2009

The high idle speed of an engine is 2240 rpm and the governor regulation is 11.5%. The peak torque of 180 N m occurs at 1450 engine rpm. If lugging ability is 28 Nm, the engine power in kW at governor's maximum position will be

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9
2009 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2009

The inside diameter and stroke length of a single acting reciprocating pump are 120 mm and 400 mm respectively. The speed of the piston is 50 strokes per minute. The suction and delivery heads are 5 m and 10 m respectively. If the efficiency of both suction and delivery strokes is 60%, the actual power required in kW by the pump is

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10
2011 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2011
A two cylinder four stroke diesel engine develops 15 kW power at 2400 rpm. Its brake specific fuel consumption is 0.268 kg kW-1 h-1. If the specific gravity of fuel is 0.85, quantity of fuel injected per cylinder per cycle in m3 is
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11
2013 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2013
A 4-cylinder, 4-stroke compression ignition engine has piston stroke of \(10.5 \text{ cm}\) and cylinder bore of \(11 \text{ cm}\). At a mean piston speed of \(7 \text{ m s}^{-1}\), the developed brake mean effective pressure is \(650 \text{ kPa}\). The brake power in kW developed by the engine is
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12
2014 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2014

A hydraulic circuit uses a pump having a fixed displacement volume of 12.5 cm3 rev−1 driven at 1500 rpm. The pump has a volumetric efficiency of 85% and an overall efficiency of 75%. If the system pressure is set at 15 MPa by the relief valve, the power required to drive the pump in kW will be

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13
2016 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2016
A gear pump discharges 100 L min-1 against a system pressure of 15 MPa. The overall efficiency of the pump is 0.75. Input power to run the pump in kW is __________
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14
2016 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2016
The intake pressure of a diesel engine is 1 bar and pressure at the end of the compression is 34 bar. The adiabatic exponent is 1.3 and the expansion ratio is 7. The diesel cycle efficiency in percentage is __________
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15
2017 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2017
The purchase price of a tractor is Rs. 5.0 lakh. Considering the constant rate of depreciation as 0.2 in declining balance method, the value of the tractor at the end of 4th year in lakh will be __________.
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16
2018 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2018
Air enters into an engine cylinder at a pressure of 100 kPa and temperature of 300 K in the suction stroke of an ideal Otto cycle. The cylinder clearance volume is 600 cm³ and compression ratio is 8:1. The expansion stroke of the cycle is polytropic in nature. The pressure at the beginning of the expansion stroke is 10 MPa and the temperature at the end of the expansion stroke is 1800 K. The polytropic exponent of the expansion stroke is ______.
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17
2021 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2021
Fixed cost per year and variable cost per hour of a tractor were estimated based on its annual usage of 800 h. The total cost of operation was found to be Rs. 540 per hour. It was later re-estimated and found that total cost of operation would be Rs. 510 per hour, if the annual hours of use were increased to 1000 h. Considering all the components of annual usage cost to be the same, the variable cost in Rs. per hour would be ______. [answer in integer]
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18
2022 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2022
An ideal gas is compressed adiabatically (Adiabatic exponent γ =1.4) from 98 kPa to 480 kPa and the specific volume of the gas at the beginning of the compression stroke is 0.45 m3 kg-1. The specific work done on the gas in kJ kg-1 is ______.
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19
2022 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2022

The crank radius and connecting rod length of an IC engine are 250 mm and 1000 mm, respectively. If the crank turns 100° from the head dead centre and the net force acting on the piston along its direction of motion is 35 kN, the turning moment of the crank shaft at that instant in kN m is __________. [round off to two decimal places]

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20
2023 · Agricultural Engineering · Farm Power
Agricultural Engineering (AG) 2023
A 4-stroke diesel engine can be operated with either diesel (heating value 45 MJ kg-1) or biodiesel blend, B20 (heating value 42.1 MJ kg-1). The brake specific fuel consumption of the engine when operated with diesel and B20 is 260 g kW-1 h-1 and 310 g kW-1 h-1, respectively. For developing a brake power of 20 kW, the change in brake thermal efficiency of the engine when B20 is used in place of diesel is __________ (rounded off to 2 decimal places).
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Showing 20 of 26 questions