The Core Coding Logic Program is our flagship program consisting of 6 progressive levels. This program seeks to equip primary and secondary school students with a comprehensive foundation in coding logic, while providing a conducive environment for students to hone crucial cognitive skills.
The Core Coding Logic Program is our flagship program consisting of 6 progressive levels. This program seeks to equip primary and secondary school students with a comprehensive foundation in coding logic, while providing a conducive environment for students to hone crucial cognitive skills. This program is unique in its multi-platform approach utilizing both Lego Mindstorms EV3 (Robotics) and Python.
Course Details
1.5 hours per week
There will be a project at the end of each level. Students will receive a proof of work certification to document their final project.
Learn to code using the best of both worlds
Robotics is an excellent way to master the basics Mindstorms EV3 (Robotics) is the ideal platform for aspiring young coders. Being able to physically see how codes translate to real-world movement of the robot accelerates understanding.
Coding logic is universal With a strong understanding in sequencing, loops and if-else statements, students have the option to continue their learning journey on Python.
Python brings opportunity Python is not only becoming a requirement in many jobs today, it can also be used for DSA applications to your preferred schools.
Nurturing intellectual curiosity
Sustaining an interest in coding through an interactive and meaningful curriculum.
How are we different? We Teach Logic.
The most effective form of learning happens when it's done subconsciously. At The Logic Coders, we provide an immersive and engaging environment that exposes our students to real-world coding experiences. We don't just teach them how to code, we empower them to develop vital problem-solving skills through logical thinking.
Emphasis on coding logic over syntax
Coding logic refers to the ideas and thoughts that run a program. Just as how a paragraph can be written in different languages, the logic behind an algorithm can be written in any programming language.
We focus on the 3 Fundamental Concepts of Coding Logic - Sequences, Loops and If-Else statements. While these 3 fundamental concepts seem deceptively simple, they are the basis for all programs and software. Amazing.
Coding Logic
Coding as the skill of deliberating critically and logically to construct algorithms. Using various coding and robotics platforms for teaching while important, we highlight that 'what' is being taught is critical.
Coding and Academic Ability
Math and Science will always have their place in textbooks and classrooms. However, children may find deep understanding of Math and Science concepts challenging as school curricula often focus on examinations and lack application of these concepts to real-world problems.
Learning to Code can help your child excel in Math & Science
We incorporate elements of math and science in our curriculum to require students to draw upon these concepts intuitively as they are solving missions. These experiences not only give context and reinforce what they learn in school, they create an environment for experimentation which is often overlooked in the classroom.
Reinforce Concepts
Learning to code provides an avenue to apply concepts that are taught in school, in an environment that encourages experimentation. Application of concepts in a real-word setting provides a richer set of stimuli compared to questions on the paper. These meaningful experiences enable a deeper understanding of concepts.
Spatial Thinking
Spatial thinking is the ability to extract meaning from an object's relative state to another object's shape, size, location, orientation, direction and distance. There is evidence that exposure to activities that support development in spatial thinking early in life can result in improvements in mathematical understanding. (Christopher et al., 2018)
Logical Reasoning
Through our problem-solving curriculum, students are required to break complex problems down into smaller manageable parts before stringing the solution together. This is a skill that is important in academics.
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