GATE AG Question Paper 2010.
GATE i.e. Graduate Aptitude Test in Engineering Agricultural Engineering 2010 Exam Has been Conducted by IISc Bangalore IIT Bombay IIT Delhi IIT Guwahati IIT Kanpur IIT Kharagpur IIT Madras IIT Roorkee. This GATE AG 2010 examination is the procedure to get the admission in M.Tech
GATE Agricultural Engineering i.e. AG Question Paper, This GATE AG 2010 Question will help all the students for their exam preparation, here the question type is MCQ i.e multiple choice question answers, if this GATE AG 2010 question paper in pdf file for GATE AG you can download it in FRAG, if GATE Agricultural Engineering 2010 paper in text for GATE AG you can download GATE AG 2010 page also just Go to menu bar, Click on File->then Save.
GATE AG Question Paper 2010
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Q.3 While carrying out tillage operations6 negative slip is sometimes experiexwed with
(A) front wheels of two-wheel drive tracLor
(B) front wheels of four-wheel drive tractor
(C) front wheels of front wheel assisced tractor
(D) wheels of power tiller pulling a mould board plough
Q.4 A twowheel drive tractor has a FF0 speed of 540 rpm and it produces 35 kW net engine power.
Corresponding torque available at PTO in N in will be
(C) 495 — 505
(0)535 — 558
Q.5 Raising the hitch on the implement frame of a puJI type offset disk harrow without gauge wheel helps in
(A) increasing the depth of penetration for the rear gang
(B) increasing the depth of penetration for (he front gang
(C) decreasing (he depth of penetration for the front gang
(D maintaining the same depth of penetration for both the gangs
Q6 While deriving the Chezy formula for uniform flow, it is assumed that there is a balance between
(A) gravity and inertial forces
(B) inertial and viscous forces
(C) frictional and gravity forces
(D) frictional and inertial forces
Q.7 A cross regulator is usually provided
(A) at the head of the off-caking channel
(B) in the main channel upstream of the oft-caking channel
(C) in the main channel downstream of the off-taking channel
(0) in (he watercourse to regulate the outlets
Q 9 The dimensionless number in heat transfer corresponding to Sherwood Number in mass transfer S
(A) Biot Number (B) Schmidt Number
(C) Nusselt Number (F)) Graetz Number
Q 10 The interrelationship between thermal conductivity dynamic viscosity and temperature of gas can be described as
(A) dynamic viscosity and thermal conductivity decrease as temperature increases
(B) dynamic viscosity decreases and thermal conductivity increases as temperature increases
(C) dynamic viscosity and thermal conductivity decrease as temperature decreases
(D) dynamic viscosity and thermal conductivity increase as temperature decreases
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