For Schools and Groups
STEM is undeniably the future, driving innovation, shaping industries, and solving global challenges. In today's technology-driven world, students need to learn about STEM now more than ever. By gaining a solid foundation in science, technology, engineering, and mathematics, students will be equipped with the skills and mindset necessary to thrive in a rapidly evolving society. STEM education not only opens doors to exciting career opportunities but also fosters critical thinking, problem-solving, and creativity—skills that are essential for success in the 21st century. By investing in STEM education today, we are empowering students to become the leaders, innovators, and problem-solvers of tomorrow, driving progress and shaping a brighter future for all.
STEM Pathway - Designed for Success
Grades 3 - 5
- Introduction to electronics
- Environment Kit
- IoT Kit
Grades 6 - 8
- Prosthetic Arm Kit
- Plot Clock Manipulator Kit
- Color Sorter Bot Kit
- Light Tracking Solar Panel Kit
- Into to Machine Learning Algorithms Course
In this foundational stage, students will embark on an exciting journey into the world of electronics. They will learn about basic electronic components and circuits, gaining an understanding of how electricity flows and components interact to create functional systems. Moreover, students will be introduced to microcontrollers, which serve as the brain of electronic projects, and sensors, which enable devices to interact with their environment. Through hands-on activities and guided projects, students will learn to read and respond to data from sensors, laying the groundwork for future exploration in STEM fields.
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Introduction to basic electronic components and circuits
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Understanding of microcontrollers and sensors
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Reading and responding to data from sensors
As students progress to the intermediate level, they will dive deeper into the intricacies of electronics. They will explore advanced functionalities of microcontrollers, gaining insight into input/output pins and signal processing. Additionally, they will develop basic programming skills, learning to write code to control electronic devices and troubleshoot any issues that arise. Through a combination of theoretical learning and practical application, students will further refine their problem-solving abilities and prepare for more complex challenges in electronics and beyond. Moreover, students will be introduced to new and emerging skills such as machine learning, providing them with a glimpse into the cutting-edge technologies that shape our world today. By gaining exposure to these concepts early on, students will be better prepared to tackle future challenges and contribute to advancements in science and technology.
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Deeper exploration of microcontroller functionalities
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Advanced concepts in input/output pins and signal processing
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Basic programming concepts and debugging skills
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Intro to Machine Learning
Grades 9 - 12
- Prosthetic Arm with Machine Learning Kit
- Robot Vacuum Cleaner Bot Kit
- Deep Learning Course
In the advanced stage, students will delve into more specialized areas of study within electronics and robotics, building upon the foundational knowledge gained in earlier grades. They will engage in deep learning projects that involve the exploration and implementation of advanced artificial intelligence algorithms. Through these projects, students will gain practical experience in developing and training neural networks, convolutional neural networks (CNNs), and other techniques to solve complex problems in image recognition and pattern recognition. By applying deep learning techniques to real-world datasets, students will learn how to analyze, interpret, and extract meaningful insights from large volumes of data.
Overall, students in grades 9-12 will develop advanced skills in electronics, robotics, and artificial intelligence, preparing them for future academic and professional pursuits in STEM fields. They will learn to think critically, solve complex problems, and innovate using cutting-edge technologies, positioning themselves as leaders in the ever-evolving landscape of science and technology. Through hands-on projects and experiential learning opportunities, students will gain the confidence and expertise needed to tackle the challenges of the 21st century and make meaningful contributions to society.
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Advanced microcontroller functionalities and coding for robots
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Deep Learning and Neural Networks
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TinyML
STEM IT is dedicated to connecting students directly with industry professionals and mentors, providing them with valuable opportunities for mentorship and learning. Through our mentorship programs, students will have the chance to be guided by experienced professionals who offer insights, advice, and expertise in various STEM fields. By engaging in mentorship relationships, students will learn from real-world experiences, gain practical knowledge, and develop essential skills that are not typically taught in the classroom. This exposure to industry professionals will not only broaden students' understanding of STEM concepts but also inspire and empower them to pursue their passions and excel in their academic and professional endeavors.