5 Good Reasons to Teach Robotics to Children

Mautushi Paul |

Child Learning |

2023-09-05 |

null mins read

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Table of Contents

 

Introduction

 

Technology is a critical point of innovation and even today, teachers find it difficult to interest students in this area. Could teaching robotics change that?

Teaching robotics would correspond to new digital technologies, strongly supported by the sector and universities in the coming years.

Before explaining to our children how to program a robot, we must first understand what a robot is.

The robotics technology has a processing unit, sensors to perceive its environment, and a motor to be able to move its limbs or wheels. He can speak, produce sounds or flashes of coloured lights in response to a certain environment after following a certain instruction.

Robots follow programmed commands and don’t just be controlled by remote control.

 

5 Good Reasons to Teach Children Robotics

 

Robotics classes in Orchids

Robotics is Fun!

 

It’s fun for kids: they can design their own robots and run races between them to develop positive competitiveness.

The game and pleasure are privileged while remaining in direct contact with the theoretical concepts of programming.

 

Key Skills for the World of Work

 

Creating robots is the best method for teaching computer programming. Students find it abstract and complicated to learn to program. But by experiencing something physical like a robot, toy robot for kids, children can better understand concepts when using their hands. This gives them the knowledge and skills for the future labor market. Thanks to the programming of robots, students can discover their abilities in a labor market that will soon require technological education in all areas.

 

Creative Thinking

 

Few areas of knowledge simultaneously integrate creativity and pleasure. Studies have shown that teaching robotics can do both. In fact, students like to participate in activities in which they have full control, which is possible with teaching robotics. And when learners are able to do cool things, they want to do more. 

Robots are a great way to experience learning by trial and error. Making mistakes and going back to work to see your robot act as desired is one of the educational virtues of programmable robots. Since the robot does not wait for the instructor’s consent to function well or poorly, the student is therefore forced to see for himself that his program is wrong. He will thus learn to identify the error responsible for the dysfunction and to remedy it by imagining a satisfactory solution. Because working with robots always aims to find a solution for the program to work and involves errors that can be corrected by the keyboard. And when it comes to programming, there is not just one solution to achieve this goal, but several that the student can enjoy exploring.

 

An Interdisciplinary Approach

 

Teaching robotics integrates a range of skills and thus promotes a learning environment for people with different talents. If properly operated, it also fosters a culture of teamwork. It helps students who might have difficulty learning in traditional classrooms. Teaching robotics kits are the best tool for project-based learning and the most exciting way to learn by doing, which involves a dynamic approach.

Instead of teaching disciplines in silos on independent subjects, the lessons are well-rounded, project-based, and inquiry-based, with an emphasis on interdisciplinary learning. There are many courses for teaching robotics apart from the ones that are taught in schools. 

 

Concrete Learning

 

Teaching robotics allows students who need a concrete context to engage directly in their learning. Rather than attempting only the exercise of reflection in an abstract context, where they must arrive at the solution by imagining the possibilities, without being able to manipulate and test their hypothesis. The integration of robotics makes it possible to make tangible concepts related to programming and computational thinking.

 

Benefits of Robotics for Kids

 

1. Improve Their Skills

 

Robotics is a great way to teach your children many subjects like math and science. The lessons they learn while building robots can help them in the future while studying other subjects too.

2. Stimulate the Development of Creativity

Building and designing robots requires imagination and lots of creativity from kids. Developing these abilities at an early age will help them in the future too.

3. Improve Reasoning Skills

The lessons that kids learn while building robots can go a long way in helping them with their problem-solving and critical thinking abilities.

4. Enhance Their Reading, Writing, and Speaking Skills 

To build robots they need to read instructions, write down lists of required materials, and follow those instructions, all of which will help them with their reading, writing, and speaking skills.

5. Gaining Self-Confidence

Having a finished product that they made themselves also gives kids a sense of pride and accomplishment, this eventually builds their confidence levels as well.

6. Getting More Physically Active

Kids nowadays are spending too much time indoors in front of computers or TV screens. Building robots gives them the chance to get outdoors and move around, making it easier for parents to include them in family sports activities like football (soccer) or badminton.

Conclusion

Creating and programming robots is a challenge. However, working on frustration helps students develop their ability to deal with failure. It gives them determination, which is crucial in the development of their personality. Robotics is gaining momentum in many schools around the world. It enables students to reap enormous benefits, not only for the present but also for the future. So let us encourage the new era of technology and help our kids learn STEM through this transversal tool.

Also Read:

Robotics in School education – The intersection of science and technology

Robotics in School Education | Use and Importance

7 Apps For Teaching Children Coding Skills

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