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Development and Evaluation of a Model-Driven System to Support Mobile Learning in Field Trips

机译:开发和评估模型驱动系统以支持实地考察中的移动学习

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While field trips promote the scientific spirit of students by increasing their ability of observation and discovery in various areas of knowledge, the introduction of ubiquitous technologies, such as sensors and actuators, during the field trips, improves students' motivation and learning. However, the development of systems for this purpose implies to deal with the seamless treatment of the devices heterogeneity, absence of fixed communication infrastructure, dynamics of the computational elements of the environment, and support for user mobility. This paper presents then the development and evaluation of a system, called Ubiquitous Field Classes Inventor (UFC-Inventor), which aims to promote the use of mobile and ubiquitous technologies in field trips. The UFC-Inventor evaluation is performed in two stages: first, with five teachers of natural sciences; and later, during a field trip with seventeen students. Two of the teachers were from higher education (Geology and Animal Science) and three of them from high school (two in Geography and one in Biology). The seventeen students who participated in the case study were undergraduate students in the third year of their Geology course. The results suggest a good acceptance of UFC-Inventor and indicate that its execution occurred correctly.
机译:实地考察通过提高他们在各个知识领域的观察和发现能力来提高学生的科学精神,而实地考察期间引入无处不在的技术(例如传感器和执行器)则可以提高学生的学习动机和学习能力。但是,为此目的开发的系统意味着要处理对设备异质性的无缝处理,缺少固定的通信基础设施,环境的计算元素动态化以及对用户移动性的支持。然后,本文介绍了一个名为“泛在领域分类发明者”(UFC-Inventor)的系统的开发和评估,该系统旨在促进在野外旅行中使用移动技术和无处不在的技术。 UFC-Inventor评估分为两个阶段进行:首先,由五位自然科学老师进行;后来,在与17名学生进行的实地考察中。其中两名教师来自高等教育(地质学和动物科学),三名来自高中(地理学两名,生物学一名)。参加案例研究的17名学生是地质课程第三年的本科生。结果表明对UFC-Inventor的接受程度很高,并表明其执行正确。

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