• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •
• Academic Excellence Starts Early with Speedlabs •

Grade 11 IIT JEE

Duration

1 Year

Session

650

Course Description

The JEE Class 11 course is meticulously designed to build a strong academic foundation for aspirants targeting engineering entrance exams. Covering Physics, Chemistry, and Mathematics, the course systematically introduces students to key concepts such as mechanics, thermodynamics, algebra, calculus, stoichiometry, atomic structure, and more. Emphasis is laid on developing conceptual clarity, analytical skills, and problem-solving abilities. Each subject progresses from basic fundamentals to advanced applications, ensuring a comprehensive preparation strategy aligned with the JEE syllabus. The course structure integrates theory with regular practice to enhance speed, accuracy, and in-depth understanding.

Learning Objective

The course aims to equip students with a deep conceptual understanding of scientific and mathematical principles critical for JEE. Students will learn to develop rigorous problem-solving techniques, strengthen logical reasoning, and master application-based learning. A key objective is to cultivate precision in mathematical calculations, a strong grasp of physics laws, and chemical reaction mechanisms, along with analytical writing and interpretation skills required for multi-step problem-solving. The course intends to bridge theoretical concepts with practical applications, preparing students not just for examinations but for real-world technical challenges.

What Will I Learn?

Through this course, students will gain expertise in kinematics, Newton’s laws, work, energy and power, thermodynamics, waves, electrostatics, and fluid mechanics in Physics. In Chemistry, they will master topics like mole concept, atomic structure, periodic properties, chemical bonding, thermodynamics, equilibrium, and basic organic chemistry. Mathematics will focus on algebra, quadratic equations, trigonometry, coordinate geometry, sequences, series, binomial theorem, and calculus fundamentals. Students will also develop speed and accuracy in solving complex numerical problems, learn strategic problem-solving approaches, and acquire the mental discipline essential for success in JEE and other competitive exams.

Additional Info

Practice

Regular exercises and interactive activities to reinforce key concepts in each subject.

Doubt-Solving

Dedicated sessions to address and clarify any questions or difficulties students encounter.

Reports

Detailed reports on experiments and projects to track progress and understanding.

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Physics
Chemistry
Mathematics

Essential Mathematics

Function, Trigonometry, Measurement of Angle (Relation between Radian & Angle)
Measurement of Positive and Negative Angle
Basic Trigonometric Functions
General Trigonometric Formulae
Differentiation, Slope of Line, Average rate of Change
Derivate of Function, Geometrical meaning of Differentiation, Rules for Differentiation, Application of Derivatives, Maxima & Minima
Integration, Integral Formulas, Rules for Integration, Definite Integration, Application of Definite Integral

Units, Dimensions, Errors, and Vectors

Physical Quantities, Fundamental Quantities, Derived quantities, Supplementary quantities, System of Units and types, Dimensions of Physical quantities, Dimensions of Angular Quantities
Dimensions of Physical Constants, Some Special features of Dimensions
Uses of Dimensions, Limitation of Dimensional Analysis
Errors in Measurement, Significant Figures, Rounding off
Permissible Error, Some Different types of Errors
Vector Quantities, Representation of Vector, Magnitude of Vector, Unit Vector
Multiplication of Vector by a Scalar, Addition of Vectors (Triangle law and Parallelogram law)
Resolution of Vectors, Multiplication of Vectors (Scalar and Vector Product), Right Hand Thumb Rule

Rectilinear Motion

Introduction to Rectilinear Motion, Rest & Motion
Distance & Displacement
Comparative study of Displacement and Distance
Speed-Velocity & its types
Acceleration & its types
Graphical Interpretation, Uniformly Accelerated Motion
Direction of Vectors in St. Line motion
Straight line (Equation, Graph, Slope), Parabolic Curves
Various graphs
Motion with Non-Uniform acceleration

Projectile Motion

Galileo's Statement
Projection from Ground, Time of Flight, Horizontal Range, Maximum Height
Equation of Trajectory, Projection from Tower
Projection from a Moving Platform
Projectile on Inclined Plane
Elastic collision of a projectile with a wall

Relative Motion

Introduction to Relative Motion, Relative motion in One Dimension
Relative Motion in Two Dimension
Relative Motion in Lift, Relative Motion in River Flow
Wind-Aeroplane Problems
Rain Umbrella Problem, Fluttering of Flag

Newton's Law Of Motion

Introduction to Force, Fundamental Forces
Classification of Force on the basis of Contact and Boundary of System
Newton's First Law of Motion, Inertia and Its Types
Linear Momentum, Newton's Second, Impulse and Third Laws of Motion
Free Body Diagram (FBD), Equilibrium of Concurrent Forces, Application of Newton’s 2nd law of motion, Motion of Blocks in Contact, Motion of Connected Bodies
Motion of Connected Block Over a Pulley, Motion of a Body on a Smooth Inclined Plane
Weighing Machine, Cutting of string, Combination of string, Spring Balance
Constrained Motion (Spring Constraint), Wedge Constraint and Reference Frame
Newton's Law for Non-inertial Frame, Pseudo Force, Apparent Weight of body in a lift

Friction

Contact Force, Reasons for Friction, Types of Frictional Force and Kinetic Friction Force
Static Friction Force
Rolling Friction Force, Angle of Friction, Angle of Repose, Friction in Pulley Block problem
Two Block Problems, Advantages and Disadvantages of Friction
Work Done by Spring Force, Work Done by Spring Force, Work done by Internal Force
Energy (Kinetic & Potential), Types of Potential Energy, Work Energy Theorem
Conservative Forces, Non-Conservative Forces
Relationship b/w Conservative Force and Potential Energy
Potential Energy Curve, Equilibrium of a Particle, Mechanical Energy, Power

Circular Motion

Fundamental Parameters of Circular Motion
Angular Acceleration, Relative Angular Velocity
Dynamics of Circular Motion, Centripetal and Centrifugal Forces
Types of Circular motion, Effect of Earth's Rotation on Apparent Weight
Conical pendulum, Motion in Vertical Circle
Applications of Circular Motion, Radius of Curvature

Centre of Mass

Introduction to Centre of mass, COM of system of discrete particles
Center of mass of a Continuous Mass Distribution, Centre of Mass of a Uniform Rod
Centre of Mass of Some Common Systems
Motion of Centre of Mass and Conservation of Momentum
Motion of CoM in a Moving system of particles
Impulse
Collision, Classification of Collisions, Coefficient of Restitution (e)
Variable Mass System, Rocket Propulsion
Conservation of Linear Momentum in presence of External Force

Rotational Motion

Rigid body, Rotation motion of rigid body, Types of Rotational Motion
Kinematics of rotational motion, Moment of inertia - Introduction, Moment of Inertia of Discrete particle System
Moment of inertia of continuous bodies, Moment of inertia of some regular bodies
Parallel Axis Theorem, Perpendicular Axis Theorem
Radius of gyration
Torque, Rotational equilibrium
Relations between torque and angular acceleration, Pulley related problems, Toppling
Angular momentum of particle, Angular momentum of body rotating about fixed axis
Conservation of angular momentum
Kinetic energy of Rotation
Work and Power in Rotational motion
Rolling motion on Horizontal plane, Rolling motion on Inclined plane

Oscillation

Periodic motion and its characteristic, Introduction to Simple Harmonic Motion, Types of Simple Harmonic Motion, Equation of S.H.M.
Characteristics of S.H.M., S.H.M as a projection of uniform circular motion, Graphical Representation of Displacement, Velocity & Acceleration In S.H.M.
Energy in S.H.M. (Potential and kinetic energy), Spring block system
Spring block system (Series and Parallel Combination), Methods to determine time period, angular frequency in S.H.M., Simple pendulum
Compound/Physical Pendulum, Torsional Pendulum, Superposition of Two S.H.M.
Damped Oscillations, Forced Oscillations, Resonance

Gravitation

Newton's Law of gravitation, Vector form of Law of Gravitation, Principle of Superposition
Gravitational field and its intensity, Gravitational Field due to multiple particles
Gravitational Field due to Spheres, Gravitational Field due to different shapes
Acceleration due to gravity, Variation in value of g
Gravitational potential energy, Gravitational potential, Gravitational potential due to different objects
Escape velocity and escape energy, Kepler's law of planetary motion
Satellite motion, Geo-stationary satellite & polar satellite, Orbit of a Satellite, Weightlessness

Fluid Mechanics

Pressure exerted by static fluid, Force and torque due to fluid, Pascal's law and its applications
Density and Density of mixtures, Atmospheric Pressure, Measurement of Atmospheric Pressure
Buoyant Force, Archimedes Principle, Floatation, Pressure exerted by accelerated fluid
Types of flow and their Characteristics, Energy of a Fluid, Equation of Continuity
Bernoulli's Theorem, Application of Bernoulli's Theorem
Concept of Viscosity & factors affecting it, Velocity Gradient and Coefficient of Viscosity, Stokes law & Terminal Velocity
Concept of Surface Tension, Factors affecting Surface Tension
Application of surface tension, Surface energy, Work done in blowing a liquid drop or soap bubble, Splitting of bigger drop, Formation of bigger drop, Excess pressure in drops and bubbles
Shape of Liquid Surface, Angle of Contact, Capillarity and Capillary rise and fall

Mechanical Properties of Matter

Introduction of Solids, Elasticity and Plasticity, Stress and Its Types
Strain and Its Types, Hooke's Law, Stress-Strain Curve
Young's Modulus, Bulk Modulus
Modulus of Rigidity Stress and Strain
Work Done In Stretching a Wire
Poisson’s Ratio

Thermal Properties of Matter

Thermometry, Temp. Scales, Temperature Measurement
Heat, Specific heat, Heat capacity, Water Equivalent
Principle of Calorimetry & Applications, Latent heat
Phase change, Calorimeter, Problem related to mixtures
Linear expansion, Area expansion
Volume expansion, Application of Thermal expansion
Thermal Stress and Thermal Strain
Conduction, Steady state, Conductivity and thermal resistance
Concept of thermal current and rate of heat transfer, Combinations of thermal resistances
Convection and its types, Radiation and important terms, Ideal black body, Prevost theory
Stephan's Law and Stefan-Boltzmann Law, Newton's Law of cooling

KTG and Thermodynamics

KTG & Gas laws
Degree of freedom, Specific heat of gases
Different velocities of gas particles, Zeroth Law and First law of thermodynamics, Applications of first law
Different processes and Indicator diagram
Conversion of different indicator diagrams
Free expansion, Heat engine
Carnot cycle and Applications

Mechanical Wave

Introduction of Waves, Classification of waves, Transverse Wave Motion, Longitudinal Wave Motion
Mechanical Waves in Different Media, Characteristics of wave motion, Some important terms to SHM
Sound Waves & its characteristics
Ultrasonic, Infrasonic and Audible Sound, Speed of longitudinal (Sound) waves
Effect of Various Quantities on Speed of sound, Characteristics of Sound
Principle of superposition of waves, Interference, Beats
Reflection of waves, stationary waves in strings
Stationary Waves in Organ Pipes/Resonance tube
Transverse Stationary wave in Strings, Comparison of progressive & stationary waves
Doppler effect, Doppler's effect in reflection of sound (echo)
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