View count: 77

Dept. of Electro-Optics Engineering Educational Objectives

Department of Photonics Engineering
1. Establish students’ foundational knowledge in photonics-related technologies
1.1 Develop basic analytical abilities in mathematics and physics
1.2 Develop skills in professional report writing, presentations, and basic foreign language proficiency
1.3 Acquire fundamental disciplinary competencies in the field of photonics
2. Cultivate professional talents required by the photonics industry
2.1 Strengthen fundamental knowledge of photonics industrial technologies
2.2 Enhance students’ hands-on practical abilities in photonics-related technologies
2.3 Enhance students’ application and design capabilities in photonics technologies
2.4 Develop students’ abilities in statistics and data analysis
3. Train students in independent thinking and teamwork
3.1 Train students to integrate theoretical knowledge with practical applications and problem-solving skills
3.2 Develop students’ abilities in task division and system integration
3.3 Strengthen students’ abilities in independent thinking and innovation
3.4 Reinforce professional ethics, dedication, and enhance students’ humanistic literacy and aesthetic appreciation
4. Foster students’ global perspectives and social responsibility
4.1 Strengthen domestic and international inter-university exchanges to broaden global perspectives
4.2 Cultivate a strong sense of social responsibility and integrity
4.3 Adhere to intellectual property rights and professional ethics

Master’s/Doctoral Program in Photonics and Materials Science
1. Establish advanced knowledge in photonics and materials-related technologies
1.1 Develop logical thinking and advanced analytical abilities in mathematics and physics
1.2 Enhance professional academic literature reading, writing, and foreign language proficiency
1.3 Acquire comprehensive understanding of professional domains in photonics
1.4 Enhance students’ humanistic literacy and aesthetic appreciation
2. Cultivate professional R&D talents required by the photonics and materials industries
2.1 Strengthen capabilities in fundamental photonics research, photonics inspection system development, and energy photonics research
2.2 Reinforce advanced knowledge in practical photonics applications, emerging photonics technologies, and photonics system integration
2.3 Cultivate students’ capacity to develop new applications in photonics technologies
2.4 Develop students’ abilities in statistics and data analysis
3. Train students in independent innovative thinking and teamwork concepts
3.1 Train students in information collection, integrated analysis, and reporting skills
3.2 Enable students to develop innovative thinking and interdisciplinary technology integration and communication skills
3.3 Enhance students’ abilities in independent thinking, leadership, management, and planning
3.4 Reinforce professional ethics, dedication, and enhance students’ humanistic literacy and aesthetic appreciation
4. Foster students’ international perspectives and sense of social responsibility
4.1 Strengthen domestic and international inter-university exchanges to broaden global perspectives
4.2 Cultivate a strong sense of social responsibility and integrity
4.3 Comply with intellectual property rights and professional ethics