Simulation-based enhancement of learning: The case of food safety

Q2 Social Sciences Journal of Food Science Education Pub Date : 2020-07-01 DOI:10.1111/1541-4329.12199
Ashim K. Datta, Mayuri S. Ukidwe, David G. Way
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引用次数: 5

Abstract

Importance of online learning has become more critical with the advent of a global pandemic. Effective online learning requires design characteristics that support learning that crosses traditional disciplinary boundaries. The example of educational delivery of food safety encompasses multiple disciplines to prepare students for real-world situations, practical problem-solving, and to be “future proof” as food safety becomes more quantitative. This study explicates how six simulation-based learning modules were evaluated, two each in microbiological growth/inactivation, food process dynamics with microbiological growth/inactivation, and risk assessment. Each group of three modules was targeted to the students in undergraduate food science and engineering programs. Altogether, the 6 modules were implemented and assessed in 17 courses at 14 universities over 5 years. The effectiveness of the module-based approach was sustained across subject matter (microbiology, process, and risk), disciplines (food science and engineering), and their implementations. Students’ and instructors’ survey responses indicated the modules’ value in real-world and practical problem-solving ability. Instructors were also motivated to implement the modules as they saw the potential for improvement in student understanding, how modules reinforced course learning outcomes, the quality of support provided with modules, and their ability to replace existing course assessment without adding work for the instructor or the students. This self-learning, module-based approach to introduce interdisciplinary content employed has proven successful. The template for making these modules is described in sufficient detail so future modules can be built for a wide variety of subject matter beyond food safety.

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基于模拟的学习强化:以食品安全为例
随着全球流行病的到来,在线学习的重要性变得更加重要。有效的在线学习需要支持跨越传统学科界限的学习的设计特征。食品安全教育提供的例子包括多个学科,使学生为现实世界的情况做好准备,实际解决问题,并在食品安全变得更加量化的情况下成为“未来的证明”。本研究阐明了如何评估六个基于模拟的学习模块,其中微生物生长/灭活、微生物生长/灭活的食品过程动力学和风险评估各两个模块。每组三个模块针对的是食品科学与工程专业的本科生。这6个模块总共在14所大学的17门课程中实施和评估了5年。基于模块的方法的有效性是跨主题(微生物学、过程和风险)、学科(食品科学和工程)及其实现的。学生和教师的调查反馈表明了这些模块在现实世界和实际问题解决能力中的价值。教师也有动力实施这些模块,因为他们看到了学生理解能力的提高、模块如何加强课程学习成果、模块提供的支持质量,以及它们在不增加教师或学生工作的情况下取代现有课程评估的能力。这种自我学习、以模块为基础的方法引入跨学科内容的做法已被证明是成功的。制作这些模块的模板有足够详细的描述,因此未来的模块可以为食品安全以外的各种主题构建。
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Journal of Food Science Education
Journal of Food Science Education EDUCATION, SCIENTIFIC DISCIPLINES-
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期刊介绍: The Institute of Food Technologists (IFT) publishes the Journal of Food Science Education (JFSE) to serve the interest of its members in the field of food science education at all levels. The journal is aimed at all those committed to the improvement of food science education, including primary, secondary, undergraduate and graduate, continuing, and workplace education. It serves as an international forum for scholarly and innovative development in all aspects of food science education for "teachers" (individuals who facilitate, mentor, or instruct) and "students" (individuals who are the focus of learning efforts).
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Issue Information Flipped laboratory classes: Student performance and perceptions in undergraduate food science and technology Next steps Student perspectives of various learning approaches used in an undergraduate food science and technology subject Grab the opportunity
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