
Francis introduces physics fundamentals, covering position, distance and acceleration, equations of motion, and simple harmonic motion. He invites you to post questions or comments in the comment box.
Define displacement, speed, velocity, and acceleration, and analyze uniform and variable acceleration with time, velocity changes, and distance from velocity-time graphs through area calculations.
Explore how position defines a referenced location, how distance measures total length, and how displacement captures the direct difference between start and end points, with coordinate examples.
Learn how scalar quantities use magnitude alone, while vector quantities combine magnitude and direction, with vector addition and resolution using triangle and parallelogram methods.
Explore the three equations of motion for uniformly accelerated motion—v = u + at, s = ut + 1/2 at^2, and v^2 = u^2 + 2as—plus gravity sign conventions.
Master projectile motion by analyzing horizontal and vertical components, constant horizontal velocity, gravity-driven vertical change, and derive time of flight, maximum height, and range for angled launches.
The lecture explains buoyancy and the equilibrium of forces, detailing up thrust, displaced fluid, and how apparent weight changes when an object is submerged or floating.
Explore simple harmonic motion, a periodic motion toward an equilibrium under a restoring force, relating amplitude, period, and frequency to angular and linear velocity and acceleration.
Explore simple harmonic motion through pendulums and springs, analyzing potential and kinetic energy, restoring forces, energy conservation, and the effects of forced versus free vibration.
Explore foundational topics in physics, including linear momentum, mechanical energy, and gas loss, taught by Francis in the SSS 2 physics lesson complete session.
Explore linear momentum and impulse, applying Newton's laws to unbalanced forces, inertia, and momentum change, and examine conservation of momentum in isolated collisions.
Explore linear momentum, elastic and inelastic collisions, and how conservation of momentum and kinetic energy determines final velocities and energy loss, with examples of perfectly elastic and perfectly inelastic collisions.
Explore mechanical energy, including kinetic energy and gravitational and elastic potential energy, and apply the conservation of mechanical energy in closed systems.
Learn the mechanics of machines by defining mechanical advantage and velocity ratio, analyzing friction and efficiency, and exploring pulley systems, inclined planes, wedges, screws, wheels and axles, and gears.
Explore heat as energy from temperature differences, and temperature as the average molecular energy measured by thermometers—liquid-in-glass, gas, resistance, thermocouple, and bimetallic strip, across Celsius, Fahrenheit, and Kelvin scales.
Explore how evaporation occurs at all temperatures and is driven by temperature, pressure, surface area, and air dryness, and see how boiling point, humidity, and refrigeration influence cooling.
Explore gas law concepts through measuring gas pressure with a manometer and barometer, and apply Boyle's law to relate pressure and volume at constant temperature.
Explore gas law concepts, including volume's relation to absolute temperature at constant pressure and the general gas equation linking pressure, volume, and temperature in kelvin.
Francis introduces physics topics from the syllabus, covering types of waves, production and propagation, molecular theory of matter, and applications of lenses, plane mirrors, and musical instruments.
Examine the production and propagation of waves, including mechanical and electromagnetic types, and how energy transfers without moving matter. Learn key properties and the relation v = f lambda.
Explore progressive waves, distinguishing transverse and longitudinal types and their energy transfer, with examples like light, water, and springs, and learn the wave equation and frequency relationships.
Explore the properties of waves, including reflection, refraction, interference, and diffraction, and learn how superposition creates constructive and destructive patterns.
Become a master in all topics of SSS (or SHS) 2 with just one course!
These tutorials present SSS 2 (or SHS) Physics in a totally new, fun and comprehensive fashion. The classes deal with SSS 2 Physics from the foundational concepts to the complex aspects. The lectures here are straightforward, practical and easy to understand.
Containing 24+ lecture videos, over 13 downloadable notes/textbooks, All-year access, ‘SSS 2 Physics Lesson | Complete Session’, gives you the chance to actively follow the tutorial and to always have access to re-take the lectures.
We have provided you with lots of examples, exercises, QUIZZES and ASSIGNMENTS (yes, assignments!). This Complete Session package indeed offers you MORE VALUE for LESS PAY. With all the learning aids and features integrated into this tutorial, your success in SSS 2 Physics is guaranteed!
This tutorial covers all the classes in SSS 2 Physics from the First term to the Third Term. Our notes and lectures also perfectly comply with the NERDC Scheme of Work.
Whether you are preparing for your school examinations or for national exams like WASSCE, NECO, GCE, JAMB etc, this single tutorial is all you need.
A few of the topics we have covered in this tutorial include;
Position, Distance and Displacement
Physical Quantities
Equations of motion
Projectiles
Equilibrium of Forces
Introduction to Simple Harmonic Motion etc
The lectures contain example problems, with a stepwise walk through to their solution to ensure you are competent to handle questions under each topic.
We have gone the extra mile to facilitate your understanding of the topics and involvement in class. Some of these features that help to achieve this include;
Explanation of formula derivation
Easy tips to remember concepts
Fun and Tension-free learning atmosphere
Math tricks for calculations
Practical, physical of outplaying of the theoretical concepts etc
This course has been worked and carefully designed to ensure that SSS 2 Physics becomes a walkthrough for you whether you are a fresh SSS 2 student or you already have prior knowledge in the subject.
Who This Course is for:
Students Preparing to Resume into SSS2
Students who need a better understanding of SSS 2 Physics topics
Teachers or Tutors who need quick in-depth revision or study of the topics
Parents/Guardians who desire to guide Children or Wards in studying or solving questions from SSS 2 Physics Topics