O Level and IGCSE Chemistry Alternate To Practical Free Material
Everything you need to succeed in O Level and IGCSE Practical Exam at one place, completely for free! Just scroll down to the curriculum section and access for free.
Overview
Everything you need to succeed in O Level and IGCSE Practical Exam at one place, completely for free! Just scroll down to the curriculum section and access for free.
Curriculum
- 1 Section
- 65 Lessons
- Lifetime
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- Alternative To Practical/ PracticalContent For Practical/ Alternative To Practical Paper In Detail65
- 1.1Detailed Cheat Sheet (Copy)
- 1.2Titration Question (Copy)
- 1.3Identification of Ions/ Related Question (Copy)
- 1.4Experiment Apparatus Question (Copy)
- 1.5Experiment Design Question (Copy)
- 1.6Other Common Questions (Copy)
- 1.7General Rules for Chemistry Diagrams (Copy)
- 1.8Common Chemistry Apparatus Diagrams & Label Requirements (Copy)
- 1.9Common Mistakes to Avoid (Copy)
- 1.10Useful Phrases for Labeling (Copy)
- 1.11Tips to Practice for ATP Diagrams (Copy)
- 1.12Common Mistakes To Avoid (Copy)
- 1.13Cation / Anion Details (Copy)
- 1.14Cation / Anion Methods (Copy)
- 1.15Example Questions Cation / Anion (Copy)
- 1.16Understanding ATP Paper Structure: Purpose Of Paper 4 And How It Replaces Laboratory Work (Copy)
- 1.17Understanding ATP Paper Structure: Types Of Questions Asked In ATP (Method, Observation, Calculation, Conclusion) (Copy)
- 1.18Understanding ATP Paper Structure: How Marks Are Distributed In ATP Questions (Copy)
- 1.19Understanding ATP Paper Structure: Common Examiner Expectations In ATP Answers (Copy)
- 1.20Experimental Design & Method Writing: Writing A Correct Experimental Method (Step-By-Step Logic) (Copy)
- 1.21Experimental Design & Method Writing: Identifying Independent, Dependent And Control Variables (Copy)
- 1.22Experimental Design & Method Writing: Why Control Variables Must Be Kept Constant (Copy)
- 1.23Experimental Design & Method Writing: How To Describe Fair Tests Correctly (Copy)
- 1.24Experimental Design & Method Writing: Choosing Suitable Apparatus For An Experiment (Copy)
- 1.25Experimental Design & Method Writing: Why Certain Apparatus Is More Accurate Than Others (Copy)
- 1.26Measurements, Accuracy & Errors: Measuring Volume Accurately (Pipette, Burette, Measuring Cylinder) (Copy)
- 1.27Measurements, Accuracy & Errors: Measuring Mass Accurately (Balance Types And Precision) (Copy)
- 1.28Measurements, Accuracy & Errors: Temperature Measurement And Thermometer Use (Copy)
- 1.29Measurements, Accuracy & Errors: Resolution, Precision And Significant Figures (Copy)
- 1.30Measurements, Accuracy & Errors: Sources Of Experimental Error (Copy)
- 1.31Measurements, Accuracy & Errors: Random Errors Vs Systematic Errors (Copy)
- 1.32Measurements, Accuracy & Errors: Improving Accuracy And Reliability Of Results (Copy)
- 1.33Observations & Results: Difference Between Observation And Inference (Copy)
- 1.34Observations & Results: How To Write Valid Observations (Colour, Gas, Precipitate) (Copy)
- 1.35Observations & Results: Acceptable Observation Words Used By Examiners (Copy)
- 1.36Observations & Results: Recording Results In Tables Correctly (Copy)
- 1.37Observations & Results: Headings, Units And Table Formatting Rules (Copy)
- 1.38Qualitative Analysis (Very High Yield): Tests For Cations (NH₄⁺, Cu²⁺, Fe²⁺, Fe³⁺, Zn²⁺, Al³⁺, Ca²⁺) (Copy)
- 1.39Qualitative Analysis (Very High Yield): Tests For Anions (Cl⁻, Br⁻, I⁻, SO₄²⁻, CO₃²⁻, NO₃⁻) (Copy)
- 1.40Qualitative Analysis (Very High Yield): Flame Tests And Their Colours (Copy)
- 1.41Qualitative Analysis (Very High Yield): Gas Tests (H₂, O₂, CO₂, NH₃, Cl₂) (Copy)
- 1.42Qualitative Analysis (Very High Yield): Distinguishing Similar Ions Using Observations (Copy)
- 1.43Qualitative Analysis (Very High Yield): Common Qualitative Analysis Mistakes Students Make (Copy)
- 1.44Quantitative Practical Skills: Titration Technique And Diagram Interpretation (Copy)
- 1.45Quantitative Practical Skills: Reading Burette And Pipette Values Correctly (Copy)
- 1.46Quantitative Practical Skills: Concordant Results And Why They Matter (Copy)
- 1.47Quantitative Practical Skills: Calculations From Titration Data (Copy)
- 1.48Quantitative Practical Skills: Percentage Yield From Experimental Data (Copy)
- 1.49Quantitative Practical Skills: Concentration Calculations Using Practical Data (Copy)
- 1.50Graphs & Data Handling: Drawing Graphs Correctly (Scale, Axes, Plotting) (Copy)
- 1.51Graphs & Data Handling: Choosing Suitable Scales (Copy)
- 1.52Graphs & Data Handling: Best-Fit Line Vs Dot-To-Dot (Copy)
- 1.53Graphs & Data Handling: Interpreting Graphs From Experiments (Copy)
- 1.54Graphs & Data Handling: Calculating Gradients From Practical Graphs (Copy)
- 1.55Separation & Purification Techniques: Filtration, Evaporation And Crystallisation (Copy)
- 1.56Separation & Purification Techniques: Simple Distillation And Fractional Distillation (Copy)
- 1.57Separation & Purification Techniques: Paper Chromatography (Rf Values, Interpretation) (Copy)
- 1.58Separation & Purification Techniques: Choosing The Correct Separation Technique (Copy)
- 1.59Separation & Purification Techniques: Purity Tests And Melting Point Interpretation (Copy)
- 1.60Rates, Energy & Reaction Experiments: Rate Of Reaction Experiments (Gas Collection, Mass Loss) (Copy)
- 1.61Rates, Energy & Reaction Experiments: Variables Affecting Rate Of Reaction (Copy)
- 1.62Rates, Energy & Reaction Experiments: Energy Profile Diagrams From Practical Experiments (Copy)
- 1.63Rates, Energy & Reaction Experiments: Endothermic Vs Exothermic Experimental Evidence (Copy)
- 1.64Safety, Risk & Examiner Traps: Laboratory Safety Precautions And Reasons (Copy)
- 1.65Safety, Risk & Examiner Traps: Common ATP Examiner Traps And How To Avoid Them (Copy)



