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PAPER-3 AG-I, AG-II & AG-III àíZnwpñVH$m H«$‘m§H$ àíZnwpñVH$m H$moS>
CA
Question Booklet Sr. No.
AZwH«$‘m§H$ / Roll No.
Q. Booklet Code
CÎma-erQ> H«$‘m§H$ / OMR Answer Sheet No.
KmofUm : / Declaration :
‘¢Zo n¥îR> g§»¶m 1 na {X¶o J¶o {ZX}em| H$mo n‹T>H$a g‘P {b¶m h¡& narjm Ho$ÝÐmܶj H$s ‘moha
I have read and understood the instructions given on page No. 1 Seal of Superintendent of Examination Centre
narjmWu H$m hñVmja /Signature of Candidate
(AmdoXZ nÌ Ho$ AwZgma /as signed in application) H$j {ZarjH$ Ho$ hñVmja /Signature of the Invigilator
narjmWu H$m Zm‘/
Name of Candidate :
narjmWu H$mo {X¶o n¡amJ«m’$ H$s ZH$b ñd¶§ H$s hñV{b{n ‘| ZrMo {X¶o J¶o [a³V ñWmZ na ZH$b (H$m°nr) H$aZr h¡&
""Amn ghr ì¶dgm¶ ‘| h¢, ¶h Amn V^r OmZ|Jo O~ : Amn H$m‘ na OmZo Ho$ {bE qM{VV h¢, Amn {Z˶ AnZm H$m‘ g~go AÀN>m H$aZm MmhVo h¢, Am¡a Amn AnZo H$m¶© Ho$
‘hËd H$mo g‘PVo h¢&'' AWdm / OR
To be copied by the candidate in your own handwriting in the space given below for this purpose is compulsory.
‘‘You will know you are in the right profession when : you wake anxious to go to work, you want to do your best daily, and you know your work is
important.”
* Bg n¥îR> H$m D$nar AmYm ^mJ H$mQ>Zo Ho$ ~mX drjH$ Bgo N>mÌ H$s OMR sheet Ho$ gmW gwa{jV aIo&
* After cutting half upper part of this page, invigilator preserve it along with student’s OMR sheet.
nwpñVH$m ‘| ‘wIn¥îR> g{hV n¥îR>m| H$s g§»¶m g‘¶ 3 K§Q>o A§H$ / Marks nwpñVH$m ‘| àíZm| H$s g§»¶m
No. of Pages in Booklet including title
32 Time 3 Hours 600 No. of Questions in Booklet
150
PAPER-3 AG-I, AG-II & AG-III àíZnwpñVH$m H«$‘m§H$/ Question Booklet Sr. No.
AZwH«$‘m§H$ / Roll No.
H$j {ZarjH$ Ho$ hñVmja /Signature of the Invigilator
àíZnwpñVH$m H$moS>
narjmWu H$m Zm‘/
Name of Candidate : CA
Q. Booklet Code
narjm{W©¶m| Ho$ {bE {ZX}e /INSTRUCTIONS TO CANDIDATE
Aä¶{W©¶m| hoVw Amdí¶H$ {ZX}e : Instructions for the Candidate :
1. Amo.E‘.Ama. CÎma n{ÌH$m ‘| Jmobm| VWm g^r à{dpîQ>¶m| H$mo ^aZo Ho$ {bE Ho$db 1. Use BLUE or BLACK BALL POINT PEN only for all entries and for filling
Zrbo ¶m H$mbo ~mb ßdmB§Q> noZ H$m hr Cn¶moJ H$a|& the bubbles in the OMR Answer Sheet.
2. SECURITY SEAL ImobZo Ho$ nhbo Aä¶Wu AnZm Zm‘, AZwH«$‘m§H$ (A§H$m| 2. Before opening the SECURITY SEAL of the question booklet, write
your Name, Roll Number ( In figures), OMR Answer-sheet Number in
‘|) Amo.E‘.Ama. CÎma-erQ> H$m H«$‘m§H$ Bg àíZ-nwpñVH$m Ho$ D$na {X¶o J¶o the space provided at the top of the Question Booklet. Non-compliance
ñWmZ na {bI|& ¶{X do Bg {ZX}e H$m nmbZ Zht H$a|Jo Vmo CZH$s CÎma-erQ> H$m of these instructions would mean that the Answer Sheet can not be
‘yë¶m§H$Z Zhr hmo gHo$Jm VWm Eogo Aä¶Wu A¶mo½¶ Kmo{fV hmo Om¶|Jo& evaluated leading the disqualification of the candidate.
3. à˶oH$ àíZ Mma A§H$m| H$m h¡& {Og àíZ H$m CÎma Zht {X¶m J¶m h¡, Cg na H$moB© 3. Each question carries FOUR marks. No marks will be awarded for
A§H$ Zht {X¶m Om¶oJm& JbV CÎma na A§H$ Zht H$mQ>m OmEJm& unattempted questions. There is no negative marking on wrong answer.
4. Each multiple choice questions has only one correct answer and marks
4. g^r ~hþ{dH$ënr¶ àíZm| ‘| EH$ hr {dH$ën ghr h¡, {Ogna A§H$ Xo¶ hmoJm& shall be awarded for correct answer.
5. JUH$, bm°J Q>o{~b, ‘mo~mBb ’$moZ, Bbo³Q´>m°{ZH$ CnH$aU VWm ñbmBS> ê$b Am{X 5. Use of calculator, log table, mobile phones, any electronic gadget and
H$m à¶moJ d{O©V h¡& slide rule etc. is strictly prohibited.
6. Aä¶Wu H$mo narjm H$j N>moS>Zo H$s AZw‘{V narjm Ad{Y H$s g‘mpßV na hr Xr 6. Candidate will be allowed to leave the examination hall at the end of
Om¶oJr& examination time period only.
7. ¶{X {H$gr Aä¶Wu Ho$ nmg nwñVH|$ ¶m Aݶ {b{IV ¶m N>nr gm‘J«r, {Oggo do 7. If a candidate is found in possession of books or any other printed
ghm¶Vm bo gH$Vo/gH$Vr h¢, nm¶r Om¶oJr, Vmo Cgo A¶mo½¶ Kmo{fV H$a {X¶m Om or written material from which he/she might derive assistance, he/she
gH$Vm h¡& Bgr àH$ma, ¶{X H$moB© Aä¶Wu {H$gr ^r àH$ma H$s ghm¶Vm {H$gr ^r is liable to be treated at disqualified. Similarly, if a candidate is found
ómoV go XoVm ¶m boVm (¶m XoZo H$m ¶m boZo H$m à¶mg H$aVm) hþAm nm¶m Om¶oJm, giving or obtaining (or attempting to give or obtain) assistance from any
source, he/she is liable to be disqualified.
Vmo Cgo ^r A¶mo½¶ Kmo{fV {H$¶m Om gH$Vm h¡&
8. {H$gr ^r ^«‘ H$s Xem ‘| àíZ-nwpñVH$m Ho$ A§J«oOr A§e H$mo hr ghr d A§{V‘ 8. English version of questions paper is to be considered as authentic and
‘mZm Om¶oJm& final to resolve any ambiguity.
9. OMR sheet Bg Paper Ho$ ^rVa h¡ VWm Bgo ~mha {ZH$mbm Om gH$Vm h¡ naÝVw 9. OMR sheet is placed within this paper and can be taken out from this
Paper H$s grb Ho$db nona ewé hmoZo Ho$ g‘¶ na hr Imobm Om¶oJm& paper but seal of paper must be opened only at the start of paper.
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PAPER-3
AG-I : Q. 1 to Q. 50
AG-III : Q. 51 to Q. 100
AG-II : Q. 101 to Q. 150
AGRICULTURAL CHEMISTRY AND PHYSICS
001. A person travelling on a straight line 001. EH$ AmX‘r grYr aoIm ‘| Hw$N> Xÿar x EH$
moves with a uniform velocity V1 for a g‘mZ doJ V1 go V¶ H$aVm h¡ Am¡a Cgr
distance x and with a uniform velocity {Xem ‘| dhr Xÿar x EH$ g‘mZ doJ V2
V2 for the next equal distance. The go V¶ H$aVm h¡& Am¡gV doJ V H$m ‘mZ
average velocity V is given by:- hmoJm&
(A) V = V1 V2 (A) V = V1 V2
1 1
(B) V = (V + V2) (B) V = (V + V2)
2 1 2 1
2 = 1 + 1 2 = 1 + 1
(C) (C)
V V1 V2 V V1 V2
1 = 1 + 1 1 = 1 + 1
(D) (D)
V V1 V2 V V1 V2
3 - CA ] [2] [ Contd...
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002. A person standing on the floor of an 002. EH$ {bâQ> (EbdoQ>a) ‘| I‹S>m hþAm AmX‘r
elevator drops a coin. The coin reaches EH$ {g³H$m {JamVm h¡& {g³H$m ’$e© na
the floor of the elevator in a time t1 if t1 g‘¶ ‘| nhþ§MVm h¡ ¶{X {bâQ> pñWa
the elevator is stationary and in time t2
h¡& Am¡a t2 g‘¶ ‘| nhþ§MVm h¡ ¶{X {bâQ>
if it is moving with uniform velocity.
EH$ g‘mZ doJ go Mb ahr h¡, V~
Then
(A) t1 = t2 (B) t1 < t2
(A) t1 = t2 (B) t1 < t2
(C) t1 > t2 (D) none of these (C) t1 > t2 (D) BZ‘| go H$moB© Zht&
003. A car has to move on a level turn of 003. EH$ H$ma H$mo EH$ g‘Vb ‘mo‹S> na {OgH$s
radius 45 m. If the coefficient of static {ÌÁ¶m 45 m h¡ ‘w‹S>Zm h¡& ¶{X H$ma Ho$ n{h¶o
friction between the tyre and road is Am¡a g‹S>H$ Ho$ ~rM H$m ñW¡{VH$ Kf©U JwUm§H$
μs = 2.0, what is the maximum speed H$m ‘mZ 2.0 hmo Vmo H$ma {~Zm {’$gbo {H$g
the car can take without skidding. A{YH$V‘ doJ go Om gH$Vr h¡?
(A) 45 m/s (B) 30 m/s (A) 45 m/s (B) 30 m/s
(C) 90 m/s (D) insufficient data (C) 90 m/s (D) An¶m©á AmH$‹S>o
004. A coin placed on a rotating turn table 004. EH$ Ky‘Vo hþE Q>Z© Q>o~b na aIm hþAm
just slips if it is placed at a distance {g³H$m Ho$ÝÐ go 4 go.‘r. H$s Xÿar na aIZo
of 4 cm from the centre. If the angular na R>rH$ {IgH$ OmVm h¡& ¶{X Q>Z© Q>o~b
velocity of the turn table is doubled it H$m H$moUr¶ doJ Xmo JwZm hmo Om¶ Vmo ¶h
will just slip at a distance of. {g³H$m {IgHo$Jm (Ho$ÝÐ go)
(A) 8 cm (A) 8 cm H$s Xÿar na
(B) 4 cm (B) 4 cm H$s Xÿar na
(C) 2 cm (C) 2 cm H$s Xÿar na
(D) 1 cm (D) 1 cm H$s Xÿar na
005. Water in a bucket is whirled in a 005. nmZr go ^ar ~mëQ>r CÜd©Vb ‘| añgr go
vertical place with a string attached to ~§Yr hþB© Kw‘mB© Om ahr h¢ CƒV‘ {~ÝXþ
it. The water does not fall down even
na ~mëQ>r CëQ>r hmoZo na ^r nmZr Zhr§
when the bucket is inverted at top. We
conclude that in this position. {JaVm& Bg pñW{V ‘|
mv2 mv2 mv2 mv2
(A) mg = (B) mg > (A) mg = (B) mg >
r r r r
2
(C) mg #
mv
(D) none of these mv2
r (C) mg # (D) BZ‘| go H$moB© Zht&
r
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006. If the acceleration due to gravity at 006. ¶{X n¥Ïdr H$s gVh na Jwê$Ëdr¶ ËdaU
the surface of the earth is g, the work H$m ‘mZ g hmo Vmo m Ðì¶‘mZ Ho$ EH$
done in slowly lifting a body of mass {nÊS> H$mo Yrao-Yrao gVh go R Xÿar CR>mZo
m from the earth surface to a height ‘o {H$¶m J¶m H$m¶© hmoJm
R equal to the radius of the earth is (R = n¥Ïdr H$s {ÌÁ¶m)
1 1
(A) mgR (B) mgR (A) mgR (B) mgR
4 4
1 1
(C) mgR (D) 2 mgR (C) mgR (D) 2 mgR
2 2
007. The escape velocity at the surface of 007. MÝБm na nbm¶Z doJ H$m ‘mZ hmoJm
the moon is approximately. (bJ^J)
(A) 4 km/s (B) 24 km/s (A) 4 km/s (B) 24 km/s
(C) 2.4 km/s (D) 4.2 km/s (C) 2.4 km/s (D) 4.2 km/s
008. A person sitting in a chair in a sattelite 008. CnJ«h Ho$ AÝXa Hw$gu na ~¡R>m hþAm AmX‘r
feels weightless because– ^mahrZVm H$m AZw^d H$aVm h¡ ³¶m|{H$
(A) the person in the satellite is not (A) CnJ«h Ho$ AÝXa ~¡R>m hþAm AmX‘r
attracted. AmH$f©U Zht AZw^d H$aVm&
(B) the normal force is zero. (B) A{^bå~ ~b H$m ‘mZ eyݶ h¡&
(C) the earth does not attract the (C) CnJ«h Ho$ AÝXa H$s dñVwAm| H$mo n¥Ïdr
objects in a satellite AmH${f©V Zht H$aVr&
(D) the normal force by the chair (D) Hw$gu Ho$ Ûmam bJm¶m J¶m A{^bå~
on the person balances the earth ~b AmX‘r Ho$ dOZ H$mo g§Vw{bV H$a
attraction. boVm h¡&
009. The quantities remaining constant in a 009. {H$gr Q>³H$a (Collision) ‘| pñWa hmoVm h¡
collision are– (A) g§doJ, J{VO COm© Am¡a Vmn‘mZ
(A) momentum, kinetic energy and (B) g§doJ, J{VO COm© bo{H$Z Vmn‘mZ Zht
temperature
(C) g§doJ Am¡a Vmn‘mZ bo{H$Z J{VO COm©
(B) momentum, kinetic energy but not
Zht
temperature.
(D) Ho$db g§doJ, Z {H$ J{VO COm© Am¡a
(C) momentum and temperature but not
kinetic energy. Z Vmn‘mZ
(D) momentum but neither kinetic
energy nor temperature.
3 - CA ] [4] [ Contd...
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010. In an inelastic collision 010. {H$gr Aà˶mñW Q>³H$a ‘|-
(A) the initial kinetic energy is equal (A) Amapå^H$ J{VO COm© ~am~a hmoVr h¡
to the final kinetic energy. A§{V‘ COm© Ho$
(B) the final kinetic energy is less than (B) A§ { V‘ J{VO COm© H$‘ hmo V r h¡
the initial kinetic energy. Amapå^H$ J{VO COm© go
(C) kinetic energy remains constant. (C) J{VO COm© pñWa hmoVr h¡&
(D) the kinetic energy first increases (D) J{VO COm© nhbo ~‹T>Vr h¡ {’$a H$‘
and then decreases. hmoVr h¡&
011. The work done by all the forces 011. {H$gr {ZH$m¶ na bJm¶o ~b (Am§V[aH$ Am¡a
(internal and external) on a system ~mø) Ûmam {H$¶m J¶m H$m¶© hmoVm h¡ {ZåZ
equals the change in ‘| n[adV©Z
(A) total energy (A) Hw$b D$Om©
(B) kinetic energy (B) J{VO D$Om©
(C) potential energy (C) pñW{VO D$Om©
(D) none of these (D) BZ‘| go H$moB© Zht
012. One atmospheric pressure is equal to the 012. EH$ dm¶w‘§S>br¶ Xm~ ~am~a hmoVm h¡
(A) 1.01 × 105 Pa (A) 1.01 × 105 Pa
(B) 1.01 × 107 Pa (B) 1.01 × 107 Pa
(C) 1.01 × 10–5 Pa (C) 1.01 × 10–5 Pa
(D) 10.01 Pa (D) 10.01 Pa
013. The atmosphere of the earth is spread 013. n¥Ïdr H$m dm¶w‘§S>b bJ^J hmoVm h¡
upto a height of about (A) 20 km H$s C±MmB© VH$
(A) 20 km
(B) 100 km H$s C±MmB© VH$
(B) 100 km
(C) 200 km H$s C±MmB© VH$
(C) 200 km
(D) 2000 km (D) 2000 km H$s C±MmB© VH$
014. The specific heat of solids at high 014. A{YH$ Vmn na {H$gr R>mog H$s {d{eîQ>
temperature is roughly equal to D$î‘m hmoVr h¡- bJ^J
(A) R (B) 2R (A) R (B) 2R
(C) 3R (D) 6R (C) 3R (D) 6R
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015. The molar specific heat of monoatomic 015. {H$gr EH$na‘mUwH$ AmXe© J¡g H$s ‘moba
ideal gas is equal to {d{eîQ> Cî‘m hmoVr h¡
3 1 3 1
(A) R (B) R (A) R (B) R
2 2 2 2
2 2
(C) 3R (D) R (C) 3R (D) R
3 3
016. As the temperature of a solid approaches 016. ¶{X {H$gr R>mog H$m Vmn‘mZ eyݶ H¡$b{dZ
absolute zero temperature then the (0 K) Ho$ nmg nhþ±MVm h¡ Vmo CgH$s
specific heat {d{eîQ> D$î‘m hmoJr-
(A) approaches zero (A) eyݶ Ho$ nmg nhþ±MoJm
(B) increases (B) A{YH$ hmoJm
(C) remains constant at 3R (C) 3R na pñWa ahoJm
(D) none of these (D) BZ‘| go H$moB© Zht&
017. The first law of thermodynamics is a 017. Cî‘mJ{VH$s H$m àW‘ {gÕmÝV {H$g g§ajU
statement of conservation of H$mo {Zê${nV H$aVm h¡?
(A) momentum (A) g§doJ
(B) kinetic energy (B) J{VO COm©
(C) potential energy (C) pñW{VO COm©
(D) total energy (D) Hw$b COm©
018. To remove the backlash - error, the 018. ñH«y$JoO ‘| back-Lash (níMVm) Ìw{Q> H$mo
screw should be rotated Xÿa H$aZo Ho$ {bE Cgo Kw‘mZm Mm{hE
(A) in the same direction always (A) EH$ hr {Xem ‘| h‘oem
(B) in the opposite direction (B) {dnarV {Xem ‘|
(C) first clockwise and then (C) nhbo K‹S>r H$s gyB© H$s {Xem ‘| {’$a
anticlockwise {dnarV {Xem ‘|
(D) first anticlockwise and then (D) nhbo K‹S>r H$s gyB© H$s {dnarV {Xem
clockwise ‘| {’$a K‹S>r H$s gyB© H$s {Xem ‘|
019. Pitch of screw gauge is defined as 019. {H$gr ñH«y$JoO Ho$ {nM H$mo n[a^m{fV H$aVo
(A) linear distance travelled by screw h¢
in one half rotation. (A) ñH«y$ Ûmam AmYo Kw‘md ‘| V¶ H$s J¶r
(B) linear distance travelled by the
aoIr¶ Xÿar
(B) ñH«y$ Ûmam EH$ nyao Kw‘md ‘| V¶ H$s
screw in one complete rotation.
J¶r aoIr¶ Xÿar
(C) linear distance travelled by the screw
(C) ñH«y$ Ûmam Xmo Kw‘md ‘| V¶ H$s J¶r
in two complete rotation. aoIr¶ Xÿar
(D) none of these (D) BZ‘| go H$m§B© Zht&
3 - CA ] [6] [ Contd...
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020. Saturation vapour pressure of water at 020. 100°C na nmZr H$m g§V¥á dmîn X~md hmoJm
100°C is roughly bJ^J
(A) 100 torr (B) 700 torr (A) 100 torr (B) 700 torr
(C) 760 torr (D) 860 torr (C) 760 torr (D) 860 torr
021. The dew point is the temperature at 021. Dew point (Amog {~ÝXþ) dh Vmn‘mZ h¡
which {Og na
(A) the saturation vapour pressure (A) g§V¥á dmîn Xm~ ~am~a h¡ dV©‘mZ dmîn
is equal to the present vapour
Xm~ Ho$
pressure.
(B) g§V¥á dmîn Xm~ dV©‘mZ dmîn Xm~
(B) the saturation vapour pressure
doubles the present vapour pressure.
H$m Xmo JwZm
(C) the saturation vapour pressure is (C) g§V¥á dmîn Xm~ dV©‘mZ dmîn Xm~
half of the present vapour pressure. H$m AmYm
(D) none of these. (D) BZ‘| go H$moB© Zhr&
022. The specific heat capacity of ice roughly 022. ~’©$ H$s {d{eîQ> D$î‘m Ym[aVm bJ^J hmoVr
equal to h¡&
(A) 1.0 Cal/g–°C (A) 1.0 Cal/g–°C
(B) 2.0 Cal/g–°C (B) 2.0 Cal/g–°C
(C) 0.5 Cal/g–°C (C) 0.5 Cal/g–°C
(D) 0.05 Cal/g–°C (D) 0.05 Cal/g–°C
023. The thermal conductivity of a rod 023. {H$gr ~obZmH$ma R>mog (rod) H$s Cî‘m
depends on MmbH$Vm {Z^©a H$aVr h¡
(A) length (A) bå~mB© na
(B) mass (B) Ðì¶‘mZ na
(C) area of cross-section (C) H$mQ> joÌ’$b na
(D) material of the rod (D) N>‹S> Ho$ nXmW© na
024. A body cools down from 65°C to 60°C 024. EH$ dñVw 65°C go 60°C Vmn na 5 {‘ZQ>
in 5 minutes. It will cool down from ‘| R>§S>r hmoVr h¡ Vmo 60°C go 55°C VH$
60°C to 55°C in R>§S>r hmoJr&
(A) 5 minutes (A) 5 {‘ZQ> ‘|
(B) less than 5 minutes (B) 5 {‘ZQ> go H$‘ g‘¶ ‘|
(C) more than 5 minutes (C) 5 {‘ZQ> go Á¶mXm g‘¶ ‘|
(D) can not be predicted (D) AmH$bZ Zht {H$¶m Om gH$Vm
3 - CA ] [7] [ P.T.O.
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025. Newton’s law of cooling is special case 025. ݶyQ>Z H$m erVbZ {gÕmÝV EH$ {deof pñW{V
of h¡
(A) Wien’s displacement law (A) drZ Ho$ {dñWmnZ {Z¶‘ H$s
(B) Kirchoff’s law (B) {H$aMm’$ H$m {gÕmÝV
(C) Stefan’s law (C) pñQ>’$mZ H$m {gÕmÝV
(D) Planck’s law (D) ßb¢H$ H$m {gÕmÝV
026. Ionic ratio of hydrogen and oxygen in 026. Ob ‘| hmBS´>moOZ Am¡a Am°³grOZ H$m
water is Am¶VZmË‘H$ AZwnmV h¡&
(A) 1:2 (B) 1:4 (A) 1:2 (B) 1:4
(C) 2:1 (D) 4:1 (C) 2:1 (D) 4:1
027. Which one of the following is chemical 027. {ZåZ{b{IV ‘| H$m¡Z EH$ amgm¶{ZH$ Cd©aH$
fertilizer? h¡&
(A) Urea (A) ¶y[a¶m
(B) Sodium Nitrate (B) gmo{S>¶‘ Zm¶Q´>oQ>
(C) Ammonium Sulphate (C) A‘mo{Z¶‘ gë’o$Q>
(D) All of above (D) Cnamo³V g^r
028. Formula of nitric acid is 028. ZmB{Q´>H$ Aåb H$m gyÌ h¡-
(A) HNO3 (B) NH3 (A) HNO3 (B) NH3
(C) H2SO4 (D) NO2 (C) H2SO4 (D) NO2
029. Which one is not the allotropic of 029. Bg‘| go H$m¡Z EH$ ’$m°ñ’$moag H$m Anaê$n
phosphorus. Zht h¡-
(A) White Phosphorus (A) g’o$X ’$m°ñ’$moag
(B) Purple Phosphorus (B) ~¡JZr ’$m°ñ’$moag
(C) Red Phosphorus (C) bmb ’$m°ñ’$moag
(D) Blue Phosphorus (D) Zrbm ’$m°ñ’$moag
030. Ammonia gas is produced in laboratory 030. à¶moJembm ‘| A‘mo{Z¶m J¡g {ZåZ{b{IV
from the following– A{^H$‘©H$mo go ~Zm¶r OmVr h¡-
(A) NH4NO3 (A) NH4NO3
(B) NH4Cl + Ca(OH)2 (B) NH4Cl + Ca(OH)2
(C) NH4OH (C) NH4OH
(D) (NH4)2SO4 (D) (NH4)2SO4
3 - CA ] [8] [ Contd...
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031. Molecular formula of glucose is– 031. ½byH$mog H$m AmpÊdH$ gyÌ h¡&
(A) C6H12O6 (B) (C6H10O5)n (A) C6H12O6 (B) (C6H10O5)n
(C) C12H22O11 (D) None of these (C) C12H22O11 (D) Bg‘| go H$moB© Zht&
032. Which of the following ions will cause 032. {ZåZ{b{IV ‘| H$m¡Z Am¶Z nmZr H$s H$R>moaVm
hardness of water sample? H$m H$maU h¡&
(A) Ca2+ (B) Na+ (A) Ca2+ (B) Na+
(C) Cl– (D) K+ (C) Cl– (D) K+
033. Which one of the following is present 033. {da§OZ {H«$¶m Ho$ {bE {da§OZ nmCS>a ‘|
as an active ingredient in bleaching g{H«$¶ g§KQ>H$ H$m¡Z gm h¡-
powder for belching action?
(A) Ca2OCl2 (B) Ca(OCl)2
(A) Ca2OCl2 (B) Ca(OCl)2
(C) CaO2Cl (D) CaCl2
(C) CaO2Cl (D) CaCl2
034. The commercial name of colon is 034. H$mbJZ {H$gH$m ì¶mdgm{¶H$ Zm‘ h¡?
(A) Ion exchange resins (A) Am¶Z {d{Z‘¶ ao{OZ
(B) Sodium aluminum Sulphate (B) gmo{S>¶‘ Ebw{‘{Z¶‘ gë’o$Q>
(C) Sodium hydrogen Sulphate (C) gmo{S>¶‘ hmBS´>moOZ gë’o$Q>
(D) Sodium hexa meta phosphate (D) gmo{S>¶‘ ho³gm ‘oQ>m ’$m°ñ’o$Q>
035. Chlorine molecule is an example of 035. ³bmoarZ AUw CXmhaU h¡&
(A) Valency (A) g§¶moOH$Vm
(B) Electrovalency (B) d¡ÚwV g§¶moOH$Vm
(C) Co-ordinate valency (C) Cn-gh g§¶moOH$Vm
(D) Co-valency (D) gh-g§¶moOH$Vm
036. Which one of the following is the 036. {ZåZ{b{IV ‘| H$m¡Z EH$ g~go à~b jma
strongest base? h¡&
(A) C2H6 (B) KOH (A) C2H6 (B) KOH
(C) CaSO4 (D) Mg(OH)2 (C) CaSO4 (D) Mg(OH)2
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037. Glycerol is. 037. p½bgamob h¡-
(A) Monohydric alcohol (A) ‘moZmo hmB{S´>H$ EoëH$mohmob
(B) Dihydric alcohol (B) S>mB© hm{S´>H$ EëH$mohm°b
(C) Trihydric alcohol (C) Q´>mB hmB{S´>H$ EoëH$mohmob
(D) Poly hydric alcohol (D) ~hþhm{S´>H$ EëH$mohmob
038. Value of Avogadro”s number is– 038. AmdmoJmÐmo g§»¶m H$m ‘mZ hmoVm h¡&
(A) 60.23 × 1023 (A) 60.23 × 1023
(B) 6.023 × 1023 (B) 6.023 × 1023
(C) 6023 × 1023 (C) 6023 × 1023
(D) 602.3 × 1023 (D) 602.3 × 1023
039. Oxidation number of N in HNO3 039. HNO3 ‘| N H$s Am³grH$aU g§»¶m h¡&
(A) +5 (B) –5 (A) +5 (B) –5
(C) –3 (D) +3 (C) –3 (D) +3
040. Which form of sulphur is produced by 040. Ádmbm‘wIr nd©V go {ZH$bZo dmbr J§YH$
the volcano mountain. H$m ê$n h¡&
(A) H2S (B) H2SO4 (A) H2S (B) H2SO4
(C) CS2 (D) SO2 (C) CS2 (D) SO2
041. Bauxite is the ore of which metal. 041. ~m°³gmBQ> {H$g YmVw H$m A¶ñH$ h¡&
(A) Ca (B) Al (A) Ca (B) Al
(C) Fe (D) K (C) Fe (D) K
042. Acidic soil is called. 042. Aåbr¶ ‘¥Xm H$hbmVr h¡&
(A) More than 7 pH (A) nr-EM 7 go A{YH$ hmoZo na
(B) On 7 pH (B) nr-EM 7 hmoZo na
(C) Less than 7 pH (C) nr-EM 7 go H$‘ hmoZo na
(D) None of these (D) Bg‘| go H$moB© Zht
043. Formula of calcium carbonate is. 043. H¡$pëe¶‘ H$m~m}ZoQ> H$m gyÌ h¡&
(A) CaHCO3 (B) CaCl2 (A) CaHCO3 (B) CaCl2
(C) CaCO3 (D) CaSO4 (C) CaCO3 (D) CaSO4
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044. Number of carbon atom in benzene ring 044. ~|OrZ db¶ ‘| H$m~©Z na‘mUwAm| H$s g§»¶m
is. hmoVr h¡&
(A) 4 (B) 5 (A) 4 (B) 5
(C) 6 (D) 8 (C) 6 (D) 8
045. Baking soda is 045. ImZo H$m gmoS>m h¡&
(A) NaHCO3 (B) Na2CO3 (A) NaHCO3 (B) Na2CO3
(C) NaOH (D) none of these (C) NaOH (D) BZ‘| go H$moB© Zht&
046. Formula of urea is– 046. ¶y[a¶m H$m gyÌ h¡&
(A) CO(NH2)2 (A) CO(NH2)2
(B) (NH4)2CO3 (B) (NH4)2CO3
(C) NH2COONH4 (C) NH2COONH4
(D) NH3 (D) NH3
047. Which is formed when carbondioxide 047. H$m~©Z S>mB© Am³gmBS> Ob ‘| KwbH$a ~ZmVr
is dissolved in water h¡&
(A) CO2 (B) CO3 (A) CO2 (B) CO3
(C) H2CO3 (D) Na2CO3 (C) H2CO3 (D) Na2CO3
048. The highest saponification value is. 048. {ZåZ{b{IV ‘| go {H$gH$m gm~wZrH$aU ‘mZ
(A) Coconut oil A{YH$ hmoVm h¡&
(A) Zm[a¶b H$m Vob
(B) Castor oil
(B) AaÊS>r H$m Vob
(C) Linseed oil
(C) Abgr H$m Vob
(D) Cotton oil (D) H$nmg H$m Vob
049. What is used for the preparation of gun 049. ~mê$X ~ZmZo ‘| à¶w³V hmoVm h¡&
powder. (A) KCl (B) KNO3
(A) KCl (B) KNO3
(C) NaCO3 (D) NaCl
(C) NaCO3 (D) NaCl
050. Water reaction on calcium carbide 050. H¡$pëg¶‘ H$m~m©BS> na Ob H$s A{^{H«$¶m
produces. go ~ZVm h¡&
(A) Ammonia (B) Acetylene (A) A‘mo{Z¶m (B) E{g{Q>brZ
(C) Ethylene (D) None of these (C) E{WbrZ (D) Bg‘| go H$moB© Zht&
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AGRONOMY AND AGRICULTURAL BOTANY
051. Sugarcane breeding institute is situated 051. JÞm àOZZ g§ñWm CnpñWV h¡-
at (A) ‘wå~B© (B) {Xëbr
(A) Mumbai (B) Delhi
(C) Lucknow (D) Coimbatore (C) bIZD$ (D) H$moB‘~Qy>a
052. The cell wall is made up of – 052. gob H$s Xrdma ~Zr hmoVr h¡…
(A) fat (B) amino acid (A) ’¡$Q> (B) E‘rZmo E{gS>
(C) protein (D) cellulose (C) àmoQ>rZ (D) {gbwbmog
053. Potato is a modified – 053. Amby EH$ n[ad{V©V ............ h¡
(A) root (B) stem (A) O‹S> (B) VZm
(C) leaf (D) flower (C) nËVr (D) ’y$b
054. TPS is related to – 054. Q>r.nr.Eg. g§~§{YV h¡…
(A) onion (B) potato (A) ß¶mO (B) Amby
(C) garlic (D) tomato (C) bhgwZ (D) Q>‘mQ>a
055. Hill reaction is a part of – 055. {hb [aEH$eZ ^mJ h¡
(A) respiration (A) [ag{naoeZ
(B) cell division (B) gob {S>drOZ
(C) photosynthesis (C) àH$me g§íbofU
(D) none of these (D) BZ‘| go H$moB© Zht&
056. In photosynthesis, oxygen comes from – 056. ’$moQ>mo{gpÝW{gg ‘| Am³grOZ AmVr h¡
(A) carbon dioxide (A) H$m~©ZS>mB© Am³gmBS> go
(B) water (B) nmZr go
(C) both carbon dioxide and water (C) XmoZm| H$m~©ZS>mB© Am³gmBS> Am¡a nmZr go
(D) none of these (D) BZ‘| go H$moB© Zht&
057. The plants whose morphological 057. {OZ nm¡Ymo§ H$s ~mø AmH$maH$s¶ g‘mZ hmoVr
characters are same are called as – h¡ CZH$mo H$hVo h¢
(A) morphology (B) physiology (A) ‘ma’$mobmoOr (B) {’${O¶mobmoOr
(C) mimicry (D) none of these (C) ZH$bMr (D) BZ‘| go H$moB© Zht&
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Page 13
058. Mushroom is a form of – 058. Hw$H$a‘wÎmm EH$ àH$ma H$m hmoVm h¡…
(A) Fungus (A) ’§$Jg ¶ H$dH$
(B) Bacteria (B) ~¡H$Q>r[a¶m
(C) Virus (C) dmBag
(D) none of these (D) BZ‘o§ go H$moB© Zhr§&
059. The power house of cell is – 059. gob H$s D$Om© Ka hmoVr h¡
(A) protoplasm (B) ribosome (A) àmoQ>mo ßbmñ‘ (B) [a~mogmo‘
(C) mitochondria (D) nucleoplasm (C) ‘mBQ>moWmopÝS>¶m (D) ݶy{gbmo ßbmí‘
060. In cell division, crossing over occurs at– 060. gob ~§Q>dmam ‘| H«$mqgJ Amoda nhþ±MmVr h¡…
(A) pachytene stage (A) n¡MoQ>rZ ñQ>oO
(B) zygotene stage (B) OmBJmoQ>oZ ñQ>oO
(C) leptotene stage (C) {bnQ>moQ>oZ ñQ>oO
(D) diplotene stage (D) {S>nbmoQ>o ñQ>oO
061. The meotic cell division occurs in – 061. {‘¶mo{Q>H$ gob ~§Q>dmam hmoVm h¡…
(A) body cells (A) ~mS>r goëg
(B) sperm cells (B) ñn‘© goëg
(C) ova cells (C) Amodm goëg
(D) both sperm and ova cells (D) XmoZm| ñn‘© Am¡a Amodm goëg
062. The dark reaction is associated with – 062. S>mH©$ [aE³eZ gå~{ÕV h¡…
(A) cell division (A) gob {S>drOZ go
(B) transpiration (B) Q´>mÝg{naoeZ go
(C) photosynthesis (C) ’$moQ>mo g¡Ýg{Wg go
(D) respiration (D) aog{naoeZ go
063. The term gynophores is related to crop – 063. JmBZmo’$moag eãX gå~Õ h¡…
(A) gram (B) groundnut (A) MZm go (B) ‘y±J’$br go
(C) rice (D) cotton (C) YmZ go (D) H$nmg go
064. The term curing is related to – 064. eãX ³¶y[a¨J gå~Õ h¡
(A) tobacco (B) groundnut (A) Vå~mHy$ go (B) ‘y±J’$br go
(C) rice (D) cotton (C) YmZ go (D) H$nmg go
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Page 14
065. In protein synthesis, DNA to RNA is 065. àmoQ>rZ ~ZZo H$s {H«$¶m ‘|, S>r.EZ.E. go Ama.
formed by process – EZ.E. ~ZVo g‘¶ {H$gH$m à¶moJ hmoVm h¡&
(A) transcription (A) Q´>mÝg{H«$neZ
(B) translation (B) Q´>mÝgboeZ
(C) both transcription and translation (C) XmoZmo Q´>mÝg{H«$neZ Ed§ Q´>mÝgboeZ
(D) none of these (D) BZ‘| go H$moB© Zht&
066. The algal bloom is related to – 066. AbJb ãby‘ gå~Õ h¡…
(A) decrease of BOD (A) ~r.Amo.S>r. Ho$ H$‘ hmoZo go
(B) presence of nitrogen fertilizers in (B) Obme¶ ‘| ZmBQ´>moOZ ’$Q>ubmBOa H$s
water bodies CnpñW{V ‘|
(C) excessive algae growth (C) EbJr H$s A{YH$ ~‹T>moÎmar go
(D) all the options (D) g^r {dH$ën
067. Global warming is related to 067. ½bmo~b ~m{‘ªJ gå~Õ h¡…
(A) oxygen (A) Am³grOZ go
(B) nitrogen (B) ZmBQ´>moOZ go
(C) carbon dioxide (C) H$m~©ZS>mB© Am³gmBS>
(D) water vapours (D) dmQ>a dona
068. Ozone protect us from – 068. AmoOmoZ h‘mar ajm H$aVm h¡…
(A) X rays (A) E³g-{H$aUm| go
(B) microwaves (B) ‘mBH«$modod go
(C) UV rays (C) ¶y.dr. {H$aUm| go
(D) gamma rays (D) Jm‘m {H$aUm| go
069. The maize protein is called – 069. ‘³H$m H$m àmoQ>rZ H$hbmVm h¡…
(A) leucine (B) tryptophan (A) {b¶mo{gZ (B) bmB{gZ
(C) lysine (D) Zein (C) Q´>mB©nQ>mo’$mZ (D) qOBZ
070. The green colour of plants is due to 070. ham a§J nm¡Ymo ‘| hmoVm h¡…
(A) xanthophyll (B) lycopene (A) EZW«mo{’$b go (B) bmBgmonrZo go
(C) chlorophyll (D) carotene (C) ³bmoamo{’$b go (D) H$mamoQ>rZo go
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Page 15
071. Which irrigation method has maximum 071. H$m¡Z gr qgMmB© {d{Y g~go A{YH$ Ob
water use efficiency (WUE). Cn¶moJ j‘Vm dmbr h¡…
(A) flood irrigation (A) ~m‹T> qgMmB© {d{Y
(B) drip irrigation (B) Q>nH$ qgMmB© {d{Y
(C) sprinkler irrigation (C) ’$m¡dmam qgMmB© {d{Y
(D) check basin method (D) MoH$ ~o{gZ qgMmB© {d{Y
072. What is common irrigation source in 072. CÎma àXoe ‘| gm‘mݶV… qgMmB© Ho$ lmoV
Uttar Pradesh ³¶m h¡…
(A) tubewell or borewell (A) Q>çw~ dob ¶m ~moa~ob
(B) canal (B) Zha
(C) guls (C) Jwëg
(D) none of these (D) Cnamo³V H$moB© Zht&
073. Oryza sativa is the scientific name of – 073. AmoamBOm gOmBdm d¡km{ZH$ Zm‘ h¡…
(A) lentil (B) rice (A) ‘gya (B) YmZ
(C) bajra (D) potato (C) ~mOam (D) Amby
074. The chromosome no. of wheat is 074. Joh±ÿ H$m H«$m‘moOmo‘ Zå~a h¡
(A) 2n = 24 (B) 2n = 42 (A) 2n = 24 (B) 2n = 42
(C) 2n = 20 (D) 2n = 40 (C) 2n = 20 (D) 2n = 40
075. The most commonly used Nitrogen 075. g~go Á¶mXm à¶moJ H$s OmZo dmbr ZÌOZ
source of fertilizer is – ImX H$m BñVo‘mb hmoVm h¡
(A) Ammonium nitrate (A) A‘mo{Z¶‘ ZmBQ´>oQ>
(B) Diammonium phosphate (B) S>mB© A‘mo{Z¶‘ ’$mñ’o$Q>
(C) Urea (C) ¶y[a¶m
(D) none of these (D) Cnamo³V H$moB© Zht
076. The king of fruit is – 076. ’$bm| H$m amOm h¡…
(A) watermelon (B) banana (A) Va~yO (B) Ho$bm
(C) Am‘ (D) brMr
(C) litchi (D) mango
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077. The vertical section of soil is called as– 077. {‘Å>r H$m D$Üdm©Ya go³gZ H$hbmVm h¡…
(A) soil structure (A) {‘Å>r H$m ñQ´>³Ma
(B) soil texture (B) {‘Å>r H$m Q>o³Ma
(C) soil profile (C) {‘Å>r H$s àmo’$mBb
(D) Both soil structure and soil texture (D) XmoZm| {‘Å>r H$m ñQ´>³Ma Am¡a Q>o³Ma
078. Read the statements and answer the 078. {X¶o J¶o H$WZ H$mo n‹T>| Am¡a CgrZwgma CÎma
questions accordingly X|
(1) Barren soil is eroded more than (1) ~§Oa ^y{‘ H$m jaU Kmg go ^ar ^y{‘
grass covered soil go A{YH$ hmoVm h¡&
(2) Grasses interrupt with splash
(2) Kmg ñnobg ^y{‘ N>aU H$mo amoH$Vr h¡&
erosion of soil
(A) (2) ‘| {X¶m J¶m H$WZ (1) ‘| {XE
(A) statement (2) is correct explanation
JE H$WZ H$mo ghr R>hamVm h¡&
of statement (1)
(B) XmoZm| (1) Am¡a (2) JbV h¢&
(B) Both (1) and (2) are wrong
(C) H$WZ (1) ghr h¡ naÝVw H$WZ (2)
(C) Statement (1) is correct but
statement (2) is wrong JbV h¡
(D) None of these (D) Cnamo³V H$moB© Zht&
079. The common ratio of N:P:K for field 079. ‘¡XmZr ’$gbm| ‘| gm‘mݶV… EZ.nr.Ho$. H$m
crops is – AZwnmV hmoVm h¡
(A) 1:2:4 (B) 4:2:2 (A) 1:2:4 (B) 4:2:2
(C) 1:2:3 (D) 4:2:1 (C) 1:2:3 (D) 4:2:1
080. The kisan khad is – 080. {H$gmZ ImX h¡…
(A) CAN (Calcium ammonium nitrate) (A) H¡$b{e¶‘ A‘mo{Z¶‘ ZmBQ´>oQ>
(B) Urea (B) ¶y[a¶m
(C) DAP (C) S>r.E.nr.
(D) SSP (D) Eg.Eg.nr.
081. The best method of irrigation in fruit 081. ’$bm| H$s IoVr ‘| g~go AÀN>r qgMmB©
crops is – {d{Y h¡
(A) drip irrigation (A) Q>nH$ qgMmB©
(B) basin method (B) ~o{gZ {d{Y
(C) check basin method (C) MoH$ ~o{gZ {d{Y
(D) none of these (D) Cnamo³V H$moB© Zht&
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Page 17
082. Khaira disease is a common disease of – 082. I¡am ~r‘mar gm‘mݶV… hmoVr h¡…
(A) Wheat (B) Rice (A) Johÿ± ‘| (B) YmZ ‘|
(C) Maize (D) Potato (C) ‘³H$m ‘| (D) Amby ‘|
083. “Jethro Tull” is the father of – 083. ""OoWamo Vwb'' {nVm h¢
(A) Weeds (A) IanVdmam| H$m
(B) Soil (B) ^y{‘ H$m
(C) Drip irrigation (C) {S´>n qgMmB© H$m
(D) TPS (D) Q>r.nr.Eg. H$m
084. The source of organic fertilizer is 084. H$m~}{ZH$ Cd©aH$ H$m lmoV h¡…
(A) urea (A) ¶y[a¶m
(B) cowdung (B) Jmo~a
(C) vermi compost (C) Ho$MwE H$s ImX
(D) DAP (D) S>r.E.nr.
085. The source of organic manure is– 085. H$m~}{ZH$ ImX H$m lmoV h¡…
(A) urea (B) cowdung (A) ¶y[a¶m (B) Jmo~a
(C) SSP (D) DAP (C) Eg.Eg.nr. (D) S>r.E.nr.
086. The harmone require for ripening of 086. ’$bm| H$mo nH$mZo ‘| {H$g hma‘moZ H$s Oê$aV
fruits – h¡…
(A) Ethylene (B) GA (A) BWbrZ (B) Or.E.
(C) ABA (D) NAA (C) E.~r.E. (D) EZ.E.E.
087. The Kharif season starts from – 087. Iar’$ H$m ‘m¡g‘ ewê$ hmoVm h¡…
(A) June/July (A) OyZ/OwbmB©
(B) October/November (B) A³Qy>~a/Zdå~a
(C) February/March (C) ’$adar/‘mM©
(D) None of these (D) BZ‘| go H$moB© Zht&
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088. The first Agriculture university of India– 088. ^maV H$m àW‘ H¥${f {díd{dÚmb¶ h¡&
(A) Chandra Shekhar Azad University (A) eoIa AmOmX H¥${f Ed‘² VH$ZrH$s
of Agriculture and Technology {díd{dÚmb¶
(B) Banaras Hindu University (B) ~Zmag {hÝXÿ {díd{dÚmb¶
(C) Sardar Vallabh Bhai Patel University (C) gaXma ~ëb^ ^mB© nQ>ob H¥${f Ed‘²
of Agriculture and Technology VH$ZrH$s {díd{dÚmb¶
(D) G.B. Pant University of Agriculture (D) Or.~r. nÝV H¥ $ {f Ed‘² VH$ZrH$s
and Technology {díd{dÚmb¶
089. The father of green revolution – 089. h[aV H«$mpÝV Ho$ OZH$
(A) Jethro Tull (A) OoWamo Vwb
(B) M. S. Swaminathan (B) E‘. Eg. ñdm‘rZmWZ
(C) Peter de Cresenzi (C) n|Q>a S>r {H«$gZOr
(D) None of these (D) BZ‘| go H$moB© Zht&
090. The permanent wilt point of common 090. ñWm¶r ‘waPmZ {~ÝXÿ gm‘mݶV… ’$gbr IoVr
field crops is – ‘| hmoVm h¡…
(A) 0 bar (B) – 0.33 bar (A) 0 ~ma (B) – 15 ~ma
(C) – 15 bar (D) – 48 bar (C) – 0.33 ~ma (D) – 48 ~ma
091. Onion and garlic is the example of – 091. ß¶mO Am¡a bhgwZ CXmhaU h¡…
(A) Biennial crop (A) Xmo dfu¶ ’$gb
(B) Annual crop (B) EH$ dfu¶ ’$gb
(C) Perennial crop (C) ~hþ dfu¶ ’$gb
(D) None of these (D) BZ‘| go H$moB© Zht&
092. The mimicry weed of rice is – 092. ZH$bMr IanVdma YmZ ‘| hmoVm h¡…
(A) Chenopodium album (A) MoZmonmo{S>¶‘ Eb~‘
(B) Celosia argentia (B) {gbmo{g¶m AgmopÝQ>¶m
(C) Echinochloa crusgalli (C) BMmoZmoMbmodm
(D) Phalaris minor (D) {’$bmag ‘mBZa
093. The dominancy of iron and aluminium 093. bmohm Ed‘² Aë¶y{‘{Z¶‘ H$m dM©íd A{YH$
is more at – hmoVm h¡…
(A) basic pH (B) neutral pH (A) jmar¶ pH (B) CXmgrZ pH
(C) acidic pH (D) both (A) and (B) (C) Aåbr¶ pH (D) XmoZm| (A) Am¡a (B)
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Page 19
094. The hormone reponsible for detachment 094. ’$bm| Am¡a n{Îm¶m| H$m no‹S> go {JaZo H$m
of fruits and leaves from plant is – {Oå‘oXma hm‘m}Z hmoVm h¡…
(A) ABA (B) GA (A) E.~r.E. (B) Or.E.
(C) NAA (D) Ethylene (C) EZ.E.E. (D) BWbrZ
095. The word SRI stands for – 095. dm³¶ Eg.Ama.AmB©. H$m gma h¡…
(A) Sub regional institute (A) g~ arOZb B§ñQ>rQ>çyQ>
(B) State rice institute (B) ñQ>oQ> amBg B§ñQ>rQ>çyQ>
(C) State research institute (C) ñQ>oQ> [agM© B§ñQ>rQ>çyQ>
(D) System of Rice intensification (D) {gñQ>‘ Am’$ amBg BÝQ>|gr{’$Ho$eZ
096. The grain sugar is called as – 096. XmZm| H$s eH$a H$mo H$hVo h¢…
(A) sucrose (B) galactose (A) gwH«$moO (B) JbmH$Q>moO
(C) maltose (D) lactose (C) ‘mbQ>moO (D) b¡H$Q>moO
097. The flower of sugarcane is called as – 097. JÞo Ho$ ’y$bm| H$mo H$hVo h¢…
(A) flower (B) siliqua (A) ’y$b (B) {g{b³dm
(C) tassel (D) arrow (C) Q>eb (D) Eoamo
098. The plants which produces flowers, 098. nm¡Yo Omo{H$ 9 K§Q>o H$s {XZ H$s amoeZr ¶m
fruits and seeds at less than or equal H$‘ g‘¶ ‘| ’$b ’y$b VWm ~rO ~ZmVo
to 9 hours day light are called as – h¢, H$hbmVo h¢…
(A) short day plants (A) gmQ>© S>o ßbmÝQ>g
(B) long day plants (B) bm±J S>o ßbmÝQ>g
(C) day neutral plants (C) S>o ݶyQ>ab ßbmÝQ>g
(D) none of these (D) BZ‘| go H$moB© Zhr&
099. Jack fruit is a – 099. H$Q>hb h¡…
(A) vegetable (B) fruit (A) dZñn{V (B) ’$b
(C) grass (D) none of these (C) Kmg (D) BZ‘| go H$moB© Zht&
100. The pulse which does not do nitrogen 100. Xmb Omo {H$ ZmBQ´>moOZ H$mo O‘m Zht H$aVr
fixation is – h¡…
(A) lobia (B) gram (A) bmo{~¶m (B) MZm
(C) arhar (D) Rajma (C) Aaha (D) amO‘m
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AGRICULTURAL ENGINEERING AND STATISTICS
101. The body of indigenous plough is used 101. Xoer hb H$s ~m‹S>r go {ZåZ {hñgo Ow‹S>o
to attach. hmoVo h¡&
(A) Handle (A) ‘w{R>¶m
(B) Beam (B) h[ag
(C) Shoe and share (C) gy Am¡a ’$mb
(D) All of the above (D) Cnamo³V g^r
102. The depth of indigenous plough is 102. Xoer hb H$s JhamB© H$mo H$‘ ¶m Á¶mXm
adjusted by – {H$¶m OmVm h¡&
(A) Changing the rope length (A) añgr H$s bå~mB© H$‘ ¶m Á¶mXm H$aHo$
(B) Changing the point of hitch (Clevis) (B) h[ag na H$bo{dg Ho$ {N>Ð Ho$ ~XbZo
on beam go
(C) Lowing or raising axis of shoe (C) ey Ho$ Ep³gg H$mo ~mS>r go ZrMm ¶m
with respect to the body D±$Mm H$aHo$
(D) All of the above (D) Cnamo³V g^r
103. Plough bottom of mould board plow 103. ‘moëS> ~moS>© hb Ho$ ßbmC ~mQ>‘ go {ZåZ
consist of ^mJ Ow‹S>o hmoVo h¢&
(A) Mould Board (B) Share (A) ‘moëS> ~moS>© (B) ’$mb
(C) Land side (D) All of the above (C) b¢S> gmBS> (D) Cnamo³V g^r
104. Share, land side and mould board are 104. ’$mb b¢S> gmBS> Am¡a ‘moëS> ~moS>© Ow‹S>o hmoVo
attached with. h¢&
(A) Frog (B) Body (A) ’«$m°J go (B) ~mS>r go
(C) Beam (D) Gunnel (C) h[ag go (D) JZob go
105. Main function of mould board plow in. 105. {‘Q²>Q>r nbQ>Zo dmbo hb H$m ‘w»¶ H$m¶© h¡&
(A) Pulverise soil (A) {‘Q²>Q>r ^wa^war H$aZm
(B) To cut, lift and turn the soil (B) {‘Q²>Q>r H$mQ>Zm, CR>mZm Am¡a {‘Q²>Q>r
nbQ>Zm
(C) Both (A) and (B)
(C) XmoZmo (A) Am¡a (B)
(D) None of the above
(D) Cnamo³V ‘| Zht
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106. Standard disc plow is used for deep 106. ñQ>¡S>S>© {S>ñH$ hb go OwVmB© {ZåZ a|O ‘|
plowing in the range of. H$s OmVr h¡&
(A) 15-20 cm (B) 20-25 cm (A) 15-20 cm (B) 20-25 cm
(C) 25-30 cm (D) 30-50 cm (C) 25-30 cm (D) 30-50 cm
107. Which one is part of mould board plow 107. ‘moëS> ~moS>© hb Ho$ ’$mb Ho$ ^mJ h¡&
share. (A) qdJ Am’$ ’$mb
(A) Wing of share
(B) ³brdoO EO
(B) Cleavage edge
(C) JZob
(C) Gunnel
(D) Cnamo³V g^r
(D) All of the above
108. The objective of conventional tillage 108. nmaån[aH$ OwVmB© H$m CÔoí¶ h¡&
are to –
(A) ^y{‘ H$Q>md H$‘ H$aZm
(A) Reduce soil erosion
(B) Increase water holding capacity of (B) ^y{‘ ‘| nmZr amoH$Zo H$s j‘Vm ~‹T>mZm
soil (C) ^y{‘ ‘| øy‘g ~‹T>mZm
(C) Add more humus to soil
(D) Cnamo³V g^r
(D) All of the above
109. Which one of the following is secondary 109. BZ‘| go H$m¡Z goHo$ÝS>ar OwVmB© H$m ¶§Ì h¡&
tillage equipment. (A) g~ñdmba
(A) Sub-soiler
(B) H$ëQ>rdoQ>a
(B) Cultivator
(C) {MOob hb
(C) Chirsel plow
(D) Cnamo³V ‘| go H$moB© Zhr&
(D) None of the above
110. Which of the following is used for 110. BZ‘| go H$m¡Z ¶§Ì {‘Å>r ^wa^war/T>obo H$s
pulverizing / reducing the clod size gmBO N>moQ>r H$aZo Ho$ {b¶o à¶moJ hmoVm h¡&
(A) Disc harrow (A) {S>ñH$ h¡amo
(B) Planker (B) ßb¢H$a
(C) Clod crusher (C) ³bmS> H«$ea (T>obm Vmo‹S>Zo H$m ¶§Ì)
(D) All of the above (D) Cnamo³V g^r
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111. Mould board share is made of 111. {‘Å>r nbQ>Zo dmbo hb H$m ’$mb ~Zm hmoVm
(A) Cast iron h¡&
(A) T>bwE bmoho H$m
(B) Pig iron
(B) {nJ AmBaZ H$m
(C) Chilled cast iron
(C) {MëS> H$mñQ> AmBaZ
(D) None of the above
(D) Cnamo³V ‘| go H$moB© Zht&
112. In sticky soil the mould board used is. 112. {MnH$Zo dmbr {‘Å>r ‘| {ZåZ ‘| go H$m¡Z
(A) Breaker type EH$ ‘moëS> ~moS>© Cn¶moJ ‘| bm¶m OmVm h¡&
(A) ~«oH$a Q>mBn
(B) Slat type
(B) ñboQ> Q>mBn
(C) Stubble type
(C) ñQ>dwb Q>mBn
(D) General purpose type (D) OZab Q>mBn
113. Type of rolling coulters are. 113. amo{b§J H$moëQ>a {ZåZ àH$ma Ho$ hmoVo h¢&
(A) Smooth edge type (A) {MH$Zr {H$Zmao dmbr
(B) Notched edge type (B) H$Q>o {H$Zmao (Notched edge) dmbr
(C) Fluted edge type (C) âbwQ>oS> {H$Zmao dmbo
(D) All of the above (D) Cnamo³V g^r
114. One hectare area is equal to 114. EH$ ho³Q>oa H$m joÌ’$b hmoVm h¡&
(A) 1000 m2 (A) 1000 m2
(B) 10,000 m2 (B) 10,000 m2
(C) 100,000 m2 (C) 100,000 m2
(D) None of the above (D) Cnamo³V ‘o§ go H$moB© Zht&
115. Area covered by a plow in one hour 115. EH$ hb Ho$ Ûmam EH$ K§Q>o ‘| IoV H$s
is equal in m2 OwVmB© hmoVr h¡ m2 ‘|
(A) Width of cut by plow in meter per (A) hb H$s Mm¡‹S>mB© ‘r. ‘|
hour (B) hb H$s J{V ‘r. à{V K§Q>o ‘|
(B) Speed of plow in meter per hour (C) hb H$s Mm¡‹S>mB© ‘r. × hb H$s J{V
(C) Width of cut in m × speed of
‘rQ>a à{V K§Q>o
plow in m per hour
(D) hb H$s Mm¡‹S>mB© cm × hb H$s J{V
(D) Width of cut of plow in cm ×
{H$.‘r. à{V K§Q>o
speed of plow in km per hour.
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Page 23
116. Tractor operated plow cutting width is 116. EH$ Q>¡³Q´>a g§Mm{bV hb H$s Mm¡‹S>mB© 1 ‘rQ>a
1 m and operating speed is 4.5 km per h¡ Am¡a ¶h 4.5 {H$.‘r./K§Q>o H$s J{V go
hour. Area will be covered in 8 hours Mbm¶m Om ahm h¡& ¶h 8 K§Q>o ‘o {H$VZo
joÌ’$b H$s OwVmB© H$aoJm& (¶{X j‘Vm 100%
(if efficiency is 100%) will be
hmo)
(A) 2.6 hectare (B) 3.0 hectare
(A) 2.6 h¡³Q>o¶a (B) 3.0 h¡³Q>o¶a
(C) 3.6 hectare (D) 4.6 hectare (C) 3.6 h¡³Q>o¶a (D) 4.6 h¡³Q>o¶a
117. Tractor plow width is 60 cm and depth 117. Q>¡³Q>a go MbZo dmbo hb H$s Mm¡‹S>mB© 60
is 20 cm. Total draft of the implement go.‘r. Am¡a JhamB© 20 go.‘r. h¡ Bg ¶§Ì
na {I§Mmd 4800 {H$.J«m. n‹S> ahm h¡ Vmo
is 4800 kg. The unit draft will be.
BH$mB© {I§Mmd ³¶m hmoJm?
(A) 4 kg/cm2 (B) 5 kg/cm2
(A) 4 {H$J«m./go‘r.2 (B) 5 {H$J«m./go‘r.2
(C) 6 kg/cm2 (D) 3 kg/cm2 (C) 6 {H$J«m./go‘r.2 (D) 3 {H$J«m./go‘r.2
118. The implement choking between discs. 118. VdoXma OwVmB© ¶§Ì Ho$ ~rM MmoqH$J H$m H$maU
(A) Speed of tractor is too low (A) Q´>¡³Q>a H$s J{V H$‘ hmoZm
(B) Scrapers are not set correctly (B) ñH«o$na H$m R>rH$ go Zht bJmZm
(C) Gangs are not rolling freely (C) J¢J H$m ñdV§Ì ê$ngo Zhr§ Ky‘Zm
(D) All of the above (D) Cnamo³V g^r
119. Rotary puddlers are used in rice 119. YmZ H$s IoVr Ho$ {bE amoQ>ar nS>ba Cn¶w³V
cultivation due to. h¡&
(A) Better pulverization (A) {‘Q²>Q>r H$mo AÀN>r ^wa^war H$aZo Ho$
H$maU
(B) Better puddling
(B) AÀN>r nS>{b§J Ho$ H$maU
(C) Reduced draft
(C) H$‘ {I§Mmd Ho$ H$maU
(D) All of the above (D) Cnamo³V g^r
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Page 24
120. Cleaning of grain is unsatisfactory 120. XmZo H$s g’$mB© g§VmofOZH$ Zht hmo ahr h¡&
because. (A) n§Io H$s J{V H$‘ h¡&
(A) Fan speed is less
(B) n§Io H$s JmBS> ãboS> R>rH$ go H$m‘
(B) Air guide blade not working
Zht H$a ahr h¡&
properly
(C) ao{S>¶b ãbmoAa ãboS> R>rH$ Zht h¡&
(C) Radial blower blade not proper
(D) All of the above (D) Cnamo³V g^r
121. The disks of disk harrows are made of. 121. {S>ñH$ h¡amo H$s {S>ñH$ ~Zr hmoVr h¡&
(A) Cast iron (A) H$mñQ> Am¶aZ
(B) Spring steel (B) pñà¨J ñQ>rb
(C) High-grade heat treated steel (C) hmB© J«oS> hrQ> Q´>rQ>oS> ñQ>rb
(D) None of the above (D) Bg‘| go H$moB© Zhr§&
122. The depth of penetration of a disk 122. {S>ñH$ h¡amo H$s JhamB© ~‹T>mB© OmVr h¡&
harrow is increased by. (A) {S>ñH$ Ho$ ~rM H$s Xÿar ~‹T>mZo go
(A) Increasing the spacing of disk
(B) {S>ñH$ Ho$ ~rM H$s Xÿar H$‘ H$aZo go
(B) Decreasing the spacing of disks
(C) h¡amo H$m H$Q> H$‘ H$aZo go
(C) Decreasing the cut of harrow
(D) Cnamo³V ‘| go H$moB© Zhr§&
(D) None of the above
123. The working depth of animal drawn 123. ~¡bm| go MbZo dmbo ñnmBH$ Qy>W h¡amo H$s
spike tooth harrow is. JhamB© ‘w»¶V… hmoVr h¡&
(A) 5 cm (A) 5 go‘r.
(B) 10 cm (B) 10 go‘r.
(C) 15 cm (C) 15 go‘r.
(D) None of the above (D) Cnamo³V ‘| go H$moB© Zhr§&
124. In general the length of wooden plank 124. gmYmaUV¶m bH$‹S>r go ~Zo nQ>obo H$s bå~mB©
drawn by a pair of bullock is Omo EH$ Omo‹S>r ~¡bm| go Mbm¶r OmVr h¡,
BgH$s bå~mB© hmoVr h¡&
(A) 80-90 cm (B) 100-120 cm
(A) 80-90 go‘r. (B) 100-120 go‘r.
(C) 150-200 cm (D) 200-250 cm (C) 150-200 go‘r. (D) 200-250 go‘r.
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Page 25
125. If the size of tractor or drawn drill is 125. ¶{X Q>¡³Q>a go MbZo dmbr {S´>b H$s gmBO
11 × 20 cm then its nominal width will 11 × 20 go‘r. h¡ Vmo BgH$s Mm¡‹S>mB© hmoJr&
be. (A) 180 go‘r.
(A) 180 cm
(B) 2.2 ‘r.
(B) 2.2 m
(C) 220 {‘br./‘r.
(C) 220 mm
(D) 209 cm (D) 209 go‘r.
126. The auger type metering device is used 126. lJa Q>mBn H$s ‘mnH$ CnH$aU à¶moJ ‘o§
in. bm¶r OmVr h¡&
(A) ’$Q>ubmBOa {S´>b ‘| (ImX S>mbZo dmbr
(A) Fertilizer drill
‘erZ ‘|)
(B) Seed drills
(B) ~rO ~moZo dmbr ‘erZ ‘|
(C) Planters (C) ßbmÝQ>a ‘|
(D) All of these (D) Cnamo³V g^r ‘|
127. A fan type nozzle sprays the liquid in 127. ’¡$Z Q>mBn Zm{Ob go ñào H$m ê$n hmoVm h¡&
the form of a. (A) gm{bS> H$moZ H$s Vah
(A) Solid cone
(B) hmbmo H$moZ H$s Vah
(B) Hollow cone
(C) âb¡Q> erQ> H$s Vah
(C) Flat sheet
(D) Flooding (D) âbqS>J H$s Vah
128. The uniformity of coverage in chemical 128. Ho${‘H$b Ho$ {N>‹S>H$md H$s EH$ê$nVm {Z^©a
spraying is determined by. H$aVr h¡&
(A) Type of nozzle (A) Zm{Ob Ho$ àH$ma na
(B) Nozzle spacing (B) Zm{Ob Ho$ Xÿar na
(C) Boom height (C) ~y‘ H$s D±$MmB© na
(D) All of these (D) Cnamo³V g^r na
129. Depreciation of machine is determined 129. ‘erZ H$s pñWV ì¶¶ ‘mby‘ H$s OmVr h¡&
by. (A) BñQ>r‘oQ>oS> d¡ë¶y ‘oWS> Ûmam
(A) Estimated value method (B) ñQ´>oQ> bmBZ VarH$mo§ Ûmam
(B) Straight line method
(C) g‘-Am°’$ {S>{OQ> VarH$mo§ Ûmam
(C) Sum of digits method
(D) Cnamo³V g^r
(D) All of the above
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130. Fixed cost of a tractor includes. 130. Q>¡´³Q>a H$m pñWa ì¶¶ hmoVm h¡&
(A) Depreciation (A) ì¶¶ õmg ({S>{à{g¶oeZ)
(B) Insurance and taxes (B) ~r‘m
(C) Shelter change (C) aIZo Ho$ OJh H$m IM© (eoëQ>a MmO©)
(D) All of the above (D) Cnamo³V g^r
131. Variable cost of tractor includes. 131. Q´>¡³Q>a H$m àMmbZ ì¶¶ hmoVm h¡&
(A) Cost of fuel consumed (A) à¶moJ H$s J¶r B©YZ H$s H$s‘V
(B) Cost of repair and maintenance (B) ‘aå‘V d aI-aImd na ì¶¶
(C) Cost to words Labor charge (C) ‘OXÿar na ì¶¶
(D) All of the above (D) Cnamo³V g^r
132. In general the useful life of tractor in 132. gm‘mݶV¶m ^maV df© ‘| Q´>¡³Q>a H$m OrdZ
India is considered. hmoVm h¡&
(A) 8000 hrs (B) 8500 hrs (A) 8000 hrs (B) 8500 hrs
(C) 10,000 hrs (D) 12,000 hrs (C) 10,000 hrs (D) 12,000 hrs
133. Which one pump is used to pump water 133. H$m¡Z nån A{YH$ D±$MmB© VH$ nmZr nhþ±MmZo
at higher height. Ho$ {b¶o H$m‘ ‘o§ bm¶m OmVm h¡&
(A) Single stage pump (A) EH$ ñQ>oO dmbm nån
(B) Multi stage pump (B) EH$ go A{YH$ ñQ>oO dmbm nån
(C) Horizontal axis pump (C) g‘mZmÝVa Ywar (axis) dmbm nån
(D) All of the above (D) Cnamo³V g^r
134. Open impeller pump is used to. 134. Iwbm hþAm Bånoba nmZr CR>mZo Ho$ H$m‘
(A) Pump clean water AmVm h¡&
(A) gm’$ nmZr CR>mZo Ho$ {b¶o à¶moJ hmoVm
(B) Pump water at higher height
h¡&
(C) Pump sewage water (B) A{YH$ D±$MmB© VH$ nmZr CR>mZo Ho$
(D) None of the above {b¶o H$m‘ ‘o AmVm h¡&
(C) {gdoO nmZr nån H$aZo Ho$ {b¶o à¶moJ
‘o§ AmVm h¡&
(D) Cnamo³V ‘| go H$moB© Zhr§&
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Page 27
135. Deep well turbine pump is used to lift 135. Jhao Hw±$E dmbm Q>a~mBZ nån nmZr CR>mVm
water from. h¡&
(A) 10 ft water level (A) 10 ft nmZr H$s gVh go
(B) 15 ft water level (B) 15 ft nmZr H$s gVh go
(C) More than 20 ft water level (C) 20 ft go A{YH$ nmZr H$s gVh go
(D) All of the above (D) Cnamo³V g^r
136. The height of water over 90° v noted 136. ¶{X nmZr H$s D±$MmB© 90° v Zmn Ho$ D$na
is 4 cm. The discharge will be 4 go‘r. h¡ Vmo àòmd hmoJm&
(A) 0.22 l/sec (B) 0.35 l/sec (A) 0.22 l/sec (B) 0.35 l/sec
(C) 0.40 l/sec (D) 0.44 l/sec (C) 0.40 l/sec (D) 0.44 l/sec
137. The width of square channel is 20 cm 137. EH$ dJm©H$ma Zmbr H$s Mm¡‹S>mB© 20 go‘r.
and the height of flowing water is h¡ Am¡a Bg‘| ~hZo dmbo nmZr H$s D±$MmB©
15 c.m. The velocity of flowing water 15 go‘r. h¡ nmZr Bg‘| 2 ‘r. à{V go
in channel is 2 meter/sec the discharge Ho$ÝÐ Ho$ doJ go ~h ahm h¡ Vmo BgH$m
will be. àòmd hmoJm&
(A) 0.06 m3/sec (B) 0.07 m3/sec (A) 0.06 m3/sec (B) 0.07 m3/sec
(C) 0.08 m3/sec (D) 0.05 m3/sec (C) 0.08 m3/sec (D) 0.05 m3/sec
138. A pump is pumping water in a tank 138. EH$ nån go Q>¢H$ ‘o§ 12.2 ‘rQ>a H$s D±$MmB©
at a height of 12.2 meter Pump is na nmZr CR>m¶m Om ahm h¡& nån 4500
pumping 4500 liter water per minute. brQ>a nmZr à{V {‘ZQ> CR>m ahm h¡ nmBn
The friction loss in pipe is equal to ‘o Kf©U ömg 4.57 ‘r., nmZr CR>mZo H$s
4.57 meter, suction lift is 3.05 meter. D±$MmB© nån go 3.05 ‘r. h¢, nån H$m AmCQ>
The pump out put in h.p. will. nwQ> hmg© Xmda ‘o§ hmoJm&
(A) 20.82 h.p (B) 19.82 h.p (A) 20.82 h.p (B) 19.82 h.p
(C) 21.82 h.p (D) 22.82 h.p (C) 21.82 h.p (D) 22.82 h.p
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139. The mean deviation about the median 139. ZrMo {X¶o hþE S>oQ>m H$m Am¡gV {dMbZ
for the following data will be ‘o{S>¶Z Ho$ H$ar~ {H$VZm hmoJm&
3, 9, 5, 3, 12, 10, 18, 4, 7, 19, 21 3, 9, 5, 3, 12, 10, 18, 4, 7, 19, 21
(A) 4.57 (B) 5.27 (A) 4.57 (B) 5.27
(C) 6.27 (D) 7.27 (C) 6.27 (D) 7.27
140. The following data is given for 140. {ZåZ S>oQ>m bJmVma ~maå~aVm H$m {X¶m J¶m
continuous frequency distribution. h¡, BgH$m ‘ܶ (‘rZ) ³¶m hmoJm&
Class – 30-40, 40-50, 50-60, 60-70, Class – 30-40, 40-50, 50-60, 60-70,
70-80, 80-90, 90-100 70-80, 80-90, 90-100
Frequency – 3, 7, 12, 15, 8, 3, 2 Amd¥{V (Frequency) – 3, 7, 12, 15, 8,
The mean will be 3, 2
(A) 72 (B) 52 (A) 72 (B) 52
(C) 62 (D) 82 (C) 62 (D) 82
141. The variance of Q. No. 140 will be 141. Cnamo³V àíZ Z§.140 H$m d¡[a¶§g ³¶m hmoJm&
(A) 201 (B) 101 (A) 201 (B) 101
(C) 301 (D) 401 (C) 301 (D) 401
142. The standard deviation of Q. No. 140 142. àíZ g§. 140 H$m ‘mZH$ {dMbZ ³¶m hmoJm&
will be. (A) 16.18 (B) 17.18
(A) 16.18 (B) 17.18
(C) 14.18 (D) 13.18
(C) 14.18 (D) 13.18
143. The standard deviation of the binomial 143. {ÛnXd§Q>Z H$m ‘mZH$ {dMbZ h¢&
distribution is. (A) NP
(A) NP
(B) npq
(B) npq
(C) npq
(C) npq
(D) None of the above (D) Cnamo³V ‘| go H$moB© Zht&
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144. The coofficient of variation is given. 144. H$mo{’${g¶oQ> Am’$ d¡[a¶ogZ hmoVm h¡&
σ # σ #
(A) 100 (A) 100
x x
σ2 # σ2 #
(B) 100 (B) 100
x x
σ # σ #
(C) 100 (C) 100
m m
(D) None of the above (D) Cnamo³V ‘| go H$moB© Zhr&
145. Measure of dispersion is. 145. àH$sUrZ (‘rOa Am’$ {S>gng©Z) H$m ‘mnZ
(A) Range h¡&
(A) namg
(B) Mean deviation
(B) ‘mܶ {dMbZ
(C) Standard deviation
(C) ‘mZH$ {dMbZ
(D) All of the above (D) Cnamo³V g^r
146. In a two way classification number of 146. ¶{X Qy> do H$b{g{’$Ho$eZ ‘o 5 ãbmH$ Am¡a
treatments are 5 and replication are 5 5 CnMma h¡ Vmo ao{gSw>¶b Ìw{Q> H$s {S>J«r
then degrees of freedom for residuals
Am’$ ’«$sS>‘ ³¶m hmoJr&
(Error) will be.
(A) 16 (B) 24
(A) 16 (B) 24
(C) 4 (D) 5 (C) 4 (D) 5
147. In a class the mean height, weight and 147. EH$ ³bmg ‘o§ b‹S>H$mo§ H$s D±$MmB© dOZ
variance are given below, Which one Am¡a CgH$m d¡[a¶§g {X¶m J¶m h¡& CZ‘| go
show greater variation. {H$g‘| Á¶mXm d¡[a¶oeZ h¡&
Height Weight Height Weight
Man 162.6 cm 52.36 kg Man 162.6 cm 52.36 kg
Variance 127.69 cm2 23.14 kg2 Variance 127.69 cm2 23.14 kg2
(A) Height (A) D±$MmB©
(B) Weight (B) dOZ
(C) Both equal (C) XmoZmo§ ~am~a
(D) None of the above (D) Cnamo³V ‘| go H$moB© Zhr§&
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148. The average speed of a fly wheel of 148. ‘mZd Mm{bV Mmam H$mQ>Zo Ho$ âbmB ìhrb
a manually operated chaff cutter with H$s Am¡gV J{V hmoJr, {Og‘| Xmo J‹S>mgo
2 knives will be. bJo h¢&
(A) 35 rpm (B) 33 rpm (A) 35 rpm (B) 33 rpm
(C) 30 rpm (D) 28 rpm (C) 30 rpm (D) 28 rpm
149. The length of fodder can be varied by. 149. Mmao H$s bå~mB© KQ>mB© ~‹T>mB© Om gH$Vr h¡&
(A) Changing speed of cutting head (A) H$mQ>Zo dmbo hoS> H$s J{V ~Xb H$a
(B) Changing number of knives (B) J‹S>mgo H$s g§»¶m ~XbH$a
(C) Changing the speed of feed roller (C) ’$sS> amoba H$s J{V ~XbH$a
(D) All of the above (D) Cnamo³V g^r
150. The power operated chaff cutter has fly 150. ep³V Mm{bV Mmam H$mQ>Zo Ho$ âbmB ìhrb
wheel speed in the range of. H$s J{V hmoVr h¡&
(A) 250-300 rpm (B) 300-350 rpm (A) 250-300 rpm (B) 300-350 rpm
(C) 350-700 rpm (D) 600-1000 rpm (C) 350-700 rpm (D) 600-1000 rpm
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SPACE FOR ROUGH WORK / H$ÀMo H$m‘ Ho$ {b¶o OJh
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SPACE FOR ROUGH WORK / H$ÀMo H$m‘ Ho$ {b¶o OJh
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