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Courses

Courses

Explore our wide range of courses, filtered by age, program type, and exam profile. Whether you’re interested in verbal or quantitative subjects, we have something to challenge and inspire you.

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  • Adventures in Science and Engineering

    In this dynamic and interactive course, students embark on an exciting journey to explore the fascinating worlds of Science and Engineering. Through a combined approach involving engaging discussions, hands-on experiments, and creative projects, students will develop a deep understanding of fundamental scientific principles and engineering concepts and how they contribute to solving real-world problems and improving our everyday lives.


    They will discover the scientific method and engineering design process, gaining valuable skills in critical thinking, problem solving and collaboration during experimentation. From exploring the density of materials to constructing their own electrical circuits, students will have the opportunity to apply their knowledge in a series of entertaining and interactive experiments and projects.They will build aluminum foil boats to explore buoyancy,  construct various motorized vehicles, design small gliders to investigate aerodynamics, and explore the fascinating world of stating electricity. Throughout the course, emphasis will be placed on promoting creativity, curiosity, and collaboration, as students discover the wonders of science and engineering and develop a sense of excitement for the endless possibilities that lie ahead.


    Learning Objectives:

    • Describe the scientific method and the engineering design process and explain how they are used to solve problems and develop solutions.
    • Understand the fundamental principles of density, buoyancy, dynamics, energy, work, electricity, power and motion including Newton’s laws and their application in engineering projects.
    • Design and conduct experiments to investigate scientific phenomena and engineering concepts and analyze experimental data to draw conclusions based on evidence and observations.
    • Construct and test creative and innovative models, prototypes, and devices to solve engineering challenges such as mousetrap cars, bridges, towers, hydraulic cranes and many more.
    • Effective collaboration with peers to communicate scientific ideas and engineering solutions clearly and effectively through written and oral presentations.

    Cryptology

    Cryptology is the study of the codes and ciphers used to create secret writing. In this math course, students begin their journey with an exploration of many early techniques for creating secret writing, such as cipher wheels, the Caesar shift, polyalphabetic substitution, and the Vigenère cipher. They move on to learn about modern techniques including RSA public key cryptography, as students explore how data transmitted by computers can be secured with digital encryption. Discussions about the vulnerabilities of each encryption system enable students to attack and decrypt messages using techniques such as frequency analysis and cribbing. Students apply the concepts learn to encrypt and decrypt their own secret messages.

    Though the course’s central focus is on the mathematics of cryptology, the historical context of cryptography and cryptographic devices is provided to further develop an understanding of this branch of mathematics. For example, students examine the design and fallibility of the Enigma Machine, one of the most important cryptographic devices in history.

    Fundamentals of Computer Science

    Do computers make mistakes? How does a machine even know what to do? Is Artificial Intelligence really intelligent? This course will guide students through the principles of computer science, exploring the theory and real-world applications of the concepts that govern it. Students will learn about the concepts of algorithms, binary mathematics, Boolean algebra and digital logic, and the theory of computation. They will be introduced to the workings of computer architecture, operating systems, computer networks and embedded systems, and gain insight into the neural networks that power modern AI systems. Throughout the course, the students will have the opportunity to build on their newfound theoretical knowledge through simulations on topics such as Digital Design and Turing Machines, as well as a plethora of hands-on programming challenges, primarily in C++.

    Learning Objectives

    • Gain a broad understanding of how computing and technology are shaping our world.
    • Formulate and implement algorithms in one or more industry-standard programming languages; Investigate code errors, debug and test programs, and evaluate complexity of algorithms
    • Think algorithmically to solve programming problems using conditional, iterative and recursive structures, and other techniques.
    • Compare and contrast procedural and object-oriented programming paradigms
    • Develop collaboration skills in team, project-based learning environments

    Principles of Engineering Design

    What is the difference between science and engineering? What are the techniques that must be applied for successfully tackling any engineering challenge, from designing and building a bed-side table to conceptualizing and sending a shuttle to space? How can a group of engineers efficiently compartmentalize a multi-system project, allocate tasks and optimize the budget provided to solve a multifaceted constructional problem? This course explores a range of topics from physics and science and bridges the gap between pure theoretical knowledge and its practical application. Through daily doses of lectures, class discussions, problem-solving and plentiful hands-on lab activities, the students will be exposed to an array of concepts, varying from Newtonian dynamics and circuitry to fluid dynamics and thermal physics and through their application, complete engineering tasks of progressively increasing complexity. 

    Learning objectives:

    • Apply concepts from various topics of physics into practical constructional projects with strict requirements, aimed at tackling specific problems of varying complexity and constraints.
    • Train in the engineering design process, practical problem-solving and collaborative teamwork to complete assigned engineering design and production tasks. 
    • Develop and train a variety of technical skills, including detailed technical drawings of projects, precision soldering of electronic components and wood work skills. 

    The Magic of Mathematical Thinking

    Welcome to the enchanting world of mathematical thinking! In this course, yοu will embark on a magical journey where numbers, shapes, and patterns come to life through the power of mathematical thinking.

    Through captivating stories, interactive games, and hands-on activities, you will uncover the beauty and wonder of mathematics. You will learn to see the world through a mathematical lens, discovering the hidden patterns and structures that surround you every day.

    From exploring the symmetry of nature to unraveling the mysteries of prime numbers, you will engage in a variety of activities designed to stimulate their curiosity and creativity. You will develop problem-solving skills as they tackle mathematical puzzles and challenges, learning to approach problems with imagination and ingenuity.

    Join us on this magical adventure where mathematical thinking sparks curiosity, inspires creativity, and opens doors to endless possibilities!

    Learning Objectives:

    • Define and distinguish between inductive, deductive, and abductive reasoning, providing examples of each.
    • Explore and explain the relationship between number patterns and geometry, using both explicit and recursive formulas.
    • Be introduced to symbolic logic by constructing and interpreting truth tables.
    • Solve problems using algebraic, geometric, and symbolic representations and different models.
    • Cultivate skills to enhance cooperation, creativity, critical thinking, flexibility.

    United Nations and Advanced Geography: Reshape the World

    The defense of human rights, the response to humanitarian crises, the protection of the environment, and the provision of humanitarian aid are some of the issues that concern and are managed by the United Nations. In this course students get to know and understand through short lectures, various readings, discussions, experiential activities and research how the natural, economic, cultural and political characteristics of each country influence and shape policy-making at a global level.

    In addition, they practice their speaking and writing, develop their critical thinking and broaden their knowledge of geography and international relations.

    Students also learn about the role of ambassadors at the United Nations, as they take part in simulated meetings, exploring a specific country and determining its position on global issues that come before the Organization. Finally, they draft position papers and resolutions with an in-depth understanding of diplomatic negotiations.

    LEARNING OBJECTIVES:

    • Understand the geographic factors that influence international relations and political decisions at the global level.
    • Study the structure, operation and role of the United Nations and other international organizations in dealing with global challenges.
    • Understand the importance of international cooperation and diplomacy in solving global issues such as climate change, humanitarian aid and peace and security.
    • Development of critical thinking, research and communication skills necessary to analyze and discuss complex global issues.
    • Strengthen cooperation, negotiation and diplomacy skills through simulations or role-plays concerning the activities of the United Nations.