Courses
Difficulty Level: BEGINNER
Age group: 10-21
Tags
Physics - Motion - Force and Laws of Motion - Mechanics - Work and Energy - Power - Temperature and Heat - Waves and Sounds - Reflection of Light - Refraction of Light - Electricity - Magnetic Effect of Electric Current Motion - Movement of a Body - Distance and Displacement - Uniform and Non-uniform Motion - Speed: Average Speed, Uniform Speed - Velocity: Uniform Velocity - Acceleration: Uniform and Non-uniform Acceleration - Retardation - Friction - Gravity - First, Second and Third Equation of Motion - Uniformly Accelerated Motion - Graphical Representation of Motion - Derive Equation of Motions by Graphical Methods - Numerical Based on Each Topic Force and Laws of Motion - What Is Force and What Are Its Effects - Balanced and Unbalanced Forces - Newton's First Law of Motion - Momentum and It's Calculation - Newton's Second Law of Motion - Application of Second Law of Motion - Newton's Third Law of Motion - Examples of Newton's Third Law of Motion - Force and Laws of Motion: Numerical Mechanics - Balance Beam - The Lever - The Pulley - The Wheel and Axle - The Inclined Plane - The Wedge - Mechanics: Numerical Work and Energy - When Work Is Done? - Unit of Work - Formula for Work Done: Force and Angle to the Direction of Force - Positive Work, Negative Work and Zero Work - Energy and It's Unit - Kinetic Energy - Potential Energy - Chemical Energy - Heat Energy - Light Energy - Sound Energy - Electrical Energy - Nuclear Energy - How to Calculate Kinetic Energy - How to Calculate Potential Energy - Gravitational Potential Energy - Elastic Potential Energy - Formula for Gravitational Potential Energy - Work and Energy: Numerical Power - Rate of Doing Work - Unit of Power - Kilowatt-hour - Transformation of Energy Using Energy Converters - Electric Motor - Electric Iron - Electric Bulb - Cell/Battery - Steam Engine - Solar Water Heater - Law of Conservation of Energy - Einstein's Mass Energy Relation - Conservation of Energy During the Free Fall of a Body - Conservation of Energy in Simple Pendulum - Power: Numerical Temperature and Heat - Temperature and Thermal Energy - How Heat Transports - Conduction and Its Example - Convection and Its Example - Radiation and Its Example Waves and Sounds - Introduction to Waves - Types of Wave: Longitudinal Waves and Transverse Waves - Sound Waves Are Longitudinal - Characteristics of Sound Wave: Amplitude, Wavelength, Time-period, Frequency, Etc. - Relationship Between Velocity, Frequency and Wavelength of Sound Wave - Production of Sound by Vibrating Objects - Materials Needed to Travel by Sound - The Speed of Sound - Reflection of Sound and It's Application - Echo: A Reflected Sound - Waves and Sounds: Numerical Reflection of Light - Electromagnetic Spectrum - What is Reflection of Light - Laws of Reflection of Light - Objects and Images - Formation of Image in a Plane Mirror - Reflection of Light from Curved Surfaces - Concave and Convex Mirror - Use of Spherical Mirrors - Reflection of Light: Value Based Story Refraction of Light - What Refraction of Light - Laws of Refraction of Light - Refraction of Light by Spherical Lens - Use of Spherical Lens - Refraction of Light: Value Based Problems Electricity - Electric Charge - Electric Current - Electric Potential - Electric Circuits - Electric Circuit Configuration: Series and Parallel - Ohm's Law - Good Conductors, Resistors and Insulators - Electricity: Numerical Magnetic Effect of Electric Current - Magnetic Field Lines - Magnetic Field - Magnetic Field in Straight Current Carrying Conductor - Direction of Magnetic Field - Electromagnetism - Application of Electromagnetism - Magnetic Effect of Electric Current: Value Based Problems - Magnetic Effect of Electric Current: Numerical
Should have understanding of elementary science
Enthuziasm to explore the concept of Physics
Light and Optics: Properties of light, reflection, refraction, and lenses.
Electricity and Magnetism: Basic principles, circuits, magnets, and electromagnetism.
Energy: Types of energy (kinetic and potential), conservation of energy.
Motion and Forces: Understanding motion, velocity, acceleration, and types of forces.
Introduction to Physics: Basic concepts like matter, energy, and forces.
Understanding of motion and it's laws
Knowledge of various forms of energy
Understanding of heat transport phenomena
Conceptual clarity in reflection and refraction of light
Deep insight into electromagnetism and it's application
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