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Investigating The Transformative Effects of Active Learning Methodologies in The Field of Engineering Education to Improve Learning Outcomes in Students by Unleashing Their Potential


Affiliations
1 UG Student, Hyderabad Institute of Technology and Management, Hyderabad, India
2 Assistant Professor Mechanical, Hyderabad Institute of Technology and Management, Hyderabad, India

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Active learning methodologies have significantly transformed engineering education, which implements an assortment of actual time and pragmatic learning strategies that have revolutionized the old chalk-and-talk instructional techniques into an appealing and exciting atmosphere for mastering. This study examines the effect of distinct active learning approaches on the acquiring capabilities of BTech scholars, highlighting the impact they have on student participation proactive involvement and overall outcomes related to learning. The research provides a brief overview of active learning and provides an explanation of the subject regarding the impact active learning methodologies may have on the motivation and engagement of students in engineering education. Also emphasizes its core concepts as well as its ability to challenge the traditional paradigm of instruction, which is concentrated on lectures in educational institutions.Technology pupils through a thorough assessment of the available literature, empirical investigations, cross-sectional research of qualitative, and quantitative data and surveys. These approaches include peer instruction, concept mapping, inquiry-based learning, experiential learning, case-based learning, simulation-based learning, collaborative learning, problem-based learning, flipped classrooms and project-based learning. The findings illustrate how these active learning approaches profoundly impact B.Tech students. Greater participation of pupils, improved academic results, more substantial critical thinking abilities, and a more comprehensive understanding of science and technology concepts are the outcomes of adopting these approaches in the field of engineering education. Through the results of this research, we aim to illustrate how active learning approaches can enrich the lives of pupils along with how these can assist them excel in their careers. Additionally, we intend to highlight how these approaches can allow learners to improve their concepts and skills in a more appreciated manner. These teaching methods also foster a lifetime love of learning while preparing students for the expanding demands of the developing engineering industry.

Keywords

Active learning methodologies, collaborative learning, problem-based learning
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  • Investigating The Transformative Effects of Active Learning Methodologies in The Field of Engineering Education to Improve Learning Outcomes in Students by Unleashing Their Potential

Abstract Views: 111  | 

Authors

Samala Nishanth Reddy
UG Student, Hyderabad Institute of Technology and Management, Hyderabad, India
Madhu Pathlavath
UG Student, Hyderabad Institute of Technology and Management, Hyderabad, India
Sakethreddy Narsareddygari
UG Student, Hyderabad Institute of Technology and Management, Hyderabad, India
Santosh Madeva Naik
Assistant Professor Mechanical, Hyderabad Institute of Technology and Management, Hyderabad, India

Abstract


Active learning methodologies have significantly transformed engineering education, which implements an assortment of actual time and pragmatic learning strategies that have revolutionized the old chalk-and-talk instructional techniques into an appealing and exciting atmosphere for mastering. This study examines the effect of distinct active learning approaches on the acquiring capabilities of BTech scholars, highlighting the impact they have on student participation proactive involvement and overall outcomes related to learning. The research provides a brief overview of active learning and provides an explanation of the subject regarding the impact active learning methodologies may have on the motivation and engagement of students in engineering education. Also emphasizes its core concepts as well as its ability to challenge the traditional paradigm of instruction, which is concentrated on lectures in educational institutions.Technology pupils through a thorough assessment of the available literature, empirical investigations, cross-sectional research of qualitative, and quantitative data and surveys. These approaches include peer instruction, concept mapping, inquiry-based learning, experiential learning, case-based learning, simulation-based learning, collaborative learning, problem-based learning, flipped classrooms and project-based learning. The findings illustrate how these active learning approaches profoundly impact B.Tech students. Greater participation of pupils, improved academic results, more substantial critical thinking abilities, and a more comprehensive understanding of science and technology concepts are the outcomes of adopting these approaches in the field of engineering education. Through the results of this research, we aim to illustrate how active learning approaches can enrich the lives of pupils along with how these can assist them excel in their careers. Additionally, we intend to highlight how these approaches can allow learners to improve their concepts and skills in a more appreciated manner. These teaching methods also foster a lifetime love of learning while preparing students for the expanding demands of the developing engineering industry.

Keywords


Active learning methodologies, collaborative learning, problem-based learning