Aspire Faculty ID #14148 · Topic: JEE Main 2024 (27 January Evening Shift) · Just now
JEE Main 2024 (27 January Evening Shift)

Let $\alpha = \dfrac{(4!)!}{(4!)^{4!}}$ and $\beta = \dfrac{(5!)!}{(5!)^{5!}}$. Then:

Previous 10 Questions — JEE Main 2024 (27 January Evening Shift)

Nearest first
1
Let $R$ be the interior region between the lines $3x - y + 1 = 0$ and $x + 2y - 5 = 0$ containing the origin. The set o…
Topic: JEE Main 2024 (27 January Evening Shift)
2
Let $g(x)=3f\!\left(\dfrac{x}{3}\right)+f(3-x)$ and $f''(x)>0$ for all $x\in(0,3)$. If $g$ is decreasing in $(0,\alpha)…
Topic: JEE Main 2024 (27 January Evening Shift)
3
If $2\tan^2\theta-5\sec\theta=1$ has exactly $7$ solutions in the interval $\left[0,\dfrac{n\pi}{2}\right]$, for the le…
Topic: JEE Main 2024 (27 January Evening Shift)
4
If $y=y(x)$ is the solution curve of the differential equation $(x^2-4)\,dy-(y^2-3y)\,dx=0,\ x>2,\ y(4)=\dfrac{3}{2}$ a…
Topic: JEE Main 2024 (27 January Evening Shift)
5
If $\displaystyle \lim_{x\to0}\frac{3+a\sin x+b\cos x+\log_e(1-x)}{3\tan^2 x}=\frac{1}{3}$, then $2a-b$ is equal to:
Topic: JEE Main 2024 (27 January Evening Shift)
6
Let $f:\mathbb{R}\setminus\{-\tfrac{1}{2}\}\to\mathbb{R}$ and $g:\mathbb{R}\setminus\{-\tfrac{5}{2}\}\to\mathbb{R}$ be …
Topic: JEE Main 2024 (27 January Evening Shift)
7
The $20^{\text{th}}$ term from the end of the progression $20,\ 19\dfrac{1}{4},\ 18\dfrac{1}{2},\ 17\dfrac{3}{4},\ldots…
Topic: JEE Main 2024 (27 January Evening Shift)
8
Let $e_1$ be the eccentricity of the hyperbola $\dfrac{x^{2}}{16}-\dfrac{y^{2}}{9}=1$ and $e_2$ be the eccentricity of …
Topic: JEE Main 2024 (27 January Evening Shift)
9
If $\alpha,\beta$ are the roots of the equation $x^{2}-x-1=0$ and $S_n=2023\,\alpha^{n}+2024\,\beta^{n}$, then:
Topic: JEE Main 2024 (27 January Evening Shift)
10
Let $A$ and $B$ be two finite sets with $m$ and $n$ elements respectively. The total number of subsets of the set $A$…
Topic: JEE Main 2024 (27 January Evening Shift)

Next 10 Questions — JEE Main 2024 (27 January Evening Shift)

Ascending by ID
Ask Your Question or Put Your Review.

loading...