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  • 1.
    Englund, Claire
    et al.
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Sjöström, Hans-Erik
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Fick, Hanna
    Umeå universitet, Teknisk-naturvetenskapliga fakulteten, Kemiska institutionen.
    Communication training in a virtual pharmacy2013Ingår i: Reformation, revolution, evolution: universitetslärandet ur ett tidsperspektiv : konferensrapport / [ed] Erik Lindenius, Umeå: Universitetspedagogiskt centrum (UPC), Umeå universitet , 2013, s. 11-26Konferensbidrag (Refereegranskat)
    Abstract [en]

    This paper describes and reflects on a project carried out at the University of Umeå to examine how communication training for pharmacy students can be developed and implemented in three dimensional virtual worlds such as Second Life (SL). Immersive virtual worlds can be used in higher education in a range of disciplinary contexts and for a variety of educational purposes. The present project has focused on communication training for students studying on an online distance programme: Bachelor of Science in Pharmacy at Umeå University, Sweden. The main purpose of the project was to examine how communication training can be designed and implemented in SL and to assess its effectiveness.

  • 2.
    Mattsson, Sofia
    et al.
    Umeå universitet, Medicinska fakulteten, Institutionen för farmakologi och klinisk neurovetenskap, Farmakologi.
    Sjöström, Hans-Erik
    Umeå universitet, Umeå universitetsbibliotek (UB), Universitetspedagogik och lärandestöd (UPL).
    Englund, Claire
    Umeå universitet, Umeå universitetsbibliotek (UB), Universitetspedagogik och lärandestöd (UPL).
    Using a Virtual Tablet Machine to Improve Student Understanding of the Complex Processes Involved in Tablet Manufacturing2016Ingår i: American Journal of Pharmaceutical Education, ISSN 0002-9459, E-ISSN 1553-6467, Vol. 80, nr 5, artikel-id 87Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Objective. To develop and implement a virtual tablet machine simulation to aid distance students' understanding of the processes involved in tablet production.

    Design. A tablet simulation was created enabling students to study the effects different parameters have on the properties of the tablet. Once results were generated, students interpreted and explained them on the basis of current theory.

    Assessment. The simulation was evaluated using written questionnaires and focus group interviews. Students appreciated the exercise and considered it to be motivational. Students commented that they found the simulation, together with the online seminar and the writing of the report, was beneficial for their learning process.

    Conclusion. According to students' perceptions, the use of the tablet simulation contributed to their understanding of the compaction process.

  • 3.
    Mattsson, Sofia
    et al.
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC). Umeå universitet, Medicinska fakulteten, Institutionen för farmakologi och klinisk neurovetenskap, Farmakologi.
    Sjöström, Hans-Erik
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Lampe Persson, Jonas
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Englund, Claire
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Use of a virtual tablet machine in pharmaceutical education2012Ingår i: NGL 2012 Next Generation Learning Conference Falun: Book of Abstracts, 2012Konferensbidrag (Refereegranskat)
    Abstract [en]

    One of the pedagogical problems frequently faced by distance students, particularly on web-based vocational programmes, is the lack of opportunity to train practical elements in the course. This presentation describes a project to provide a technological solution to this problem and also to enhance distance students’ understanding of the processes involved in tablet production by means of a virtual tablet machine. The web-based Master of Science in Pharmacy Programme at Umeå University includes the course Drug Formulation. One of the expected learning outcomes of the course is to understand and explain relationships between composition, compaction process and properties of tablets. In order to facilitate this, a tablet simulation (virtual tablet machine) was created. Simulations can be successfully used in education to illustrate rather complex relationships during a limited time frame and they are also ideal in distance education since they do not require access to expensive laboratory facilities and can be carried out by the student at any time and place. A web-based tablet simulation was created enabling the students to choose different compositions, compaction pressures and compaction speeds in order to observe which effect these parameters have on the properties of the tablet produced. The simulation is performed and the results are displayed in the form of graphs. Once the results have been generated the students then interpret and explain the results on the basis of current theory using a Wiki. During the course the students also manufacture tablets in real life; the tablet simulation therefore also serves as preparation for these practical experiments. After the simulation had been carried out it was evaluated by the students in the form of a written questionnaire and a focus group interview. The students found the tablet simulation easy to use, motivational and considered the simulation to have contributed to their understanding of the compaction process. The students also considered the simulation to be a good theoretical preparation for the practical experiments. Some operational problems were reported, for example difficulties in changing the compaction pressure and the presentation of the results may also be improved. In conclusion, we found that the use of the tablet simulation, in combination with practical experiments and assignments, improved the student’s understanding of the compaction process and provided a suitable technological solution to a pedagogical problem in a web-based Pharmaceutical Science Programme. The project would like to thank “Flexible education at Umeå University” for financial support.

  • 4.
    Sjöström, Hans-Erik
    et al.
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Idberger, Karl
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Ivarsson, Jörgen
    Umeå universitet, Humanistiska fakulteten, Universitetspedagogiskt centrum (UPC).
    Supporting Course Redesign: Strategies for Change2012Ingår i: ONLINE EDUCA BERLIN: Reaching Beyond Tomorrow, 2012Konferensbidrag (Övrigt vetenskapligt)
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