首页> 外文会议>2016 International Conference on Engineering amp; MIS >Integration of location-based information into mobile learning management system to verify scientific formulas in informal learning environment
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Integration of location-based information into mobile learning management system to verify scientific formulas in informal learning environment

机译:将基于位置的信息集成到移动学习管理系统中,以验证非正式学习环境中的科学公式

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Scientific formulas govern our life while moving from one location to another. Furthermore, the recent advances in mobile devices, in particular smart phones, presents a significant opportunity of research concerning personalization of services in various industries including mobile learning, also called M-learning. Hence, this study investigates into the development of an adaptive mobile learning model that extends the traditional learning systems that address content customization issue, to include formulas verification feature with help of location-based information in informal learning environment. The main contribution of this novel model is to provide mobile learner (i.e. student) with a virtual-teacher anytime-anywhere to verify or even solve course-related tasks, especially in scientific courses such as math or physics formulas. The virtual-teacher is addressed in this study in form of an intermediate object. This object is built by merging data from three different resources: mobile learner profile, formulas profile, and location-based information. As a result, mobile learner will receive the location-aware personalized outcomes in form of answers that correspond to the pre-defined tasks. In addition the results or the answers will be subject for further assessment by instructors. Their participation is highly recommended to engage mobile learner into an interactive learning environment. A major benefit of this study is depicted in offering learners who are continually mobile with an alternative approach of understanding courses-related tasks at their time convenience, rather than attending the traditional classroom based instructor led session. For example, a learner who is moving between three different locations, the intermediate object can describe a triangle shape, subsequently triangle-related formulas, that determine distances, can be verified. Pressure variation can also be demonstrated for a learner who is moving between coasts and mountains. As it can be observed from these examples, mobile learner has the opportunity to participate in a real application of a specific task. The instructors can also benefit from this study since it provides them with an adaptive model to demonstrate their lessons-related formulas, outside classrooms.
机译:科学公式控制着我们从一处到另一处的生活。此外,移动设备,特别是智能电话的最新进展,为研究包括移动学习(也称为M学习)在内的各个行业中的服务个性化提供了重要的机会。因此,本研究调查了自适应移动学习模型的开发,该模型扩展了解决内容定制问题的传统学习系统,在非正式学习环境中借助基于位置的信息包括公式验证功能。这种新颖模型的主要作用是随时随地为移动学习者(即学生)提供虚拟老师,以验证甚至解决与课程相关的任务,特别是在科学课程(例如数学或物理公式)中。在本研究中,虚拟教师是以中间对象的形式解决的。通过合并来自三个不同资源的数据来构建此对象:移动学习者配置文件,公式配置文件和基于位置的信息。结果,移动学习者将以与预定义任务相对应的答案的形式接收位置感知的个性化结果。此外,结果或答案将由教员进一步评估。强烈建议他们参加,以使移动学习者进入交互式学习环境。这项研究的主要好处是为不断移动的学习者提供了一种在他们方便的时间理解课程相关任务的替代方法,而不是参加传统的基于课堂的讲师指导的课程。例如,在三个不同位置之间移动的学习者,中间对象可以描述一个三角形,随后可以验证确定距离的三角形相关公式。对于在海岸和山脉之间移动的学习者,压力变化也可以得到证明。从这些示例可以看出,移动学习者有机会参与特定任务的实际应用。教员还可以从这项研究中受益,因为它为他们提供了一个自适应模型,可以在教室外展示与课程有关的公式。

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