WACE Chemistry

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The WACE Chemistry program takes students on an in-depth journey to discover the properties and reactions of matter. The course equips them with the ability to use scientific theories and models to describe, explain, and make predictions about chemical systems. Going beyond theory, WACE Chemistry also emphasizes application and responsibility, helping students become aware of chemical safety and sustainable resource management. Through hands-on laboratory activities, students will develop precise analytical skills and see the close connection of Chemistry to other scientific fields.

Common Challenges When Learning WACE Chemistry

Course Content

1.1 Properties and structure of atoms
1.2 Properties and structure of materials
1.3 Chemical reactions: reactants, products and energy change
2.1 Intermolecular forces and gases
2.2 Aqueous solutions and acidity
2.3 Rates of chemical reactions
3.1 Chemical equilibrium systems
3.2 Acids and bases
3.3 Oxidation and reduction
4.1 Properties and structure of organic materials
4.2 Chemical synthesis
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Competency Assessment

Identify strengths, weaknesses, and needs.

Set Learning Objectives

Set academic goals with a clear learning roadmap.

Create A Learning Path

Develop a detailed and structured study plan.

Implement And Optimize

Teachers provide close guidance and adapt flexibly to maximize learning outcomes.

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Condition / FeatureStandardPremiumPlatinum
🌟Target Score Commitment
Worksheets and Lesson Notes
In-class Exercises and Solutions
Extra Homework
Exam-style and Past Papers
Question Bank
Saturday Morning Homework Support
Fixed Teacher
Support for IA, EE, TOK
After-hours Message Response (until 9:30 PM)
Initial Teacher & Student Meeting (Welcome Meeting)
Teacher & Parent Conference
Periodic Academic Reports
Teacher's Feedback and Evaluation After Each Class
Rescheduling Policy (Notice within working hours)24 hours12 hours06 hours
Exam Pass Commitment
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WACE Chemistry
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Frequently Asked Questions

Frequently Asked Questions About

WACE Chemistry

The final grade for the course is calculated based on 50% from school-based assessments (lab reports, tests, projects, etc.) throughout the academic year and 50% from the final external examination organized by the WACE board.
Yes, a solid mathematical foundation, especially in Algebra, is very important for solving quantitative problems in chemistry, such as calculating concentrations, chemical equilibrium, and stoichiometry problems.
The biggest difference is the continuous assessment model (50/50) of WACE, which helps to reduce the pressure of a single final exam. Additionally, the WACE program may have specific focuses on environmental or industrial chemistry according to the Western Australian syllabus.
Practical work is an essential part of the course. Students are assessed on their practical skills in the laboratory, their ability to analyze collected data, and their understanding of experimental design as well as safety rules.
With our 1-on-1 method, teachers at Intertu will use visual molecular models, break down complex reaction mechanisms into easy-to-understand steps, and provide targeted exercises to help your child build confidence and master this area of knowledge.
This is a prerequisite and foundational subject for a wide range of majors such as Medicine, Pharmacy, Dentistry, Chemical Engineering, Biomedical Science, Food Science, and many other applied sciences.
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