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Computer programming lessons in Seeb

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Computer programming
In this comprehensive class, we delve into the essential foundations of Android app development, covering both theoretical concepts and practical implementations. Throughout the course, students will gain proficiency in a wide range of topics, from object-oriented programming principles to the creation of sophisticated application user interfaces. Here's a breakdown of what we'll cover: 1. Basics of Android App Development: Introduction to the Android platform and its ecosystem. Understanding the Android development environment, including Android Studio and the Android SDK. Exploring the components of an Android application, such as activities, fragments, intents, and layouts. Hands-on exercises to build simple Android apps from scratch. 2. Object-Oriented Concepts and Standard Design Patterns: Explanation of core object-oriented programming (OOP) concepts such as inheritance, polymorphism, encapsulation, and abstraction. Introduction to common design patterns like Singleton, Factory, Observer, and MVC (Model-View-Controller). Practical examples and discussions on when and how to apply design patterns in Android app development. 3. Writing Code Using Architecture Design Patterns: Deep dive into modern architecture design patterns such as MVVM (Model-View-ViewModel), MVP (Model-View-Presenter), and Clean Architecture. Hands-on coding sessions to implement these patterns in Android projects. Best practices for structuring Android codebase for scalability, maintainability, and testability. 4. Understanding Large and Complex Code Bases: Techniques for navigating and understanding large Android codebases. Strategies for keeping code clean, modular, and maintainable. Code refactoring exercises and discussions on code quality metrics and tools. 5. Open-Source Contributions and Project-Based Learning: Introduction to open-source Android projects and communities. Guidance on contributing to open-source projects and leveraging them for learning. Project-based assignments to apply learned concepts and techniques in real-world scenarios. 6. Mentoring for Self-Projects and Guidance Provided: One-on-one mentoring sessions to provide personalized guidance and support for self-initiated projects. Feedback and code reviews to help students improve their coding skills and project implementations. Assistance in overcoming challenges and roadblocks encountered during project development. By the end of this class, students will not only have a solid understanding of Android app development fundamentals but also possess the skills and knowledge required to tackle complex Android projects with confidence. Whether you're a beginner looking to start your journey in Android development or an experienced developer aiming to level up your skills, this class is designed to empower you with the expertise needed to succeed in the dynamic world of Android app development.
Java · Android · Computer programming
Trusted teacher: Are you looking for a fun and engaging way to teach children and young teens the basics of programming? Distance programming education content provides a unique educational experience, where children can learn basic programming skills from the comfort of their homes, using interactive and fun educational tools and methods. What distinguishes the content of distance learning programming? Interaction: The content of distance learning programming focuses on interaction and participation, which makes the learning process fun and attractive for children. Self-learning: Remote programming education content allows children to learn at their own pace Global Access: Children from all over the world can access programming content remotely, without having to attend traditional classes. Flexibility: Distance programming education content allows learners to learn at any time that suits them, from anywhere in the world. Diversity: The distance learning programming content offers a variety of topics and activities, ensuring the participation of all learners. The content of distance learning programming covers a variety of topics, including: Programming Basics: Learn how to write code using simple programming languages like Scratch and Python. Problem Solving: Developing problem solving skills through programming. Logical Thinking: Improve logical thinking skills through programming. Creativity: Encouraging creativity by designing unique programming projects. Teamwork: Enhance teamwork skills by collaborating on group programming projects. the benefits: Teaching coding to children and young teens offers many benefits, including: 21st Century Skills: Learn essential 21st century skills such as problem solving, logical thinking and creativity. Preparing for the Future: Preparing children for an increasingly technology-driven future. Enhancing self-confidence: Building self-confidence through completing successful programming projects. Develop critical thinking skills: Improve critical thinking skills by analyzing problems and developing solutions. Enhancing communication skills: Develop communication skills by working with others on group programming projects. Content of distance learning programming: Are you ready to start teaching your kids the secrets of programming? Distance programming education content provides an ideal gateway to enter the fun and useful world of programming. Start teaching your children programming skills that will help them succeed in the future today!
Computer programming · Tutoring · Computer basics
I am smruthy, I have 10 years of teaching experience in computer science and engineering. Professional Summary: Compassionate, creative and effective Teacher with valuable experience in classroom administration, professional development and project planning. Equipped with extensive background in versatile education environments. Student-centric instructor, academic facilitator and motivational coach. Competent at performing independently or as member of teaching team. Well- versed in classroom and online technologies. Detail-oriented team player with strong organizational skills. Ability to handle multiple projects simultaneously with a high degree of accuracy. Computer Skills Programming Languages: Python, C++, C, Java, Scratch basics. Operating System : Windows, Linux Working Experience : MS Word, MS Power Point, MS Excel. Web Technologies: HTML, JavaScript, CSS. Databases: SQL. Testing Tools: Selenium Education Master of Engineering, Computer Science – Kumaraguru College of Technology, Anna University, Coimbatore, India | 2008 – 2010 Bachelor of Technology, Computer Science –Viswa Jyothi College of Engineering and Technology, Mahatma Gandhi University, Kerala, India | 2004-2008 Work History Computer Faculty, Canoli Institute of Advanced Technology (CIAT), Ponnani, Kerala, Duration: 2021– 2023. Assistant Professor | Mar Baselios Institute of Technology and Science (MBITS) Nellimattom, Kerala, Duration: 2010 -2018 Handled subjects like: Operating Systems, Computer Programming, Object Oriented Programming, Java, Network Security, Computer Graphics, Python, Algorithm Analysis and Design ,Discrete mathematics etc...
Computer science · Computer programming
Trusted teacher: This Python programming course offers a complete immersion in the Python programming language, from basic concepts to advanced techniques. Designed for beginners with no prior programming experience, as well as intermediate programmers looking to deepen their knowledge, this course provides educational progression suitable for all levels. The course content is structured to guide you through the main concepts of Python, with an emphasis on understanding the fundamentals of programming and practical application of the concepts taught. Here is an overview of the topics covered in this course: Introduction to Python: Introduction to the Python language, installation of the development environment, and first steps with the Python interpreter and code editor. Basic Syntax: Learning the basics of Python syntax, including variables, data types, operators, control structures (loops and conditionals), and functions. Data Structures: Exploring the different data structures available in Python, such as lists, tuples, sets, and dictionaries, and the operations associated with each data type. Advanced functions: Delving deeper into functions in Python Object-Oriented Programming: Introduction to the concepts of object-oriented programming (OOP) in Python, including classes, objects, encapsulation, inheritance, and polymorphism. Managing files and modules: Learn how to read and write files, as well as import and use external modules in Python. Introduction to Graphical User Interface (GUI): Learn the basics of creating graphical user interfaces using libraries like Tkinter. Practical Projects: Application of concepts learned through practical projects, allowing students to consolidate their knowledge and develop their programming skills.
Computer programming
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