JEE Main 2023 Mathematics Question Paper Feb 1 Shift 1- Download PDF

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Shivam Yadav

Educational Content Expert | Updated 3+ months ago

JEE Main 2023 Mathematics Question Paper Feb 1 Shift 1 is updated here after the conclusion of the exam. Candidates can download JEE Main 2023 Mathematics Question Paper PDF with Answer Key for Feb 1 Shift 1 using the link below. JEE Main Mathematics Question Paper is divided into two sections, Section A with 20 MCQs and Section B with 10 numerical type questions. Candidates are required to answer all questions from Section A and any 5 questions from section B.

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JEE Main 2023 Mathematics Question Paper Feb 1 Shift 1- Download PDF

JEE Main 2023 1 Feb Shift 1 Mathematics Question Paper with Solution PDF download iconDownload Check Solution

Question 1:

If \[ \lim_{n \to \infty} \left( \frac{1}{1+n} + \frac{1}{2+n} + \frac{1}{3+n} + \dots + \frac{1}{2n} \right) \]
is equal to:

  • (2) \( \log_e 2 \)
  • (3) \( \log_e \left( \frac{3}{2} \right) \)
  • (4) \( \log_e \left( \frac{2}{3} \right) \)
Correct Answer: (2) \( \log_e 2 \)
View Solution

Question 2:

The negation of the expression \[ q \vee (\neg q \wedge p) \]
is equivalent to:

  • (1) \( (\neg p) \wedge (\neg q) \)
  • (2) \( p \wedge (\neg q) \)
  • (3) \( (\neg p) \vee (\neg q) \)
  • (4) \( (\neg p) \vee q \)
Correct Answer: (1) \( (\neg p) \wedge (\neg q) \)
View Solution

Question 3:

In a binomial distribution \( B(n, p) \), the sum and product of the mean and variance are 5 and 6, respectively. Then \( 6(n + p - q) \) is equal to:

  • (1) \( 51 \)
  • (2) \( 52 \)
  • (3) \( 53 \)
  • (4) \( 50 \)
Correct Answer: (2) \( 52 \)
View Solution

Question 4:

The sum to 10 terms of the series \[ \frac{1}{1+1^2+1^4} + \frac{2}{1+2^2+2^4} + \frac{3}{1+3^2+3^4} + \dots \]
is:

  • (1) \( \frac{59}{111} \)
  • (2) \( \frac{55}{111} \)
  • (3) \( \frac{56}{111} \)
  • (4) \( \frac{58}{111} \)
Correct Answer: (2) \( \frac{55}{111} \)
View Solution

Question 5:

The value of \[ \frac{1}{1!50!} + \frac{1}{3!48!} + \frac{1}{5!46!} + \dots + \frac{1}{49!2!} + \frac{1}{51!1!} \]
is:

  • (1) \( \frac{2^{50}}{50!} \)
  • (2) \( \frac{2^{50}}{51!} \)
  • (3) \( \frac{2^{51}}{51!} \)
  • (4) \( \frac{2^{51}}{50!} \)
Correct Answer: (2) \( \frac{2^{50}}{51!} \)
View Solution

Question 6:

If the orthocentre of a triangle, whose vertices are \( (1,2) \), \( (2,3) \), and \( (3,1) \) is \( (\alpha, \beta) \),
then the quadratic equation whose roots are \( \alpha + 4\beta \)
and \( 4\alpha + \beta \) is:

  • (1) \( x^2 - 19x + 90 = 0 \)
  • (2) \( x^2 - 18x + 80 = 0 \)
  • (3) \( x^2 - 22x + 120 = 0 \)
  • (4) \( x^2 - 20x + 99 = 0 \)
Correct Answer: (4) \( x^2 - 20x + 99 = 0 \)
View Solution

Question 7:

For a triangle ABC, the value of \[ \cos 2A + \cos 2B + \cos 2C \]
is least. If its inradius is 3 and incentre is M, then which of the following is NOT correct?

  • (1) \( Perimeter of \triangle ABC is 18\sqrt{3} \)
  • (2) \( \sin 2A + \sin 2B + \sin 2C = \sin A + \sin B + \sin C \)
  • (3) \( \overline{MA} \cdot \overline{MB} = -18 \)
  • (4) \( Area of \triangle ABC is \frac{27\sqrt{3}}{2} \)
Correct Answer: (4) \( \frac{27\sqrt{3}}{2} \)
View Solution

Question 8:

The combined equation of the two lines \[ ax + by + c = 0 \quad and \quad a'x + b'y + c' = 0 \]
can be written as \[ (ax + by + c)(a'x + b'y + c') = 0 \]
The equation of the angle bisectors of the lines represented by the equation \[ 2x^2 + xy - 3y^2 = 0 \]
is:

  • (1) \( 3x^2 + 5xy + 2y^2 = 0 \)
  • (2) \( x^2 - y^2 + 10xy = 0 \)
  • (3) \( 3x^2 + xy - 2y^2 = 0 \)
  • (4) \( x^2 - y^2 - 10xy = 0 \)
Correct Answer: (4) \( x^2 - y^2 - 10xy = 0 \)
View Solution

Question 9:

The shortest distance between the lines \[ \frac{x-5}{1} = \frac{y-2}{2} = \frac{z-4}{-3}, \quad \frac{x+3}{1} = \frac{y+5}{4} = \frac{z-1}{-5} \]
is:

  • (1) \( 7\sqrt{3} \)
  • (2) \( 5\sqrt{3} \)
  • (3) \( 6\sqrt{3} \)
  • (4) \( 4\sqrt{3} \)
Correct Answer: (3) \( 6\sqrt{3} \)
View Solution

Question 10:

Let S denote the set of all real values of \( \lambda \) such that the system of equations \[ \lambda x + y + z = 1 \] \[ x + \lambda y + z = 1 \] \[ x + y + \lambda z = 1 \]
is inconsistent. Then \[ \sum_{\lambda \in S} (|\lambda|^2 + |\lambda|) \]
is equal to:

  • (1) \( 2 \)
  • (2) \( 12 \)
  • (3) \( 4 \)
  • (4) \( 6 \)
Correct Answer: (4) \( 6 \)
View Solution

Question 11:

Let \[ S = \left\{ x : x \in \mathbb{R} and (\sqrt{3} + \sqrt{2})^{x-4} + (\sqrt{3} - \sqrt{2})^{x-4} = 10 \right\} \]
Then \( |S| \) is equal to:

  • (1) \( 2 \)
  • (2) \( 4 \)
  • (3) \( 6 \)
  • (4) \( 0 \)
Correct Answer: (2) \( 4 \)
View Solution

Question 12:

Let S be the set of all solutions of the equation \[ \cos^{-1} (2x) - 2\cos^{-1} (\sqrt{1 - x^2}) = \pi, \quad x \in \left[ -\frac{1}{2}, \frac{1}{2} \right]. \]
Then \[ \sum_{x \in S} 2 \sin^{-1} (x^2 - 1) \]
is equal to:

  • (1) \( 0 \)
  • (2) \( \frac{-2\pi}{3} \)
  • (3) \( \pi - \sin^{-1} \left( \frac{\sqrt{3}}{4} \right) \)
  • (4) \( \pi - 2\sin^{-1} \left( \frac{\sqrt{3}}{4} \right) \)
Correct Answer: (1) \( 0 \)
View Solution

Question 13:

If the center and radius of the circle \[ \left| \frac{z - 2}{z - 3} \right| = 2 \]
are respectively \( (\alpha, \beta) \) and \( \gamma \), then \[ 3(\alpha + \beta + \gamma) \]
is equal to:

  • (1) \( 11 \)
  • (2) \( 9 \)
  • (3) \( 10 \)
  • (4) \( 12 \)
Correct Answer: (4) \( 12 \)
View Solution

Question 14:

If \( y = y(x) \) is the solution curve of the differential equation \[ \frac{dy}{dx} + y \tan x = x \sec x, \quad 0 \leq x \leq \frac{\pi}{3} \]
and \( y(0) = 1 \), then \( y \left( \frac{\pi}{6} \right) \) is equal to:

  • (1) \( \frac{\pi}{12} + \frac{\sqrt{3}}{2} \log_e \left( \frac{2}{e\sqrt{3}} \right) \)
  • (2) \( \frac{\pi}{12} + \frac{\sqrt{3}}{2} \log_e \left( \frac{2\sqrt{3}}{e} \right) \)
  • (3) \( \frac{\pi}{12} - \frac{\sqrt{3}}{2} \log_e \left( \frac{2\sqrt{3}}{e} \right) \)
  • (4) \( \frac{\pi}{12} + \frac{\sqrt{3}}{2} \log_e \left( \frac{2}{e\sqrt{3}} \right) \)
Correct Answer: (1)
View Solution

Question 15:

Let R be a relation on \( \mathbb{R} \), given by \[ R = \{ (a, b) : 3a - 3b + \sqrt{7} is an irrational number \} \]
Then R is:

  • (1) Reflexive but neither symmetric nor transitive
  • (2) Reflexive and transitive but not symmetric
  • (3) Reflexive and symmetric but not transitive
  • (4) An equivalence relation
Correct Answer: (1) Reflexive but neither symmetric nor transitive
View Solution

Question 16:

Let the image of the point \( P(2, -1, 3) \) in the plane \[ x + 2y - z = 0 \]
be Q. Then the distance of the plane \[ 3x + 2y + z + 29 = 0 \]
from the point Q is:


  • (1) \( \frac{22\sqrt{2}}{7} \)
  • (2) \( \frac{24\sqrt{2}}{7} \)
  • (3) \( 2\sqrt{14} \)
  • (4) \( 3\sqrt{14} \)
Correct Answer: (4) \( 3\sqrt{14} \)
View Solution

Question 17:

Let \[ f(x) = \begin{bmatrix} 1 + \sin^2 x & \cos^2 x & \sin 2x
\sin^2 x & 1 + \cos^2 x & \sin 2x
\sin^2 x & \cos^2 x & 1 + \sin 2x \end{bmatrix} \]
where \( x \in \left[ \frac{\pi}{6}, \frac{\pi}{3} \right] \).
If \( \alpha, \beta \) are respectively the maximum and the minimum values of \( f \), then

  • (1) \( \beta^2 - 2\sqrt{\alpha} = \frac{19}{4} \)
  • (2) \( \beta^2 + 2\sqrt{\alpha} = \frac{19}{4} \)
  • (3) \( \alpha^2 - \beta^2 = 4\sqrt{3} \)
  • (4) \( \alpha^2 + \beta^2 = \frac{9}{2} \)
Correct Answer: (1) \( \beta^2 - 2\sqrt{\alpha} = \frac{19}{4} \)
View Solution

Question 18:

Let \[ f(x) = 2x + \tan^{-1} x, \quad g(x) = \log_e (\sqrt{1 + x^2} + x) \]
where \( x \in [0, 3] \). Then:

  • (1) There exists \( x \in [0,3] \) such that \( f'(x) < g'(x) \)
  • (2) \( \max f(x) > \max g(x) \)
  • (3) There exist \( 0 < x_1 < x_2 < 3 \) such that \( f(x) < g(x) \), \( \forall x \in (x_1, x_2) \)
  • (4) \( \min f'(x) = 1 + \max g'(x) \)
Correct Answer: (2) \( \max f(x) > \max g(x) \)
View Solution

Question 19:

The mean and variance of 5 observations are 5 and 8, respectively. If 3 observations are 1, 3, 5, then the sum of cubes of the remaining two observations is:

  • (1) \( 1072 \)
  • (2) \( 1792 \)
  • (3) \( 1216 \)
  • (4) \( 1456 \)
Correct Answer: (1) \( 1072 \)
View Solution

Question 20:

The area enclosed by the closed curve C given by the differential equation \[ \frac{dy}{dx} + \frac{x + a}{y - 2} = 0, \quad y(1) = 0 \]
is \( 4\pi \).
Let P and Q be the points of intersection of the curve C and the y-axis. If normals at P and Q on the curve C intersect the x-axis at points R and S respectively, then the length of the line segment RS is:

  • (1) \( 2\sqrt{3} \)
  • (2) \( \frac{2\sqrt{3}}{3} \)
  • (3) \( 2 \)
  • (4) \( \frac{4\sqrt{3}}{3} \)
Correct Answer: (4) \( \frac{4\sqrt{3}}{3} \)
View Solution

Question 21:

Let \( a_1 = 8, a_2, a_3, \dots a_n \) be an A.P. If the sum of its first four terms is 50 and the sum of its last four terms is 170, then the product of its middle two terms is:


Question 22:

A(2, 6, 2), B(-4, 0, \( \lambda \)), C(2, 3, -1) and D(4, 5, 0), where \( |\lambda| \leq 5 \)
are the vertices of a quadrilateral ABCD. If its area is 18 square units, then \[ 5 - 6\lambda is equal to: \]


Question 23:

The number of 3-digit numbers that are divisible by either 2 or 3 but not divisible by 7 is:


Question 24:

The remainder when \( 19^{200} + 23^{200} \) is divided by 49, is:


Question 25:

If \[ \int_{0}^{1} (x^{21} + x^4 + x^7)(2x^{14} + 3x^7 + 6)^{1/7} dx = \frac{1}{7} (11)^{m/n} \]
where \( l, m, n \in \mathbb{N} \), and \( m, n \) are coprime, then \[ l + m + n is equal to: \]


Question 26:

If \[ f(x) = x^2 + g'(1)x + g''(2) \]
and \[ g(x) = f(1)x^2 + xf'(x) + f''(x), \]
then the value of \( f(4) - g(4) \) is equal to:


Question 27:

Let \[ \vec{v} = \alpha \hat{i} + 2 \hat{j} - 3 \hat{k}, \quad \vec{w} = 2\alpha \hat{i} + \hat{j} - \hat{k}, \quad and \hat{u} be a vector such that |\hat{u}| = \alpha > 0. \]
If the minimum value of the scalar triple product \[ [\vec{u} \quad \vec{v} \quad \vec{w}] \]
is \( -\alpha \sqrt{3401} \),
and \[ |\hat{u} \cdot \hat{i}|^2 = \frac{m}{n} \]
where \( m \) and \( n \) are coprime natural numbers, then \[ m + n is equal to: \]


Question 28:

The number of words, with or without meaning, that can be formed using all the letters of the word ASSASSINATION so that the vowels occur together, is:


Question 29:

Let A be the area bounded by the curve \[ y = x |x - 3| \]
the x-axis, and the ordinates \( x = -1 \) and \( x = 2 \).
Then \( 12A \) is equal to:


Question 30:

Let \( f: \mathbb{R} \to \mathbb{R} \) be a differentiable function such that \[ f'(x) + f(x) = \int_{0}^{2} f(t) dt. \]
If \( f(0) = e^{-2} \), then \[ 2f(0) - f(2) is equal to: \]


 


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JEE Main 2023 Mathematics Analysis Feb 1 Shift 1

JEE Main 2023 Paper Analysis for Mathematics paper scheduled on February 1 Shift 1 will be updated here after the conclusion of the exam. Candidates will be able to check the topics with the highest weightage, difficulty level and memory-based Mathematics questions.

JEE Main 2023 Paper Analysis Feb 1 Shift 1 (After Exam)

JEE Main 2023 Mathematics Question Paper Pattern

Feature Question Paper Pattern
Examination Mode Computer-based Test
Exam Language 13 languages (English, Hindi, Assamese, Bengali, Gujarati, Kannada, Malayalam, Marathi, Odia, Punjabi, Tamil, Telugu, and Urdu)
Exam Duration 3 hours
Sectional Time Limit None
Mathematics Marks 100 marks
Total Number of Questions Asked 20 MCQs + 10 Numerical Type Questions
Total Number of Questions to be Answered 20 MCQs + 5 Numerical Type Questions
Marking Scheme +4 for each correct answer
Negative Marking -1 for each incorrect answer

Also Check:

JEE Main 2022 Question Paper

JEE Main 2023 aspirants can practice and check their exam prep level by attempting the previous year question papers as well. The table below shows JEE Main 2022 Question Paper PDF for B.E./B.Tech to practice.

JEE Main Previous Year Question Paper

JEE Main Questions

  • 1.

    The motion of an airplane is represented by the velocity-time graph as shown below. The distance covered by the airplane in the first 30.5 seconds is                km.

      • 9
      • 6
      • 3
      • 12

    • 2.

      A bead of mass \( m \) slides without friction on the wall of a vertical circular hoop of radius \( R \) as shown in figure. The bead moves under the combined action of gravity and a massless spring \( k \) attached to the bottom of the hoop. The equilibrium length of the spring is \( R \). If the bead is released from the top of the hoop with (negligible) zero initial speed, the velocity of the bead, when the length of spring becomes \( R \), would be (spring constant is \( k \), \( g \) is acceleration due to gravity): 

        • \( \sqrt{\frac{3Rg + kR^2}{m}} \)
        • \( \sqrt{\frac{2Rg + kR^2}{m}} \)
        • \( \sqrt{\frac{2gR + kR^2}{m}} \)
        • \( \sqrt{\frac{2Rg + 4kR^2}{m}} \)

      • 3.

        Given below are two statements I and II. 
        Statement I: Dumas method is used for estimation of "Nitrogen" in an organic compound. 
        Statement II: Dumas method involves the formation of ammonium sulfate by heating the organic compound with concentrated H\(_2\)SO\(_4\). In the light of the above statements, choose the correct answer from the options given below:

          • Both Statement I and Statement II are true
          • Statement I is false but Statement II is true
          • Both Statement I and Statement II are false
          • Statement I is true but Statement II is false

        • 4.
          'X' is the number of acidic oxides among $ VO_2, V_2O_3, CrO_3, V_2O_5 $ and $ Mn_2O_7 $. The primary valency of cobalt in $ [Co(H_2NCH_2CH_2NH_2)_3]_2 (SO_4)_3 $ is Y. The value of X + Y is :

            • 5
            • 4
            • 2
            • 3

          • 5.
            Let \( A = [a_{ij}] \) be a matrix of order 3 \(\times\) 3, with \(a_{ij} = (\sqrt{2})^{i+j}\). If the sum of all the elements in the third row of \( A^2 \) is \( \alpha + \beta\sqrt{2} \), where \(\alpha, \beta \in \mathbb{Z}\), then \(\alpha + \beta\) is equal to:

              • 280
              • 168
              • 210
              • 224

            • 6.
              In a group of 3 girls and 4 boys, there are two boys \( B_1 \) and \( B_2 \). The number of ways in which these girls and boys can stand in a queue such that all the girls stand together, all the boys stand together, but \( B_1 \) and \( B_2 \) are not adjacent to each other, is:

                • 144
                • 120
                • 72
                • 96

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