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ENGINEERING ONLINE GATEWAY SYSTEM - ENSURING AND EVALUATING STUDENT LEARNING THROUGH AUTOMATED, MILESTONE EXAMS

机译:工程在线网关系统 - 通过自动化的里程碑考试确保和评估学生学习

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Many engineering courses use a sequential teaching strategy by which new material builds on concepts previously presented. While such a strategy lends itself to a natural presentation of course concepts, students who do not have a solid grasp of the initial material often fall behind and continue to struggle through the remainder of the course. To combat the problem of the "struggling student", we present a computer-based examination system that can be used at various times throughout the semester to ensure students have grasped the vital concepts of the course up to that particular point. This examination system can be used as a "gateway" through which all students must pass prior to taking a regular exam. Depending on the outcome of this gateway assessment, students may be required to seek help from the professor or a graduate student instructor before taking the regular exam. These help sessions focus primarily on the areas of the gateway assessment where improvement is needed as indicated by the students' gateway results. Through the development of this computer-based examination system, which can provide real-time C++ code compilation and testing, we seek to ensure adequate comprehension of the material presented in an introductory engineering/programming course. We have gathered statistically significant evidence that suggests a strong correlation between a student's performance on our automated gateway system and their upcoming exam performance. This indicates that the gateway assessment performance is indicative of overall course performance. We also present ideas for further adoption of our gateway system throughout the engineering education community.
机译:许多工程课程使用顺序教学策略,通过该策略,新材料构建以前呈现的概念。虽然这样的战略为课程概念的自然展示来说,没有坚固掌握初始材料的学生经常落后并继续通过课程的其余部分斗争。为了打击“挣扎学生”的问题,我们提出了一种基于计算机的考试系统,可以在整个学期的各个时代使用,以确保学生掌握课程的重要概念到那种特定点。该检查系统可用作“网关”,所有学生必须在常规考试之前传递。根据本网关评估的结果,在常规考试之前,可能需要学生寻求教授或研究生讲师的帮助。这些帮助,会议主要关注网关评估的区域,如学生网关结果所示所需的改进。通过开发这种基于计算机的检查系统,可以提供实时C ++代码编译和测试,我们寻求确保对介绍工程/编程课程中提出的材料的充分理解。我们聚集了统计上有重大证据,表明学生在自动网关系统上的表现与即将考试表现之间的表现之间存在强烈的相关性。这表明网关评估性能指示整体课程性能。我们还提供了在整个工程教育界进一步采用我们的网关系统的想法。

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