
practice solving states of matter questions, explaining condensation from gas to liquid, identifying state symbols, and detailing energy, arrangement, and movement changes as materials transition among solid, liquid, and gas.
Solve states-of-matter questions by following dissolution of hydrated copper sulfate, noting blue solution and disappearing crystals, and count atoms and identify bonding in NH3, HCl, O2, and MgO.
Explore how elements, compounds, and mixtures are identified and separated, using practical methods such as filtration, crystallization, distillation, and chromatography, with example reactions and calculations.
Explore solving atomic structure questions using the periodical table, identify noble gas configurations, and analyze covalent, ionic, and metallic bonding with isotope and hydrogen scenarios.
Solve atomic-structure questions: identify protons, neutrons and electrons for bromine isotopes, explain bonding in HBr and NaBr, and apply empirical formula and periodic table concepts.
Master atomic structure in the complete igcse chemistry course by solving questions on protons, neutrons, electrons, mass and atomic numbers, isotopes, ions, and electronic configuration.
Learn to write and balance chemical formulas and equations, perform molar mass and percent composition calculations, and apply Avogadro's law and titration basics for common gas and solution problems.
Solve chemical equations and calculations in 5.2, exploring reaction moles, gas volumes, temperature effects, and excess reactants with concrete examples.
Learn to balance chemical equations, perform stoichiometric calculations, and apply formulae to real problems, from rusting iron and gas volume calculations to sodium azide nitrogen gas in airbags.
Explore ionic and covalent bonding, compare sodium chloride and silicon dioxide, and water's properties; learn melting points, conductivity, and tests for ammonium and chloride ions.
Explore covalent structures and bonding, comparing diamond and graphite, and explain why graphite lubricates while diamond resists melting. Include Buchminschter-Fullerene and ammonia (NH3) as covalent examples.
Explore electrolysis in metal extraction, with oxidation and reduction at electrodes, half-equations, and solved examples for aluminum and iron production, slag formation, rust prevention, and lead bromide precipitation.
Explore extraction and uses of metals, metal–acid heat changes, and practical experiments, plus hydrocarbons, substitution reactions, bonding, and the thermic reaction in metal processing.
Learn how to prevent iron nails from rusting using galvanization and sacrificial protection. Explore electroplating and redox reactions in metal extraction and oxide formation.
Explore extraction and uses of metals, from rusting and preventing corrosion with paint or galvanization to blast furnace iron and titanium extraction, including oxidation, reduction, and industrial processes.
Explore acids, bases and salt preparations with solved lab problems on crystallization, precipitation, titration, and pH changes, including magnesium sulfate and lead sulfate experiments.
Learn flame tests using a clean platinum wire and non-colored flames. Identify ions such as sodium chloride, lithium sulfate, and iron(II) carbonate using silver nitrate, barium chloride, and sodium hydroxide.
Describe rate as concentration change over time, using products or reactants with a minus sign. Higher concentration, temperature, and pressure boost collisions; catalysts lower activation energy, the minimum energy required.
Discover how crude oil is separated by fractional distillation in a fractionating column, naming fractions such as raffineric gases and bitumen, and explore hydrocarbons, cracking, and acid rain.
Master alkanes in this lesson: saturated hydrocarbons with the general formula CnH2n plus 2, covering complete and incomplete combustion, cracking with silica or alumina catalysts, and isomerism.
Are you preparing for the IGCSE Chemistry exam and looking for a structured, clear, and effective way to master the subject? This course is designed to help you understand key concepts, apply them to actual exam questions, and boost your confidence to achieve top grades.
With 90+ step-by-step video lessons, we cover all the essential topics, breaking down complex ideas into simple explanations. Each lesson is packed with exam-style problems, ensuring you know how to approach and solve questions efficiently.
What You’ll Get in This Course:
Complete IGCSE Chemistry Syllabus – All topics are explained efficiently.
Step-by-Step Solutions – Learn how to tackle past paper questions like a pro.
Clear and Engaging Teaching Style – No complicated jargon, just straight-to-the-point learning.
Exam Techniques & Strategies – Master the skills to maximize your score.
Common Mistakes and How to Avoid Them – Learn to prevent errors that cost marks.
Interactive Problem-Solving Approach – Develop the skills to think critically and answer confidently.
This course suits all students, whether struggling with chemistry concepts or aiming for the highest grades. It is designed to provide a strong theoretical foundation and practical problem-solving skills, ensuring that you fully understand the subject and can apply your knowledge effectively in exams.
By the end of this course, you will be able to solve real IGCSE exam questions confidently, understand key chemistry principles, and develop strong exam strategies to maximize your performance.
Enroll now and take the next step toward mastering IGCSE Chemistry.