Megabit Faculty in a Gigabit World: Student Perceptions of Technology Education Programs

2015 ◽  
Vol 11 (2) ◽  
pp. 1-14
Author(s):  
Stephen Cheskiewicz ◽  
Dana Burnside ◽  
Kenneth Zula
1991 ◽  
Vol 20 (2) ◽  
pp. 157-166 ◽  
Author(s):  
Thomas T. Liao

Two technology education programs are reviewed to determine how well they are designed to prepare students for the workplace or engineering careers. A list of workplace related functional skills is used as evaluation criteria for the assessment. Another aspect of this review concerns how contextual learning has been implemented. Both programs were judged to contain instructional activities that use advanced technology effectively to prepare students for the workplace or college. These programs are also excellent models of how to help students learn concepts and skills via real-world problems and examples.


10.28945/2794 ◽  
2004 ◽  
Author(s):  
Glen Van Der Vyver ◽  
Michael Lane

The emergence of the Internet has made many institutions involved in the delivery of distance education programs re-evaluate the course delivery framework. A variety of models and techniques co-exist in an often uneasy alliance at many such institutions. These range from the traditional distance learning model, which remains paper-based, to the purely online model. Recently, hybrid models have emerged which apparently attempt to forge elements taken from several models into a unified whole. Many of these hybrid models seek to eliminate paper-based materials from the tuition process. While many arguments are put forward about the efficacy of purely electronic delivery mechanisms, cost containment is often the driving motivation. This study explores student perceptions of the various delivery mechanisms for distance learning materials. In particular, it seeks to determine what value students place on paper-based delivery mechanisms. The study surveys a group of undergraduate students and a group of graduate students enrolled in the Faculty of Business at a large regional Australian university.


2016 ◽  
Vol 15 (3) ◽  
pp. 271-283
Author(s):  
Ching-Ching Cheng ◽  
Kuo-Hung Huang

Prior studies indicated that children’s images of science and engineering greatly influenced their attitude toward career choice. This study explored how elementary school students perceived computer professionals and computer job tasks. Sixty-four students attending computer camps in 2 cities participated in the study. The Draw-a-Scientist Test was employed and interviews were performed to collect and analyze student perceptions of computer professionals and computer job tasks. The results indicated that the students held contrasting perceptions of computer professionals. Although some students envisioned computer professionals with stereotypical characteristics, such as poor eyesight and unsociability, many students viewed computer professionals as people who were knowledgeable, mild tempered, and socially attractive. Moreover, students residing in different areas had conflicting perceptions of computer professionals because of personal experience with various types of computer professional. The results suggested that students did not stereotype computer careers according to gender, but female students exhibited a more negative attitude toward computer careers than did male students. To shape student views on computer jobs and career choices effectively, the researchers suggest providing students with learning opportunities in life contexts to understand the nature of computer professions. Key words: career perception, digital divide, gender studies, perception of computer scientists, science and technology education, urban-rural gap.


2019 ◽  
Vol 23 (4) ◽  
Author(s):  
Brian Samuel Horvitz ◽  
Lisa R Garcia ◽  
Regina Garza Mitchell ◽  
Cheryl D Calhoun

Technical education programs in community colleges prepare students for many science and engineering-based jobs in the United States. An increasing number of technical education programs in community colleges are using online learning tools to teach courses. However, little is currently known about the ways these programs are integrating online learning in their coursework. This study examined fifteen National Science Foundation funded technical education programs that use online learning to partially or entirely deliver their courses. We conducted semi-structured interviews with key personnel from each project. Through analysis of this data, we found that technical education programs used a variety of instructional delivery approaches that can be categorized as follows: (a) a hybrid or blended course with asynchronous online lectures; (b) a hybrid or blended course with synchronous lectures; (c) a hybrid or blended course with a combination of asynchronous and synchronous lectures and discussions; or (d) a course that is fully online. We also found that online or hybrid technical education programs used a variety of different methods to give students experience in their field of study that can be categorized as follows: (a) pre-recorded video; (b) live video; (c) simulations; (d) equipment at home; (e) equipment in lab; and (f) professional site experience. We recommend that future research examine how well these approaches are working, incorporate student perceptions, and incorporate the views of employers of these programs’ graduates.


Sign in / Sign up

Export Citation Format

Share Document