scholarly journals Simulation research and design: a dual-level framework for multi-project research programs

Author(s):  
Maximilian C. Fink ◽  
Anika Radkowitsch ◽  
Elisabeth Bauer ◽  
Michael Sailer ◽  
Jan Kiesewetter ◽  
...  

AbstractCollaborations between researchers and practitioners have recently become increasingly popular in education, and educational design research (EDR) may benefit greatly from investigating such partnerships. One important domain in which EDR on collaborations between researchers and practitioners can be applied is research on simulation-based learning. However, frameworks describing both research and design processes in research programs on simulation-based learning are currently lacking. The framework proposed in this paper addresses this research gap. It is derived from theory and delineates levels, phases, activities, roles, and products of research programs to develop simulations as complex scientific artifacts for research purposes. This dual-level framework applies to research programs with a research committee and multiple subordinate research projects. The proposed framework is illustrated by examples from the actual research and design process of an interdisciplinary research program investigating the facilitation of diagnostic competences through instructional support in simulations. On a theoretical level, the framework contributes primarily to the literature of EDR by offering a unique dual-level perspective. Moreover, on a practical level, the framework may help by providing recommendations to guide the research and design process in research programs.

Author(s):  
Helén Elisabeth, Kristina Sterner

Educational design research provides opportunities for both the theoretical understanding and practical explanations of teaching. In educational design research, mathematics teachers’ learning is essential. However, research shows that little consideration is given to teachers and the participation of teachers throughout the entire design process as well as in continued learning. With this in mind, an educational teacher-focused design research was used to explore the challenges teachers face and the opportunities teachers are given when they participate as actors in all the phases of educational design research - designing, teaching, and refining theoretical concepts within the teaching. In this study, the mathematics focus of the design research was generalizations in patterns with Design Principles as the theoretical frame. The results show that the participation of teachers in all the phases of a design process is central for the teachers’ learning. Moreover, challenges that the teachers encounter in the classroom provide opportunities and consequences for the continued design process and lead to changes in the teachers’ understanding of generalizations. The results also indicate that functional thinking and linear equations contributed to both the teachers’ and students’ learning about generalizations in patterns.


2020 ◽  
Vol 2 (2) ◽  
pp. 1-14
Author(s):  
Thomas Cochrane ◽  
Joshua Munn

This paper explores the interrelationship between educational design research, and design thinking that guides the design stage, enabling the design of authentic collaborative mobile learning environments. As an example the article outlines the design thinking principles and processes that informed the development of wireless mobile presentation systems (MOAs) designed to create a flexible infrastructure to enable the exploration of new pedagogies in different educational contexts. The project used design thinking within an educational design research methodology to provide an in house solution to creating a supporting infrastructure to enable the implementation of a new framework for creative pedagogies and curriculum redesign. The article reflects upon example implementations of using mobile social media and MOAs as a catalyst for implementing our framework for creative pedagogies, and propose collaborative curriculum design principles for integrating the use of mobile social media within new pedagogical paradigms.


2020 ◽  
Vol 1 (4) ◽  
pp. 211
Author(s):  
Astri Ajeng Lestari ◽  
Edi Hendri Mulyana ◽  
Dindin Abdul Muiz

Unsur Engineering pada kegiatan Pembelajaran STEAM belum diterapkan di TK IP Assalam, hal ini terjadi karena Pendidik belum mengetahui kegiatan Pembelajaran STEAM. Tujuan dari Penelitian ini yaitu untuk menganalisis Rancangan Unsur Engineering pada Pengembangan Pembelajaran STEAM Subtema Kendaraan Darat untuk Anak Usia Dini. Alasan dilaksanakannya penelitian ini yaitu untuk menganalisis setiap unsur yang terdapat pada STEAM, sehingga Pembelajaran STEAM dapat dilaksanakan secara optimal. Penelitian ini menggunakan metode Educational Design Research dengan mengunakan tahap penelitian menurut McKenney & Reeves, yaitu: 1) Tahap Analisis dan Eksplorasi dan 2) Tahap Desain dan Konstruksi. Teknik pengumpulan data dilakukan dengan cara observasi, wawancara, dokumentasi, dan validasi. Hasil penelitian menunjukkan bahwa kegiatan pembelajaran yang dilaksanakan di TK IP Assalaam belum menggunakan model Pembelajaran STEAM, dikarenakan pendidik belum mengetahui kegiatan Pembelajaran STEAM, sehingga peneliti merancang kegiatan Pembelajaran STEAM untuk Anak Usia Dini. Rancangan kegiatan pembelajaran yang dikembangkan mengandung unsur Engineering dan relevan dengan Kompetensi Dasar dan Indikator Pencapaian yang sesuai dengan kurikulum 2013. Analisis kelayakan pada Unsur Engineering dalam Pembelajaran STEAM Subtema Kendaraan Darat untuk Anak Usia Dini, layak diujicobakan karena kegiatan Pembelajaran yang dirancang sesuai dengan langkah-langkah pembelajaran STEAM yaitu Ask, Imange, Try, Try Again dan sesuai dengan langkah-langkah Engineering Design Process yaitu Ask, Image, Plan, Try, dan Try Again. Adapun Aspek yang dikembangkan dari Unsur Engineering yaitu Kognitif, Bahasa dan Fisik Motorik.


2020 ◽  
Author(s):  
Yumiko Murai ◽  
Ryohei Ikejiri ◽  
Yuhei Yamauchi ◽  
Ai Tanaka ◽  
Seiko Nakano

Cultivating children’s creativity and imagination is fundamental to preparing them for an increasingly complex and uncertain future. Engaging in creative learning enables children to think independently and critically, work cooperatively, and take risks while actively engaging in problem solving. While current trends in education, such as maker movements and computer science education, are dramatically expanding children’s opportunities for engagement in creative learning, comparatively few empirical studies explore how creative learning can be integrated into the school curriculum. The educational design research described in this paper focuses on a curriculum unit that enables students to engage with creative learning through computer programming activities while meeting curriculum goals. The data provided in this paper were drawn from three classroom tryouts, the results of which were used to drive an iterative design process. This paper also shares several insights on the impact of creative learning in curriculum teaching.


Author(s):  
Hanna Teräs ◽  
Jan Herrington

<p class="Abstract"><span lang="EN-GB">Teaching in higher education in the 21st century can be a demanding and complex role and academic educators around the globe are dealing with questions related to change. This paper describes a new type of a professional development program for teaching faculty, using a pedagogical model based on the principles of authentic e-learning. The program was developed with the help of an iterative educational design research process and rapid prototyping based on on-going research and redesign. This paper describes how the findings of the evaluations guided the design process and how the impact of the measures taken was in turn researched, in order to eventually identify and refine design principles for an authentic e-learning program for international teaching faculty professional development.</span></p>


2020 ◽  
Vol 5 (2) ◽  
pp. 50-57
Author(s):  
Dwi Purbaningrum

Penelitian ini merupakan penelitian pengembangan media pembelajaran berupa kompor tenaga matahari berbasis STEM materi sains sekolah dasar untuk mendukung Kurikulum 2013. Penelitian ini sebagai solusi dari permasalahan pendidik mengenai pembelajaran menggunakan media pada Kurikulum 2013 dalam menghadapi tuntutan pendidikan abad 21. Diharapkan peserta didik memiliki pengetahuan dan keterampilan STEM secara terpadu yang dapat diterapkan mulai dari tingkat Sekolah Dasar (SD). Penelitian ini bertujuan untuk: 1) mendeskripsikan dasar kebutuhan pembelajaran menggunakan alat peraga berbasis STEM; 2) mengembangkan rancangan alat peraga sederhana berbasis STEM; 3) mendeskripsikan alat peraga sederhana bebasis STEM. Desain penelitian yang digunakan adalah model Educational Design Research (EDR) menurut McKenney & Reaves, yang terdiri dari tiga tahap yaitu: 1) Analysis and Exploration; 2) Design and Construction; 3) Evaluation and Reflection. Penelitian ini dilakukan sampai tahap kedua yaitu Design dan Construction. Alat peraga yang digunakan adalah kompor tenaga matahari yang dapat digunakan pada materi sumber energi. Pengembangan hasil rancangan alat peraga sederhana berbasis STEM dilakukan dengan menyusun RPP yang berpotensi, menganalisis KD berbasis STEM, dan menyiapkan alat maupun bahan yang digunakan dalam percobaan. Alat peraga sederhana berbasis STEM berbentuk kubus yang berasal dari kardus bekas, kemudian empat bagian atas tutup kardus dilapisi kertas silver yang berguna untuk memantulkan cahaya sebagai sumber panas.


EduKimia ◽  
2021 ◽  
Vol 3 (2) ◽  
pp. 109-114
Author(s):  
Amanda Mareza ◽  
Yerimadesi Yerimadesi

Teaching materials are said to be practical if the practitioners or the experts state that the developed teaching materials can be applied in the research. The purpose of this research is to reveal the practicality of redox e-modules and GDL-based electrochemical cells for XII grade of high school students. This research is a continuation of educational design research with the Plomp development model at the prototyping stage, this research was conducted at SMAN 1 Lintau Buo Utara. The data were analyzed with the Aiken V formula. The results of one-to-one evaluation showed that the e-module uses clear fonts, covers and attractive designs, the language used is easy to understand, the presentation of coherent material, videos and animations can help students to understand the material. The results of the analysis on the average Aiken V formula obtained a V value of 0.88 at the small group stage and 0.86 at the high category field test stage. This data is evidenced by the ability of students to answer questions on the e-module by 90.5 percent with a very high category. Based on the data analysis, it is concluded that the e-module redox and electrochemical cells based on GDL are practically used in the learning process with a high practicality category.


2021 ◽  
Vol 9 (3) ◽  
pp. 285
Author(s):  
Mohamad Nor Aufa ◽  
Sutarto Hadi ◽  
Syahmani Syahmani ◽  
Rusmansyah Rusmansyah ◽  
Muhammad Hasbie ◽  
...  

This study aims to produce a science module based on mobile-collaborative-based science learning (m-CBSL) with the topic of temperature and heat and describe the resulting module's validity and practicality. The research design was Educational Design Research (EDR). The data collection techniques used were literature study, walkthrough, interview, and questionnaire. The instrument used in this study was a questionnaire of validity and practicality. Data analysis techniques include descriptive data analysis, validation sheets, and questionnaires. Module validation sheets were given to 5 validators. In contrast, practicality sheets were given to 9 students of class VII SMP Negeri 12 Banjarmasin (small group) and 62 students and three science teachers at SMP Negeri 6 & 12 Banjarmasin field test. The validity questionnaire analysis results concluded that the validity of the module was 3.71 "very valid" categories. The practicality level based on the teacher's questionnaire scored 87.04 in the "very practical" category. The small group questionnaire scored 85.19 in the "very practical" category, and the field trial questionnaire scored 86.42 in the "very practical" category. It means that the m-CBSL based science module is valid and practical in the learning process to improve critical thinking skills and collaboration.


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