Mathematics Syllabus (JEE Main)

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Q. In triangle ABC, if the lengths of the sides are a = 8, b = 15, and c = 17, what is the value of cos A?
  • A. 0.5
  • B. 0.6
  • C. 0.8
  • D. 0.9
Q. In triangle ABC, if the lengths of the sides are in the ratio 3:4:5, what type of triangle is it?
  • A. Acute
  • B. Obtuse
  • C. Right
  • D. Equilateral
Q. In triangle ABC, if the sides are in the ratio 3:4:5, what is the nature of the triangle?
  • A. Equilateral
  • B. Isosceles
  • C. Right
  • D. Scalene
Q. In triangle ABC, if the sides are in the ratio 3:4:5, what type of triangle is it?
  • A. Acute
  • B. Obtuse
  • C. Right
  • D. Equilateral
Q. In triangle MNO, if angle M = 45 degrees and angle N = 45 degrees, what is angle O?
  • A. 90 degrees
  • B. 45 degrees
  • C. 60 degrees
  • D. 30 degrees
Q. In triangle PQR, if PQ = 10 cm, QR = 24 cm, and PR = 26 cm, what is the area of the triangle?
  • A. 120 cm²
  • B. 120√3 cm²
  • C. 240 cm²
  • D. 48 cm²
Q. In triangle XYZ, if XY = 8 cm, YZ = 15 cm, and XZ = 17 cm, is it a right triangle?
  • A. Yes
  • B. No
  • C. Cannot be determined
  • D. Only if XY is the hypotenuse
Q. Is the function f(x) = x^2 - 2x + 1 differentiable at x = 1?
  • A. Yes
  • B. No
  • C. Only from the left
  • D. Only from the right
Q. Is the function f(x) = x^2 - 4x + 4 differentiable at x = 2?
  • A. Yes
  • B. No
  • C. Only from the left
  • D. Only from the right
Q. Is the function f(x) = x^2 - 4x + 4 differentiable everywhere?
  • A. Yes
  • B. No
  • C. Only at x = 0
  • D. Only at x = 2
Q. Is the function f(x) = x^2 sin(1/x) differentiable at x = 0?
  • A. Yes
  • B. No
  • C. Only from the left
  • D. Only from the right
Q. Is the function f(x) = x^3 - 3x + 2 differentiable at x = 1?
  • A. Yes
  • B. No
  • C. Only left differentiable
  • D. Only right differentiable
Q. Is the function f(x) = { e^x, x < 0; ln(x + 1), x >= 0 } continuous at x = 0?
  • A. Yes
  • B. No
  • C. Only left continuous
  • D. Only right continuous
Q. Is the function f(x) = { sin(x), x < 0; x^2, x >= 0 } continuous at x = 0?
  • A. Yes
  • B. No
  • C. Depends on x
  • D. Not defined
Q. Is the function f(x) = { x^3, x < 1; 2x + 1, x >= 1 } continuous at x = 1?
  • A. Yes
  • B. No
  • C. Only left continuous
  • D. Only right continuous
Q. Is the function f(x) = |x|/x continuous at x = 0?
  • A. Yes
  • B. No
  • C. Depends on direction
  • D. None of the above
Q. Let A = {1, 2, 3, 4} and R be the relation defined by R = {(a, b) | a < b}. How many ordered pairs are in R?
  • A. 4
  • B. 6
  • C. 8
  • D. 10
Q. Let A = {1, 2, 3, 4} and R be the relation defined by R = {(x, y) | x < y}. How many ordered pairs are in R?
  • A. 4
  • B. 6
  • C. 8
  • D. 10
Q. Let R be a relation on the set of natural numbers defined by R = {(m, n) | m divides n}. Is R a partial order?
  • A. Yes
  • B. No
  • C. Only reflexive
  • D. Only transitive
Q. Solve for x: 3(x - 2) = 2(x + 1).
  • A. -1
  • B. 0
  • C. 1
  • D. 2
Q. Solve for x: log_3(x + 1) - log_3(x - 1) = 1.
  • A. 2
  • B. 3
  • C. 4
  • D. 5
Q. Solve for x: log_3(x) = 2.
  • A. 6
  • B. 9
  • C. 3
  • D. 2
Q. Solve for x: log_5(x + 1) - log_5(x - 1) = 1.
  • A. 2
  • B. 3
  • C. 4
  • D. 5
Q. Solve for x: log_5(x) = 2.
  • A. 5
  • B. 10
  • C. 25
  • D. 50
Q. Solve the differential equation dy/dx + 2y = 4.
  • A. y = 2 - Ce^(-2x)
  • B. y = 2 + Ce^(-2x)
  • C. y = 4 - Ce^(-2x)
  • D. y = 4 + Ce^(2x)
Q. Solve the differential equation dy/dx = 3x^2.
  • A. y = x^3 + C
  • B. y = 3x^3 + C
  • C. y = x^2 + C
  • D. y = 3x + C
Q. Solve the differential equation dy/dx = x^2 + y^2.
  • A. y = x^3/3 + C
  • B. y = x^2 + C
  • C. y = x^2 + x + C
  • D. y = Cx^2 + C
Q. Solve the differential equation y' = 3y + 6.
  • A. y = Ce^(3x) - 2
  • B. y = Ce^(3x) + 2
  • C. y = 2e^(3x)
  • D. y = 3e^(3x) + 2
Q. Solve the differential equation y'' + 4y = 0.
  • A. y = C1 cos(2x) + C2 sin(2x)
  • B. y = C1 e^(2x) + C2 e^(-2x)
  • C. y = C1 cos(x) + C2 sin(x)
  • D. y = C1 e^(x) + C2 e^(-x)
Q. Solve the differential equation y'' - 5y' + 6y = 0.
  • A. y = C1 e^(2x) + C2 e^(3x)
  • B. y = C1 e^(3x) + C2 e^(2x)
  • C. y = C1 e^(x) + C2 e^(2x)
  • D. y = C1 e^(2x) + C2 e^(x)
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