
JEE MAINS 2024 ( 9 April -SHIFT-2 ) #class11trigonometry #jee 2025 #jeemaths #jee2025 #jee2026
Insta I’d- Shivanggupta34 #diffrentiation #methodofdifferentiation DIFFERENTIATION JEE MAIN PLAYLIST LINK :: LIMITS , Continuity, differentiability playlist link :; • Limits, continuity and Differentiabil... JEE: Continuity L4 #jee2025exam #JEEshivangmathsacademy METHOD OF DIFFERENTIATION in One Shot: All Concepts & PYQs Covered | JEE Main & Advanced #JEE #JEE2025 #shivangmathsacademy #IIT #IIT2025 #JEE #methodofdifferentiation JEE 2025: Methods of Differentiation L1 #MethodOfDifferentiation #jee2025 #Continuity #JEE #JEE #JEEBatch #JEESeries l #jee2024 #Maths #Pyqs #JEEConcepts #OneShot #Differentiability #MethodOfDifferentiation Continuity at a point #JEEPreparation #JEEMain #JEEAdvanced #JEE2025 #JEEMathematics #OneShotJEE #CrashCourseJEE #JEEImportantQuestions #IITJEE #shivangmathsacademy #JEE #JEEMain #JEEmain2025 #JEEAdvanced #JEEAdvanced2025 #JEE2025 #JEEPreparation #JEE #Class12maths #DifferentiationClass12 #Differentiation Class 12 | One Shot | Marathon | JEE Main | JEE Advanced 2025 #differentiation of inverse Function #parametricfunction #parametricdifferentiation #impicitform #differentiationoflograthmicfunction Differentiation | Definition of Derivative | Geometric Interpretation of Derivative | Differentiability | Rules of Differentiation | Power Rule | Product Rule | Quotient Rule | Chain Rule | Derivative of Polynomial Functions | Derivative of Trigonometric Functions | Derivative of Exponential Functions | Derivative of Logarithmic Functions | Derivative of Inverse Trigonometric Functions | Higher Order Derivatives | Implicit Differentiation | Logarithmic Differentiati a tive of Hyperbolic Functions | Derivative of Inverse Hyperbolic Functio n | Applications of Derivatives | Tangent and Normal | Increasing and Decreasing Functions | Maxima and Minima | Rolle’s Theorem | Mean Value Theorem | L'Hôpital's Rule | Differentiability and Continuity | Differentiation of Composite Functions | Differentiation of Piecewise Functions | Differentiation under the Integral Sign | Differentiation of Multivariable Functions | Partial Derivatives | Directional Derivatives | Implicit Function Theorem | Optimization Problems | Related Rates Problems | Curve Sketching Using Derivatives | Differentiation in Physics and Engineering. #higherorderderivatives ----------------------------------------------------------------------------------------------------------------------------------------------------------- Free IIT JEE coaching, Free JEd preparation, Best free lAdvanced, JEE Main #inversetrigonometricfunctionsclass12 #JEEMain #JEEAdvanced #Mathematics Trigonometric, logarithmic, and exponential functions, inverse function. Graphs of simple functions. Limits, continuity, and differentiability. Differentiation of the sum, difference, product, and quotient of two functions. Differentiation of trigonometric, inverse trigonometric, logarithmic, exponential, Rate of change of quantities, monotonic-Increasing and decreasing functions, Maxima and minima of functions of one variable composite, and implicit functions; derivatives of order up to two, Applications of derivatives Insta I’d- Shivanggupta Quadratic Equations JEE MAINS Class 11 :: https://www.youtube.com/playlist?list... ##pyqjee2023 #ir #functionalequation #jeemainpyq2024 #jeemain2024 #jeepyq2023 #jeeadvanced #jee #jeepyq2023 #jeepyq2022 #shortcut #shortcutmethod #jee2024 #jeeadvanced2022 #jeemain2025 --------------------- #Maths #JEE # #JEE #JEEMaths #JEEExam #JEE2026 # | | SHIVANG Maths ACADEMY | SHIVANG Sir Maths #jee #jeemains #shivangmathsacademy #jee2024 #pyq #shivangmathsacademy #jeemaths #mathsjee #jeemain2023 #jeemainpyq2023 #jeemainpyq2022 #jeemainpyq2020 #class11maths #jeeclassesonline #jeemain2024 #JEE2024 #jee2025 #JEE #jee2026 #jee2025 Differentiation PYQ jee main 2024 April and January session #jeequest #jeemain #jeeadvanced #jeemain2025 #jeemain2024 #jee JEE MAINS 2024 ( 9 April – SHIFT 2 ) 9. Let the range of the function f(x) = 1 / ( 2+ sin 3x + cos 3x ) , x ∈ IR be [a, b]. If a and ẞ are respectively the A.M. and the G.M. α β of a and b, then is equal to : (1) √2 (2) 2 (3) √π (4) π Ans. (1)