JEEVisionary previous year papers

JEE Advanced 2017 Paper 2

54 questions from the official paper, reproduced here as clean searchable text so you can find any question instantly on Google, ChatGPT, or inside JEEVisionary.

At a glance

JEE Advanced 2017 Paper 2 -- 54 questions in one page

Jump straight to any question using the links below, or scroll through the full paper in original order. The question text is kept exactly as printed for easy search and match.

Exam
JEE Advanced
Year
2017
Session
Paper 2
Language
English
Questions
54
All questions

54 questions of JEE Advanced 2017 Paper 2

Original printed text, with options shown where available. Scroll down to read the full paper in order.

Question 1 (Mathematics)

Consider an expanding sphere of instantaneous radius 𝑅 whose total mass remains constant. The expansion is such that the instantaneous density 𝜌 remains uniform throughout the volume. The rate of fractional change in density !!!"!" is constant. The velocity 𝑣 of any point on the surface of the expanding sphere is proportional to [A] 𝑅 [B] 𝑅! [C] !! [D] 𝑅!/! Space for rough work Answer for the above question Ans for Q.1: (A) 4/36 Paper-2 Code 1

Jump to
Question 2 (Mathematics)

Consider regular polygons with number of sides 𝑛=3,4,5…… as shown in the figure. The center of mass of all the polygons is at height β„Ž from the ground. They roll on a horizontal surface about the leading vertex without slipping and sliding as depicted. The maximum increase in height of the locus of the center of mass for each polygon is βˆ†. Then βˆ† depends on 𝑛 and β„Ž as h h h [A] βˆ†=β„Ž sin!!! [B] βˆ†=β„Ž !!"#!!βˆ’1 [C] βˆ†=β„Žsin!!! [D] βˆ†=β„Žtan!!!! Space for rough work Answer for the above question Ans for Q.2: (B) 5/36 Paper-2 Code 1

Jump to
Question 3 (Mathematics)

A photoelectric material having work-function πœ™! is illuminated with light of wavelength πœ† πœ†< !!!!. The fastest photoelectron has a de Broglie wavelength πœ†!. A change in wavelength of the incident light by βˆ†πœ† results in a change βˆ†πœ†! in πœ†!. Then the ratio βˆ†πœ†!/βˆ†πœ† is proportional to [A] πœ†!/πœ† [B] πœ†!!/πœ†! [C] πœ†!!/πœ† [D] πœ†!!/πœ†!

Jump to
Question 4 (Mathematics)

A symmetric star shaped conducting wire loop is carrying a steady state current 𝐼 as shown in the figure. The distance between the diametrically opposite vertices of the star is 4π‘Ž. The magnitude of the magnetic field at the center of the loop is I4a [A] !!!!!" 6[3βˆ’1] [B] !!!!!" 6[3+1] [C] !!!!!" 3[3βˆ’1] [D] !!!!!" 3[2βˆ’3] Space for rough work Answers for the above questions Ans for Q.3: (D) Ans for Q.4: (A) 6/36 Paper-2 Code 1

Jump to
Question 5 (Mathematics)

Three vectors 𝑃, 𝑄 and 𝑅 are shown in the figure. Let 𝑆 be any point on the vector 𝑅. The distance between the points 𝑃 and 𝑆 is 𝑏|𝑅|. The general relation among vectors 𝑃, 𝑄 and 𝑆 is [A] 𝑆=1βˆ’π‘π‘ƒ+ 𝑏𝑄 [B] 𝑆= (π‘βˆ’1)𝑃+𝑏𝑄 [C] 𝑆=1βˆ’π‘!𝑃+𝑏𝑄 [D] 𝑆= 1βˆ’π‘π‘ƒ+ 𝑏!𝑄 Space for rough work Answer for the above question Ans for Q.5: (A) 7/36 Paper-2 Code 1

Jump to
Question 6 (Mathematics)

A rocket is launched normal to the surface of the Earth, away from the Sun, along the line joining the Sun and the Earth. The Sun is 3Γ—10! times heavier than the Earth and is at a distance 2.5Γ—10! times larger than the radius of the Earth. The escape velocity from Earth’s gravitational field is 𝑣!=11.2 km s!!. The minimum initial velocity (𝑣!) required for the rocket to be able to leave the Sun-Earth system is closest to (Ignore the rotation and revolution of the Earth and the presence of any other planet) [A] 𝑣!=22 km s!! [B] 𝑣!=42 km s!! [C] 𝑣!=62 km s!! [D] 𝑣!=72 km s!!

Jump to
Question 7 (Mathematics)

A person measures the depth of a well by measuring the time interval between dropping a stone and receiving the sound of impact with the bottom of the well. The error in his measurement of time is 𝛿𝑇=0.01 seconds and he measures the depth of the well to be 𝐿=20 meters. Take the acceleration due to gravity 𝑔=10 ms-2 and the velocity of sound is 300 ms⁻¹. Then the fractional error in the measurement, 𝛿𝐿/𝐿, is closest to [A] 0.2% [B] 1% [C] 3% [D] 5% Space for rough work Answers for the above questions Ans for Q.6:

  1. Ans for Q.7:
  2. 8/36 Paper-2 Code 1 β€’ For example, if [A], [C] and [D] are all the correct options for a question, darkening all these three will get +4 marks; darkening only [A] and [D] will get +2 marks; and darkening [A] and [B] will get -2 marks, as a wrong option is also darkened Space for rough work 9/36 Paper-2 Code 1
Jump to
Question 8 (Mathematics)

A uniform magnetic field 𝐡 exists in the region between π‘₯=0 and π‘₯=!!! (region 2 in the figure) pointing normally into the plane of the paper. A particle with charge +𝑄 and momentum 𝑝 directed along x-axis enters region 2 from region 1 at point 𝑃! (𝑦=βˆ’π‘…). Which of the following option(s) is/are correct? Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ— Γ—Γ— Γ— Γ— P1P2Region 1Region 2Region 3 3R/2Oy (y = -R)+QBx [A] For 𝐡>!!!!" , the particle will re-enter region 1 [B] For 𝐡=!!"!!" , the particle will enter region 3 through the point 𝑃! on x-axis [C] When the particle re-enters region 1 through the longest possible path in region 2, the magnitude of the change in its linear momentum between point 𝑃! and the farthest point from 𝑦-axis is 𝑝/2 [D] For a fixed 𝐡, particles of same charge 𝑄 and same velocity 𝑣, the distance between the point 𝑃! and the point of re-entry into region 1 is inversely proportional to the mass of the particle Space for rough work Answer for the above question Ans for Q.8:

  1. and
  2. 10/36 Paper-2 Code 1
Jump to
Question 9 (Mathematics)

The instantaneous voltages at three terminals marked 𝑋, π‘Œ and 𝑍 are given by 𝑉!= 𝑉!sinπœ”π‘‘, 𝑉!= 𝑉!sinπœ”π‘‘+!!! and 𝑉!= 𝑉!sinπœ”π‘‘+4πœ‹3 . An ideal voltmeter is configured to read rms value of the potential difference between its terminals. It is connected between points 𝑋 and π‘Œ and then between π‘Œ and 𝑍. The reading(s) of the voltmeter will be [A] 𝑉!"!"#= 𝑉!!! [B] 𝑉!"!"#= 𝑉!!! [C] 𝑉!"!"#= 𝑉! [D] independent of the choice of the two terminals

Jump to
Question 10 (Mathematics)

A point charge +Q is placed just outside an imaginary hemispherical surface of radius R as shown in the figure. Which of the following statements is/are correct? [A] The electric flux passing through the curved surface of the hemisphere is βˆ’!!!! 1βˆ’!! [B] Total flux through the curved and the flat surfaces is !!! [C] The component of the electric field normal to the flat surface is constant over the surface [D] The circumference of the flat surface is an equipotential Space for rough work Answers for the above questions Ans for Q.9:

  1. and
  2. Ans for Q.10: (A) and
  3. 11/36 Paper-2 Code 1
Jump to
Question 11 (Mathematics)

Two coherent monochromatic point sources 𝑆! and 𝑆! of wavelength πœ†= 600 nm are placed symmetrically on either side of the center of the circle as shown. The sources are separated by a distance 𝑑=1.8 mm. This arrangement produces interference fringes visible as alternate bright and dark spots on the circumference of the circle. The angular separation between two consecutive bright spots is βˆ†πœƒ. Which of the following options is/are correct? [A] A dark spot will be formed at the point 𝑃! [B] At 𝑃! the order of the fringe will be maximum [C] The total number of fringes produced between 𝑃! and 𝑃! in the first quadrant is close to 3000 [D] The angular separation between two consecutive bright spots decreases as we move from 𝑃! to 𝑃! along the first quadrant Space for rough work Answer for the above question Ans for Q.11:

  1. and
  2. 12/36 Paper-2 Code 1
Jump to
Question 12 (Mathematics)

A source of constant voltage 𝑉 is connected to a resistance 𝑅 and two ideal inductors 𝐿! and 𝐿! through a switch 𝑆 as shown. There is no mutual inductance between the two inductors. The switch 𝑆 is initially open. At 𝑑=0, the switch is closed and current begins to flow. Which of the following options is/are correct? [A] After a long time, the current through 𝐿! will be !!!! !!! !! [B] After a long time, the current through 𝐿! will be !!!! !!! !! [C] The ratio of the currents through 𝐿! and 𝐿! is fixed at all times (𝑑>0) [D] At 𝑑=0, the current through the resistance 𝑅 is !!

Jump to
Question 13 (Mathematics)

A rigid uniform bar AB of length 𝐿 is slipping from its vertical position on a frictionless floor (as shown in the figure). At some instant of time, the angle made by the bar with the vertical is πœƒ. Which of the following statements about its motion is/are correct? [A] The midpoint of the bar will fall vertically downward [B] The trajectory of the point 𝐴 is a parabola [C] Instantaneous torque about the point in contact with the floor is proportional to sinπœƒ [D] When the bar makes an angle ΞΈ with the vertical, the displacement of its midpoint from the initial position is proportional to (1βˆ’cosπœƒ) Answers for the above questions Ans for Q.12:

  1. ,
  2. , and
  3. Ans for Q.13: (A),
  4. , and
  5. 13/36 Paper-2 Code 1
Jump to
Question 14 (Mathematics)

A wheel of radius 𝑅 and mass 𝑀 is placed at the bottom of a fixed step of height 𝑅 as shown in the figure. A constant force is continuously applied on the surface of the wheel so that it just climbs the step without slipping. Consider the torque 𝜏 about an axis normal to the plane of the paper passing through the point 𝑄. Which of the following options is/are correct? RXS PQ [A] If the force is applied at point 𝑃 tangentially then 𝜏 decreases continuously as the wheel climbs [B] If the force is applied normal to the circumference at point 𝑋 then 𝜏 is constant [C] If the force is applied normal to the circumference at point 𝑃 then 𝜏 is zero [D] If the force is applied tangentially at point 𝑆 then πœβ‰ 0 but the wheel never climbs the step Space for rough work Answer for the above question Ans for Q.14: {

  1. } or {
  2. and
  3. } 14/36 Paper-2 Code 1 Space for rough work 15/36 Paper-2 Code 1 PARAGRAPH 1 Consider a simple 𝑅𝐢 circuit as shown in Figure 1. Process 1: In the circuit the switch 𝑆 is closed at 𝑑=0 and the capacitor is fully charged to voltage 𝑉! (i.e., charging continues for time 𝑇>>𝑅𝐢). In the process some dissipation (𝐸!) occurs across the resistance 𝑅. The amount of energy finally stored in the fully charged capacitor is 𝐸!. Process 2: In a different process the voltage is first set to !!! and maintained for a charging time 𝑇>>𝑅𝐢. Then the voltage is raised to !!!! without discharging the capacitor and again maintained for a time 𝑇>>𝑅𝐢. The process is repeated one more time by raising the voltage to 𝑉! and the capacitor is charged to the same final voltage 𝑉! as in Process 1. These two processes are depicted in Figure 2. RSVCV tT2TProcess 2Process 1V0/32V0/3V0T >> RC Figure 1 Figure 2
Jump to
Question 15 (Mathematics)

In Process 1, the energy stored in the capacitor 𝐸! and heat dissipated across resistance 𝐸! are related by: [A] 𝐸!=𝐸! [B] 𝐸!=𝐸!ln2 [C] 𝐸!=!!𝐸! [D] 𝐸!=2𝐸!

Jump to
Question 16 (Mathematics)

In Process 2, total energy dissipated across the resistance ED is: [A] 𝐸!=!!𝐢𝑉!! [B] 𝐸!=3!!𝐢𝑉!! [C] 𝐸!=!!!!𝐢𝑉!! [D] 𝐸!=3 𝐢𝑉!! Answers for the above questions Ans for Q.15:

  1. Ans for Q.16:
  2. 16/36 Paper-2 Code 1 PARAGRAPH 2 One twirls a circular ring (of mass 𝑀 and radius 𝑅) near the tip of one’s finger as shown in Figure 1. In the process the finger never loses contact with the inner rim of the ring. The finger traces out the surface of a cone, shown by the dotted line. The radius of the path traced out by the point where the ring and the finger is in contact is π‘Ÿ. The finger rotates with an angular velocity πœ”!. The rotating ring rolls without slipping on the outside of a smaller circle described by the point where the ring and the finger is in contact (Figure 2). The coefficient of friction between the ring and the finger is Β΅ and the acceleration due to gravity is 𝑔.
Jump to
Question 17 (Mathematics)

The total kinetic energy of the ring is [A] π‘€πœ”!!𝑅! [B] !!π‘€πœ”!!(π‘…βˆ’π‘Ÿ)! [C] π‘€πœ”!!(π‘…βˆ’π‘Ÿ)! [D] !!π‘€πœ”!!(π‘…βˆ’π‘Ÿ)!

Jump to
Question 18 (Mathematics)

The minimum value of πœ”! below which the ring will drop down is [A] !!(!!!) [B] !!!(!!!) [C] !!!!(!!!) [D] !!!(!!!) END OF PART I : PHYSICS Answers for the above questions Q.17: Due to internal review, all candidates are awarded +3 marks. Ans for Q.18: (A) 17/36 Paper-2 Code 1 PART II : CHEMISTRY

Jump to
Question 19 (Mathematics)

Pure water freezes at 273 K and 1 bar. The addition of 34.5 g of ethanol to 500 g of water changes the freezing point of the solution. Use the freezing point depression constant of water as 2 K kg mol⁻¹. The figures shown below represent plots of vapour pressure (V.P.) versus temperature (T). [molecular weight of ethanol is 46 g mol⁻¹] Among the following, the option representing change in the freezing point is [A] [B] [C] [D] Answer for the above question Ans for Q.19: (C) 18/36 Paper-2 Code 1

Jump to
Question 20 (Mathematics)

For the following cell, )( )( )( )(44sCuaqCuSOaqZnSOsZn when the concentration of +2Zn is 10 times the concentration of +2Cu, the expression forGΞ” (in J mol⁻¹) is [F is Faraday constant; R is gas constant; T is temperature; V 1.1 )(=cellEo] [A] 1.1F [B] 2.303RT βˆ’ 2.2F [C] 2.303RT + 1.1F [D] βˆ’2.2F

Jump to
Question 21 (Mathematics)

The standard state Gibbs free energies of formation of )C(graphite and C(diamond) at T = 298 K are 0 ])C(graphite[=Ξ”ofG kJ mol⁻¹ 9.2]C(diamond)[=Ξ”ofG kJ mol⁻¹. The standard state means that the pressure should be 1 bar, and substance should be pure at a given temperature. The conversion of graphite [)C(graphite] to diamond [C(diamond)] reduces its volume by 6102βˆ’Γ— mΒ³ mol⁻¹. If )C(graphite is converted to C(diamond) isothermally at T = 298 K, the pressure at which )C(graphite is in equilibrium with C(diamond), is [Useful information: 1 J = 1 kg mΒ² sβˆ’2; 1 Pa = 1 kg mβˆ’1 sβˆ’2; 1 bar = 105 Pa] [A] 14501 bar [B] 58001 bar [C] 1450 bar [D] 29001 bar

Jump to
Question 22 (Mathematics)

Which of the following combination will produce Hβ‚‚ gas? [A] Fe metal and conc. HNO₃ [B] Cu metal and conc. HNO₃ [C] Zn metal and NaOH(aq) [D] Au metal and NaCN(aq) in the presence of air Space for rough work Answers for the above questions Ans for Q.20:

  1. Ans for Q.21: (A) Ans for Q.22:
  2. 19/36 Paper-2 Code 1
Jump to
Question 23 (Mathematics)

The order of the oxidation state of the phosphorus atom in H3PO2, H₃POβ‚„, H3PO3, and H4P2O6 is [A] H3PO3 > H3PO2 > H₃POβ‚„ > H4P2O6 [B] H₃POβ‚„ > H3PO2 > H3PO3 > H4P2O6 [C] H₃POβ‚„ > H4P2O6 > H3PO3 > H3PO2 [D] H3PO2 > H3PO3 > H4P2O6 > H₃POβ‚„

Jump to
Question 24 (Mathematics)

The major product of the following reaction is [A] [B] [C] [D]

Jump to
Question 25 (Mathematics)

The order of basicity among the following compounds is [A] II > I > IV > III [B] IV > II > III > I [C] IV > I > II > III [D] I > IV > III > II Space for rough work Answers for the above questions Ans for Q.23:

  1. Ans for Q.24:
  2. Ans for Q.25:
  3. 20/36 Paper-2 Code 1 β€’ For example, if [A], [C] and [D] are all the correct options for a question, darkening all these three will get +4 marks; darkening only [A] and [D] will get +2 marks; and darkening [A] and [B] will get -2 marks, as a wrong option is also darkened
Jump to
Question 26 (Mathematics)

The correct statement(s) about surface properties is(are) [A] Adsorption is accompanied by decrease in enthalpy and decrease in entropy of the system [B] The critical temperatures of ethane and nitrogen are 563 K and 126 K, respectively. The adsorption of ethane will be more than that of nitrogen on same amount of activated charcoal at a given temperature [C] Cloud is an emulsion type of colloid in which liquid is dispersed phase and gas is dispersion medium [D] Brownian motion of colloidal particles does not depend on the size of the particles but depends on viscosity of the solution Space for rough work Answer for the above question Ans for Q.26:

  1. and
  2. 21/36 Paper-2 Code 1
Jump to
Question 27 (Mathematics)

For a reaction taking place in a container in equilibrium with its surroundings, the effect of temperature on its equilibrium constant Kin terms of change in entropy is described by [A] With increase in temperature, the value of Kfor exothermic reaction decreases because the entropy change of the system is positive [B] With increase in temperature, the value of Kfor endothermic reaction increases because unfavourable change in entropy of the surroundings decreases [C] With increase in temperature, the value of Kfor endothermic reaction increases because the entropy change of the system is negative [D] With increase in temperature, the value of Kfor exothermic reaction decreases because favourable change in entropy of the surroundings decreases

Jump to
Question 28 (Mathematics)

In a bimolecular reaction, the steric factor P was experimentally determined to be 4.5. The correct option(s) among the following is(are) [A] The activation energy of the reaction is unaffected by the value of the steric factor [B] Experimentally determined value of frequency factor is higher than that predicted by Arrhenius equation [C] Since P = 4.5, the reaction will not proceed unless an effective catalyst is used [D] The value of frequency factor predicted by Arrhenius equation is higher than that determined experimentally Space for rough work Answers for the above questions Ans for Q.27:

  1. and
  2. Ans for Q.28: (A) and
  3. 22/36 Paper-2 Code 1
Jump to
Question 29 (Mathematics)

For the following compounds, the correct statement(s) with respect to nucleophilic substitution reactions is(are) [A] I and III follow SN1 mechanism [B] I and II follow SN2 mechanism [C] Compound IV undergoes inversion of configuration [D] The order of reactivity for I, III and IV is: IV > I > III

Jump to
Question 30 (Mathematics)

Among the following, the correct statement(s) is(are) [A] Al(CH₃)3 has the three-centre two-electron bonds in its dimeric structure [B] BH3 has the three-centre two-electron bonds in its dimeric structure [C] AlCl₃ has the three-centre two-electron bonds in its dimeric structure [D] The Lewis acidity of BCl3 is greater than that of AlCl₃

Jump to
Question 31 (Mathematics)

The option(s) with only amphoteric oxides is(are) [A] Cr2O3, BeO, SnO, SnO2 [B] Cr2O3, CrO, SnO, PbO [C] NO, B2O3, PbO, SnO2 [D] ZnO, Alβ‚‚O₃, PbO, PbO2 Space for rough work Answers for the above questions Ans for Q.29: {

  1. ,
  2. , and
  3. } or {(A),
  4. ,
  5. , and
  6. } Ans for Q.30: (A),
  7. , and
  8. Ans for Q.31: (A) and
  9. 23/36 Paper-2 Code 1
Jump to
Question 32 (Mathematics)

Compounds P and R upon ozonolysis produce Q and S, respectively. The molecular formula of Q and S is C8H8O. Q undergoes Cannizzaro reaction but not haloform reaction, whereas S undergoes haloform reaction but not Cannizzaro reaction. The option(s) with suitable combination of P and R, respectively, is(are) [A] [B] [C] [D] Space for rough work Answer for the above question Ans for Q.32:

  1. and
  2. 24/36 Paper-2 Code 1 PARAGRAPH 1 Upon heating KClO3 in the presence of catalytic amount of MnO2, a gas W is formed. Excess amount of W reacts with white phosphorus to give X. The reaction of X with pure HNO₃ gives Y and Z.
Jump to
Question 33 (Mathematics)

W and X are, respectively [A] O3 and P4O6 [B] Oβ‚‚ and P4O6 [C] Oβ‚‚ and Pβ‚„O₁₀ [D] O3 and Pβ‚„O₁₀

Jump to
Question 34 (Mathematics)

Y and Z are, respectively [A] N2O3 and H₃POβ‚„ [B] Nβ‚‚Oβ‚… and HPO3 [C] Nβ‚‚Oβ‚„ and HPO3 [D] Nβ‚‚Oβ‚„ and H3PO3 Space for rough work Answers for the above questions Ans for Q.33:

  1. Ans for Q.34:
  2. 25/36 Paper-2 Code 1 PARAGRAPH 2 The reaction of compound P with CH3MgBr (excess) in (C2H5)2O followed by addition of Hβ‚‚O gives Q. The compound Q on treatment with Hβ‚‚SOβ‚„ at 0 Β°C gives R. The reaction of R with CH3COCl in the presence of anhydrous AlCl₃ in CH2Clβ‚‚ followed by treatment with Hβ‚‚O produces compound S. [Et in compound P is ethyl group]
Jump to
Question 35 (Mathematics)

The product S is [A] [B] [C] [D]

Jump to
Question 36 (Mathematics)

The reactions, Q to R and R to S, are [A] Dehydration and Friedel-Crafts acylation [B] Aromatic sulfonation and Friedel-Crafts acylation [C] Friedel-Crafts alkylation, dehydration and Friedel-Crafts acylation [D] Friedel-Crafts alkylation and Friedel-Crafts acylation END OF PART II : CHEMISTRY Space for rough work Answers for the above questions Ans for Q.35:

  1. Ans for Q.36:
  2. 26/36 Paper-2 Code 1 PART III : MATHEMATICS
Jump to
Question 37 (Mathematics)

The equation of the plane passing through the point (1, 1, 1) and perpendicular to the planes 2π‘₯+π‘¦βˆ’2𝑧=5 and 3π‘₯βˆ’6π‘¦βˆ’2𝑧=7, is [A] 14π‘₯+2π‘¦βˆ’15𝑧=1 [B] 14π‘₯βˆ’2𝑦+15𝑧=27 [C] 14π‘₯+2𝑦+15𝑧=31 [D] βˆ’14π‘₯+2𝑦+15𝑧=3

Jump to
Question 38 (Mathematics)

Let 𝑂 be the origin and let 𝑃𝑄𝑅 be an arbitrary triangle. The point 𝑆 is such that 𝑂𝑃⋅𝑂𝑄+ 𝑂𝑅⋅𝑂𝑆= 𝑂𝑅⋅𝑂𝑃+ 𝑂𝑄⋅𝑂𝑆= 𝑂𝑄⋅𝑂𝑅+ 𝑂𝑃⋅𝑂𝑆 Then the triangle 𝑃𝑄𝑅 has 𝑆 as its [A] centroid [B] circumcentre [C] incentre [D] orthocenter Space for rough work Answers for the above questions Ans for Q.37:

  1. Ans for Q.38:
  2. 27/36 Paper-2 Code 1
Jump to
Question 39 (Mathematics)

If 𝑦=𝑦(π‘₯) satisfies the differential equation 8π‘₯9+π‘₯𝑑𝑦=4+9+π‘₯ βˆ’1𝑑π‘₯, π‘₯>0 and 𝑦0=7, then 𝑦256 = [A] 3 [B] 9 [C] 16 [D] 80

Jump to
Question 40 (Mathematics)

If 𝑓:ℝ→ℝ is a twice differentiable function such that 𝑓!!π‘₯>0 for all π‘₯βˆˆβ„, and 𝑓!!=!!, 𝑓1=1, then [A] 𝑓!1≀0 [B] 0<𝑓!1≀!! [C] !!<𝑓!1≀1 [D] 𝑓!1>1 Space for rough work Answers for the above questions Ans for Q.39:

  1. Ans for Q.40:
  2. 28/36 Paper-2 Code 1
Jump to
Question 41 (Mathematics)

How many 3Γ—3 matrices 𝑀 with entries from 0,1,2 are there, for which the sum of the diagonal entries of 𝑀!𝑀 is 5? [A] 126 [B] 198 [C] 162 [D] 135

Jump to
Question 42 (Mathematics)

Let 𝑆=1,2,3,…,9. For π‘˜=1,2,…,5, let 𝑁! be the number of subsets of 𝑆, each containing five elements out of which exactly π‘˜ are odd. Then 𝑁!+𝑁!+𝑁!+𝑁!+𝑁!= [A] 210 [B] 252 [C] 125 [D] 126

Jump to
Question 43 (Mathematics)

Three randomly chosen nonnegative integers π‘₯,𝑦 and 𝑧 are found to satisfy the equation π‘₯+𝑦+𝑧=10. Then the probability that 𝑧 is even, is [A] !"!! [B] !!! [C] !! [D] !!! Space for rough work Answers for the above questions Ans for Q.41:

  1. Ans for Q.42:
  2. Ans for Q.43:
  3. 29/36 Paper-2 Code 1 β€’ For example, if [A], [C] and [D] are all the correct options for a question, darkening all these three will get +4 marks; darkening only [A] and [D] will get +2 marks; and darkening [A] and [B] will get -2 marks, as a wrong option is also darkened
Jump to
Question 44 (Mathematics)

If 𝑔π‘₯=sin!!(𝑑)𝑑𝑑!"#(!!)!"#!, then [A] 𝑔!!!=βˆ’2πœ‹ [B] 𝑔!βˆ’!!=2πœ‹ [C] 𝑔!!!=2πœ‹ [D] 𝑔!βˆ’!!=βˆ’2πœ‹

Jump to
Question 45 (Mathematics)

Let 𝛼 and 𝛽 be nonzero real numbers such that 2cosπ›½βˆ’cos𝛼+cos𝛼cos𝛽=1. Then which of the following is/are true? [A] tan!!+3tan!!=0 [B] 3 tan!!+tan!!=0 [C] tan!!βˆ’3tan!!=0 [D] 3 tan!!βˆ’tan!!=0 Answers for the above questions Q.44: Due to internal review, all candidates are awarded +4 marks. Q.45: Due to internal review, all candidates are awarded +4 marks. 30/36 Paper-2 Code 1

Jump to
Question 46 (Mathematics)

If 𝑓:ℝ→ℝ is a differentiable function such that 𝑓′(π‘₯)>2𝑓(π‘₯) for all π‘₯βˆˆβ„, and 𝑓0=1, then [A] 𝑓(π‘₯) is increasing in (0,∞) [B] 𝑓π‘₯ is decreasing in 0,∞ [C] 𝑓π‘₯>𝑒!! in (0,∞) [D] 𝑓′π‘₯<𝑒!! in (0,∞)

Jump to
Question 47 (Mathematics)

Let 𝑓π‘₯=!!!!!|!!!||!!!| cos!!!! for π‘₯β‰ 1. Then [A] lim!β†’!!𝑓π‘₯=0 [B] lim!β†’!!𝑓π‘₯ does not exist [C] lim!β†’!!𝑓π‘₯=0 [D] lim!β†’!!𝑓π‘₯ does not exist

Jump to
Question 48 (Mathematics)

If 𝑓π‘₯=cos(2π‘₯)cos(2π‘₯) sin(2π‘₯)βˆ’cosπ‘₯cosπ‘₯βˆ’sinπ‘₯sinπ‘₯sinπ‘₯ cosπ‘₯, then [A] 𝑓!π‘₯=0 at exactly three points in βˆ’πœ‹,πœ‹ [B] 𝑓!π‘₯=0 at more than three points in βˆ’πœ‹,πœ‹ [C] 𝑓π‘₯ attains its maximum at π‘₯=0 [D] 𝑓π‘₯ attains its minimum at π‘₯=0 Space for rough work Answers for the above questions Ans for Q.46:

  1. and
  2. Ans for Q.47: (A) and
  3. Ans for Q.48:
  4. and
  5. 31/36 Paper-2 Code 1
Jump to
Question 49 (Mathematics)

If the line π‘₯=𝛼 divides the area of region 𝑅={π‘₯,π‘¦βˆˆβ„!:π‘₯!≀𝑦≀π‘₯,0≀π‘₯≀1} into two equal parts, then [A] 0<𝛼≀!! [B] !!<𝛼<1 [C] 2𝛼!βˆ’4𝛼!+1=0 [D] 𝛼!+4𝛼!βˆ’1=0

Jump to
Question 50 (Mathematics)

If 𝐼= !!!!(!!!)!!!!!"!!! 𝑑π‘₯, then [A] 𝐼>log!99 [B] 𝐼<log!99 [C] 𝐼<!"!" [D] 𝐼>!"!" Space for rough work Answers for the above questions Ans for Q.49:

  1. and
  2. Ans for Q.50:
  3. and
  4. 32/36 Paper-2 Code 1 PARAGRAPH 1 Let 𝑂 be the origin, and 𝑂𝑋, π‘‚π‘Œ, 𝑂𝑍 be three unit vectors in the directions of the sides 𝑄𝑅, 𝑅𝑃, 𝑃𝑄, respectively, of a triangle 𝑃𝑄𝑅.
Jump to
Question 51 (Mathematics)

βˆ£π‘‚π‘‹Γ—π‘‚π‘Œβˆ£= [A] sin(𝑃+𝑄) [B] sin2𝑅 [C] sin(𝑃+𝑅) [D] sin(𝑄+𝑅)

Jump to
Question 52 (Mathematics)

If the triangle 𝑃𝑄𝑅 varies, then the minimum value of cos𝑃+𝑄+cos𝑄+𝑅+cos𝑅+𝑃 is [A] βˆ’!! [B] βˆ’!! [C] !! [D] !! Space for rough work Answers for the above questions Ans for Q.51:

  1. Ans for Q.52:
  2. 33/36 Paper-2 Code 1 PARAGRAPH 2 Let 𝑝, π‘ž be integers and let 𝛼, 𝛽 be the roots of the equation, π‘₯!βˆ’π‘₯βˆ’1=0, where 𝛼≠𝛽. For 𝑛=0,1,2,… , let π‘Ž!=𝑝𝛼!+π‘žπ›½!. FACT: If π‘Ž and 𝑏 are rational numbers and π‘Ž+𝑏5=0, then π‘Ž=0=𝑏.
Jump to
Question 53 (Mathematics)

π‘Ž!"= [A] π‘Ž!!βˆ’π‘Ž!" [B] π‘Ž!!+π‘Ž!" [C] 2π‘Ž!!+π‘Ž!" [D] π‘Ž!!+2π‘Ž!"

Jump to
Question 54 (Mathematics)

If π‘Ž!=28, then 𝑝+2π‘ž= [A] 21 [B] 14 [C] 7 [D] 12

Jump to
Don't just solve β€” strategize

What to Do After Solving This Paper

Solving PYQs without analysis is wasted effort. Use these tools and guides to turn every wrong answer into your next 5 marks.

Analysis

Mock Test Analysis Guide

Learn the exact method to categorize your errors β€” concept gaps, calculation mistakes, silly errors, and time traps. This is how toppers improve between mocks.

Analyze my paper β†’
Tracking

JEE Error Log

Log every wrong answer with the reason you got it wrong. After 5 papers, your error log becomes your single most powerful revision tool.

Start error log β†’
Strategy

Score Improvement System

Stuck at the same score? This system diagnoses why and gives you a specific action plan β€” whether it's accuracy, speed, or concept gaps.

Improve my score β†’
Master the concepts behind these questions

Strengthen Your Weak Areas

Interactive

Concept Lab

Visualize the Physics, Chemistry, and Maths concepts behind PYQ questions with interactive sliders.

Open Lab β†’
Chapters

Chapter Knowledge Graph

Find the exact chapter this question belongs to and see what concepts you need to revise.

Browse chapters β†’
Formula

Formula Revision Strategy

Forgot a formula mid-paper? Build a revision system so this never happens on exam day.

Revise formulas β†’
Recovery

Backlog Recovery

Couldn't solve an entire section? Identify your backlog chapters and recover them efficiently.

Fix backlog β†’
WA ✎