Bloom’s S3 Mastery Program Half Part 1

Categories: 5 weeks part 1
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About Bundle

This course bundle covers the first five weeks of the Bloom’s S3 Masterclass, guiding students through the highest-yield skills required to excel in Section 3 of the GAMSAT. The curriculum begins with foundational reasoning in spatial geometry and chemical transformations, progressing through mechanics and systems equilibrium, and culminating in advanced data interpretation using layered biological and chemical datasets. Each week is aligned with ACER’s testing philosophy—prioritising logical deduction, systems thinking, and the ability to reason under cognitive load, rather than rote recall.

Students will learn to visualise chemical structures, solve force and motion-based problems, interpret graphs and flowcharts, and deconstruct experiment-style questions using scientific method principles. Emphasis is placed on mastering high-frequency question formats such as multi-axis diagrams, chemical reaction logic (C & R), buffer systems, and mixed-discipline experimental stems.

🔍 Key Skills Aligned to GAMSAT Section 3:

🧠 1. Spatial Geometry & Chemical Reasoning (Week 1)

  • Learn to visualise organic molecules and transformations in 2D/3D, essential for solving spatially complex chemistry questions involving ring structures, functional group changes, and C→R logic.

  • Gain skills in interpreting structural diagrams and deducing outcomes of unfamiliar chemical reactions—frequent in ACER’s abstract organic chemistry stems.

⚙️ 2. Mechanics, Vectors & Systems Equilibrium (Week 2)

  • Master Newtonian mechanics, vector analysis, and energy conservation as they apply to ACER-style physics questions involving inclined planes, projectile motion, and system dynamics.

  • Learn how to deconstruct diagrams showing force interactions—especially in scenarios that test problem-solving using visual data rather than formulas.

📊 3. Data Interpretation: Kinetics & Acids/Bases (Week 3)

  • Develop fluency in reading reaction rate graphs, log scales, and understanding reaction orders, commonly tested in GAMSAT via multi-step chemical data stems.

  • Apply acid/base reasoning using Ka, pKa, and the Henderson-Hasselbalch equation—high-frequency exam content linked to physiology and buffer system logic.

🔄 4. Cognitive Loading & Diagrammatic Reasoning (Week 4)

  • Learn to decode biological flowcharts, multi-axis diagrams, and interconnected tables—hallmark ACER formats that challenge students to synthesise information under time pressure.

  • Build confidence in visually parsing information quickly, especially in novel systems where prior knowledge is not required.

🔬 5. Mixed-Stem Problem Solving with Scientific Method (Week 5)

  • Apply scientific reasoning to experiment-style questions, where you’re expected to evaluate hypotheses, identify key variables, and reason from unfamiliar data.

  • Strengthen macro-analytic thinking by identifying independent, dependent, and controlled variables, essential in biology-chemistry crossover stems (e.g. pharmacokinetics, enzyme activity, or lab setups).

💡 Exceptional Value:

For only $450, this premium GAMSAT Section 3 program includes:

  • 12 hours of HD recordings and live classes delivered by Sameer Khan himself

  • Real-time personal support throughout the course

  • Realistic ACER-style quizzes aligned with modern GAMSAT trends

  • Access to a resource bank of 1500+ Section 3 questions

  • 5+ full-length mock exams with detailed solutions

  • Highly rated course: 5 stars on Google Reviews

  • Students average a 13-mark improvement in S3, with a median score of 69

  • Over 34% of students admitted to medical school following completion

This course is ideal for any student looking to elevate their performance in GAMSAT Section 3 with structured guidance, proven resources, and a strong community of learners. It offers not just content mastery, but a strategic and psychological edge—ensuring that you’re not only prepared, but confident on exam day.

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What Will You Learn?

  • Spatial geometry and 3D visualisation of chemical structures
  • Systems-based physics: vectors, forces, motion, and energy
  • Data interpretation using log graphs, pKa/pH systems, and reaction order
  • Flowchart and diagram deconstruction using the scientific method
  • Advanced cognitive loading with pattern recognition across disciplines
  • Evaluating variables: independent, dependent, and controlled
  • Strategic problem solving: hypothesising, analysing, and synthesising unfamiliar content