A Study on Situated Cognition: Product Dissection’s Effect on Redesign Activities

Author(s):  
Katie Grantham ◽  
Gu¨l Okudan ◽  
Timothy W. Simpson ◽  
Omar Ashour

Situation cognition theory describes the context of a learning activity’s effect on learner’s cognition. In this paper, we use situated cognition theory to examine the effect of product dissection on product redesign activities. Two research questions were addressed: 1) Does situated cognition, in the form of product dissection, improve product functionality during redesign exercise?, and 2) Does situation cognition, again in the form of product dissection, affect the creativity of product redesigns? In this study, three sections of first year students in two different locations — The Pennsylvania State University (Penn State) and Missouri University of Science and Technology (S&T) — performed product redesign using either an electric toothbrush or a coffee maker. The redesigned products have been analyzed with respect to both depth (detail level) and creativity.

Author(s):  
A.V. Ryzhaya ◽  
◽  
E.I. Glyakovskaya ◽  

In laboratory classes on invertebrate zoology for first-year students of the Biology and Ecology Faculty of the Y. Kupala Grodno State University current control of knowledge in a test form is carried out. The number of questions in the task is 11–20, 5– 10 minutes for execution are allotted, one, two or more correct answers are selected from the proposed options. For each correct answer, a point is set; for erroneous answers, penalty points are entered. The regular use of test control increased the level of students' assimilation of educational material and optimized the current control of knowledge.


2020 ◽  
pp. 53-58
Author(s):  
Olga Viktorovna Bodenova ◽  
Lyudmila Pavlovna Vlasova

The article is devoted to the overview of one of the most current problems that arise in the process of supporting the adaptation of students. The paper reveals the content of the adaptation process, its content and procedural characteristics, describes the types and stages, and directions of diagnostics. The aim of the work is to identify the features of adaptation in first-year students, including the description of the specifics of difficulties of non-resident students’ adaption. The study was conducted at the Institute of Pedagogy and Psychology “Petrozavodsk State University” with first-year students studying in the fields of education 44.03.02 Psychological and pedagogical education, 44.03.01. Pedagogical education, 44.03.03 Special (defectologic) education. The following methods were used to test the hypothesis: «I am a student» survey, «Scale of subjective well-being» method, analysis of documents (medical records of students), quantitative and qualitative analysis. The results of the study. Analysis of the results of the study showed that non-resident students have both general and specific difficulties of adaptation due to the breakdown of previous family and friendships, lack of emotional support, difficult living conditions, a new neighborhood, a new type of settlement, etc. The obtained results are used for development and implementation of measures to support students during the adaptation period.


MRS Bulletin ◽  
1992 ◽  
Vol 17 (9) ◽  
pp. 22-26
Author(s):  
Rustum Roy

Robert Sproull, the director of AREA (Advanced Research Projects Agency) in the Pentagon, recorded that Pennsylvania State University and Carnegie Institute of Technology first made proposals in 1957 for “interdisciplinary block funding” in what would essentially become “materials” research. But it was the industrial push (by W.O. Baker of AT&T Bell Laboratories and C.G. Suits of General Electric) that helped ARPA start the funding of 12 interdisciplinary materials research laboratories (IDMRLs) between 1960 and 1963. Pennsylvania State University was added in 1963 as a special modest grant limited to materials preparation (synthesis and processing). NASA and the Atomic Energy Commission added six more within two years. The first interdisciplinary degree program in “materials” (then called solid-state technology), administered directly by a graduate school committee drawn from 10 departments, was started under my chairmanship, at Penn State in 1959-60. Probably the first departmental degree program in which a metallurgy department expanded its scope (and changed its name) to include other materials was started at nearly the same time at North western University by Prof. M.E. Fine. It is noteworthy that at least in these two cases the intellectual and curricular argument for integration of degree work preceded the research grants and organization. These two separate patterns have both now permeated the entire national system, and we should clearly distinguish between them. By 1969 the first national colloquy on materials, held at Penn State and published under the title Materials Science and Engineering in the U.S., took an evaluative look at materials education.


2019 ◽  
Vol 80 (2) ◽  
pp. 92
Author(s):  
Alexandria Chisholm ◽  
Brett Spencer

Penn State-Berks is one of 24 commonwealth campuses in the Pennsylvania State University (PSU) system. With around 2,800 students, it is a small, tight knit community, yet remains one of the largest campuses outside of University Park.While the campus is spacious and beautiful, one feature it lacks is an adequate student center, which makes the Thun Library the heart of the campus. Not only does the library provide traditional and valued services, such as access to textbooks on reserve, computer and software access, and research assistance, it is also a location where students gather to study, hang out between classes, and conduct group work. With a large commuter population, the library offers vital spaces for those without dorm rooms to complete their work. In addition, several other departments are also housed within the building, including the Center for Teaching and Learning along with the information technology (IT) help desk.


2005 ◽  
Vol 13 (6) ◽  
pp. 46-47
Author(s):  
Thomas F. Kelly ◽  
Allan J. Melmed

October 2005 marks 50 years since the first images achieving atomic resolution were obtained by Erwin Miiller and Kanwar Bahadur at the Pennsylvania State University using field ion microscopy. An image from that seminal work is shown in Figure 1. Two separate meetings were held this year to commemorate this important event in the history of microscopy; the 50th Anniversary of Atomic Resolution Microscopy, held June 15-17, 2005 at Penn State and the Golden Anniversary of Atomic Resolution Imaging, a symposium at Microscopy and Microanalysis 2005 in Honolulu held July 31 to August 4, 2005. These celebrations were timed to coincide also with the World Year of Physics 2005 http://www. wyp2005.org/.


Author(s):  
Irina Medvedeva ◽  
Oxana Martynyuk ◽  
Svetlana Pan’kova ◽  
Irina Solovyova

Assessing the competencies of students is an important and challenging task. The article presents the experience of evaluating the universal competencies of students. We created individual and group exercises, criteria for evaluating the results of these exercises for assessing the universal competencies of students. In addition to expert evaluation, students were interviewed to identify their self-esteem. The created assessment tools were used for several years at the Faculty of Physics and Mathematics of the Pskov State University to assess the universal competencies of first year students (more than 200 students participated). Some research results are analyzed in the article.


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