O Level/IP Physics Classes

Curiosity-driven, we dive deep into O Level Physics concepts, illustrating the magic behind everyday phenomena.
 

Welcome To Science Masterclass Physics!

The Physics syllabus may vary from school to school, often covering 23 chapters. One of the biggest challenges students face is grasping fundamental concepts on their own, especially when schools rush through content, sometimes covering a whole chapter in just one lesson! We encourage you to start with us from the beginning, to build both momentum and confidence.

Albert Einstein once remarked that no problem can be solved from the same level of consciousness that created it. Similarly, a student cannot fully understand Physics concepts without elevating their level of understanding. Our small group coaching sessions personalize learning for each student, ensuring that fundamental concepts are clearly understood. We dedicate significant time to clarify what might have been confusing in school, helping you achieve a deeper comprehension.

O Level / IP

Physical Quantities, Units, and Measurement: Fundamentals of measurement, SI units, and the importance of accuracy and precision.

Kinematics: Describes motion using terms like speed, velocity, and acceleration, utilizing equations and graphical interpretations.

Dynamics: Focus on forces, Newton’s laws of motion, and their application in various physical situations.

Mass, Weight, and Density: Differentiation between mass and weight, understanding density, and its calculations.

Turning Effect of Forces: Concepts of moments, center of gravity, and conditions for equilibrium.

Pressure: Exploration of pressure in solids, liquids, and gases, including applications like hydraulics and atmospheric pressure.

Work, Energy, and Power: Work done, energy transformations including kinetic and potential energy, conservation of energy, and calculations of power and efficiency.

Kinetic Model of Matter: Particle theory explanations for the states of matter and their behaviors.

Transfer of Thermal Energy: Methods of heat transfer: conduction, convection, and radiation, with practical implications.

Thermal Properties of Matter: How temperature is measured and its effects on material properties and state changes.

Waves: Properties of waves, including sound and light waves, with phenomena such as reflection, refraction, and diffraction.

Light: Detailed study of reflection and refraction, total intenal reflection, lenses, and the dispersion of light.

Electricity and Magnetism:

Static Electricity: Understanding electric charge and electrostatic phenomena.

Current Electricity: Electrical principles relevant to currents, series and parallel circuits, and practical applications.

D.C. Circuits: Detailed analysis of electric circuits, including potential difference, resistance, and Ohm’s Law.

Electromagnetism:

Magnetic Effects of Electric Current: Investigating how electric currents can produce magnetic fields, and the applications of electromagnets.

Electromagnetic Induction: Principles and applications of inducing voltages and currents through magnetic fields, foundational for understanding generators and transformers.

Nuclear Physics: Introduction to the components of the nucleus, types of radioactive decay, nuclear reactions, and their applications and implications in energy production and medical technologies.

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