Study of Interdisciplinary Specialized Mechanical Engineering Education

2011 ◽  
Vol 199-200 ◽  
pp. 1676-1679
Author(s):  
Ping He ◽  
Nai Chao Chen ◽  
Jiang Wu

A novel teaching method is proposed to design the contents of the interdisciplinary courses for the specialized mechanical engineering education. The paper discusses the necessity of assigning the proper interdisciplinary courses on the analysis of currently increasing mixed-talent requirement in our modern society. The characteristics of interdisciplinary research are elucidated in order to obtain the hints for guiding the reform of teaching method to suit for the new status that occur in the interdisciplinary course. The relationships and intersections among the different majors are regards as the most important factor for teaching the interdisciplinary courses well. Refining the associated knowledge from these intersections is the core task for teachers since these contents are very easy to avoid the intense inner anxiety and conflict for the student due to the difference between the own and other majors. For the teacher, the contents of lessons should be designed on the basic of the specialized skill of student’s major and not exceed their knowledge structures on a large degree. Based on this behavior, the detailed knowledge of specialized mechanical engineering is gradually assigned in the classes and terminally the whole specialized industry is learned by the student, which is the desired goal. Finally, the example of electrical machinery is addressed for verifying the effectiveness of the approach of refining the intersections to design the contents and classes. The practical results show that the method proposed in this paper has the high effectiveness on teaching the interdisciplinary specialized mechanical engineering education. In addition, we believe that this schema is also able to be applied for the related interdisciplinary courses.

2012 ◽  
Vol 591-593 ◽  
pp. 2199-2202 ◽  
Author(s):  
Yang Fang Wu ◽  
Shu Li Sun ◽  
Hua Liu

Advanced CDIO engineering education philosophy, emphasizing the design of integrated curriculum plans. Traditional mechanical engineering plan is hard to be increased the curriculum content and hours. A "nexus" method is proposed in this paper, through the redistribution of the available time and resources to achieve integration curriculum plans. Theory mechanics as an important course of mechanical engineering discipline is described in detail to implement the “nexus” teaching method. The professional learning interests of students is improved effectively, the bad habit of "learn a new course, forget an old one" for the college students is changed to a certain extent.


Author(s):  
Richard Retzlaff ◽  
David Torvi ◽  
Richard Burton

Professional Engineers are generally accountable for the construction of a physical artifact. Therefore, an important outcome of an engineering education is to appreciate this accountability within the context of engineering design classes. To this end, the second year mechanical engineering design class at the University of Saskatchewan was modified to emphasize accountability through physical prototyping. Significant changes to the structure and facilities used in the course were required to implement this new teaching method. These included schedule changes, faculty advisor orientation, and the establishment of a five-workstation fabrication/prototyping lab. Anecdotal and survey evidence over the first three years suggests the change was a success.


2011 ◽  
Vol 199-200 ◽  
pp. 1680-1683
Author(s):  
Ping He ◽  
Nai Chao Chen ◽  
Dan Mei Hu

The team-individual approach is proposed to act as the teaching method for the curriculum design course in the mechanical engineering education. Firstly, the paper describes the contradictions of the cultivation and requirements for the students between universities and enterprises. Namely, the individual education in the universities is very different with the team spirit with widely recommendations of most modern enterprises. We elucidate the similar feature between team spirit and individual education that is extreme stimulation of the maximum personal intrinsic potential for helping success in their career. Therefore, team-individual teaching method emphasizes on the integration of team-spirit and individual education, by which teacher not only provide the platform for students to arouse their initiative for independent learning and thought but also range their behaviors to enclose the objective of their associated team. In addition, teachers should assess the students based on their work by the oral examination in the limited time and offer the score on the spot and expose it to all the students, which play a vital role on the stimulation for the students. The experimental results in our university show the validation and effectiveness by the team-individual teaching method for the curriculum design course in the mechanical engineering education. Furthermore, team-individual teaching method is also supposed to have the high effective function for the other engineering educations.


TAMAN VOKASI ◽  
2014 ◽  
Vol 2 (2) ◽  
Author(s):  
Setuju Setuju ◽  
Suparmin Suparmin

This study aims to determine the effect of using mdsolids software mechanics materials course to improve learning outcomes and learning independence of student Mechanical Engineering Education Sarjanawiyata Tamansiswa University of Yogyakarta.This research was conducted with quasi-experimental methods. The results of the study were collected with the test group, and analyzed by t-test. Independence of student learning during the lesson observed, further analyzed by calculating the gain scores.The results of the t test of the difference test provides information that the average achievement of the experimental group was significantly different from the control class. The results of the experimental class learning better than the control class. Students who use the software program Mdsolids in mechanics of materials courses after having observed an increase in independent learning and learning at each end of the five overall aspects of the independence of the measured category has a high learning independence with an average achievement score on the five aspects of learning independence of 0, 73.


2020 ◽  
Vol 1 (2) ◽  
pp. 91-96
Author(s):  
Wiyogo

Abstrak: Alat permainan edukatif memiliki manfaat penting dalam perkembangan kognitif anak, keterampilan motorik, dan kebugaran anak. Desain dan pembuatan yang dilakukan di Laboratorium Pendidikan Teknik Mesin Universitas Palangka Raya perlu dianalisis untuk mengetahui sejauh mana alat ini berguna. Hal pertama yang harus dilakukan adalah mempelajari literatur dan kemudian mengidentifikasi variabel penelitian yang bertujuan mendapatkan gambaran tentang apa yang dibutuhkan pengguna. Dari hasil kuesioner awal, tiga variabel diperoleh, yaitu desain, permainan mudah, dan keamanan. Data penelitian lebih lanjut yang telah diperoleh dengan nilai indeks dari produk yang diperoleh adalah 94,83%.   Abstract: Educational game tools have important benefits in a child's cognitive development, motor skills, and children's fitness. The design and manufacturing done at the Mechanical Engineering Education Laboratory of Palangka Raya University needs to be analyzed to find out how far the tool is useful. The first thing to do is to study the literature and then identify research variables aimed at getting a picture of what the user needs. From the results of the initial questionnaire, three variables were obtained, namely design, easy game and safety. Further research data that have been obtained with an index value of the products obtained are 94.83%.


2020 ◽  
Vol 1 (2) ◽  
pp. 64-70
Author(s):  
Rezky Fajar Ramadhan

Abstrak: Tujuan penelitian ini adalah untuk mendeskripsikan penggunaan peralatan Kesehatan dan Keselamatan Kerja (K3) pada Mata Kuliah Praktikum Proses Produksi mahasiswa Pendidikan Teknik Mesin, Universitas Palangka Raya. Jenis penelitian ini adalah deskriptif. Teknik pengumpulan data menggunakan teknik angket dan dokumentasi. Objek penelitian adalah seluruh mahasiswa Pendidikan Teknik Mesin, Universitas Palangka Raya yang memprogramkan Mata Kuliah Praktikum Proses Produksi. Hasil penelitian ini menunjukkan bahwa 43% mahasiswa menyatakan sangat baik dan 57% mahasiswa menyatakan baik penggunaan peralatan K3 pada Mata Kuliah Praktikum Proses Produksi. Sehingga, disimpulkan bahwa penerapan K3 dapat mendukung pelaksanaan praktikum proses produksi.   Abstract: The purpose of this study was to describe the use of Occupational Health and Safety (OHS) equipment in the Production Process Practicum Subject of Mechanical Engineering Education students, Palangka Raya University. This type of research was descriptive. Data collection techniques used questionnaires and documentation. The object of research was all students of Mechanical Engineering Education, Palangkaraya University who programed Production Process Practicum Subjects. The results of this study indicate that 43% of students stated very well and 57% of students stated good use of OHS equipment in the Production Process Practicum Course. Thus, it was concluded that the application of OHS can support the implementation of practicum in the production process.


2013 ◽  
Vol 3 (S2) ◽  
pp. 27 ◽  
Author(s):  
Tiago Faustino Andrade

<span style="font-size: 10.0pt; font-family: &quot;Times New Roman&quot;,&quot;serif&quot;; mso-fareast-font-family: SimSun; mso-ansi-language: EN-US; mso-fareast-language: EN-US; mso-bidi-language: AR-SA;" lang="EN-US">In the present work, the author reports examples of his involvement in different teaching/learning methodologies during his five years of the Integrated Master Degree in Mechanical Engineering at the Faculty of Engineering of University of Porto. The aim is to explain how useful those experiences have been, allowing him to explore many techno-scientific activities within his engineering education while student as well as other <span style="letter-spacing: -.05pt;">transferable</span> skills and later, up to the present, as a professional in academic environment. The author wishes to underline the excellent opportunity he had to practice reflection processes as an essential methodology of his engineering education.</span>


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