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Innovative Education and Active Teaching with the Leidenfrost Nanochemistry

机译:利德森弗洛斯特纳米科学的创新教育与积极教学

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摘要

The best learning outcomes are rarely achieved without motivating the learner, and in this regard, active teaching and learning methods have been proven useful. Here, we introduce the "learn and innovate" strategy to enhance the students' interest, conceptual understanding, and deep learning under full guiding instructions. Moreover, by this strategy, we encourage the students to conduct an independent research while acquiring high-level thinking skills. Designing appropriate instructional strategies and innovative research tasks and media, which leads to collaborative/cooperative learning, enhances the students' interaction with the course materials. The method supports the students to gain self-confidence, motivation, and scientific skills to address different research challenges at early stages while enhancing their learning level. In this context, the adopted strategy fosters a first semester master student to deeply understand the new "Leidenfrost Nanochemistry" phenomenon to synthesize Au nanoparticles. Acquiring such knowledge, the student can participate in solving an exploratory research problem and the related experimental challenges. The "learn and innovate" approach has been proven to be a pivotal and novel active teaching strategy to stimulate the active learning of students and the innovative education-based Aha! effect.
机译:在不激励学习者的情况下很少实现最佳学习结果,并且在这方面,已证明了积极的教学和学习方法是有用的。在这里,我们介绍了“学习和创新”战略,以提高学生的兴趣,概念理解,深度学习。此外,通过这种策略,我们鼓励学生在获得高级思维技能的同时进行独立研究。设计适当的教学策略和创新的研究任务和媒体,从而导致协作/合作学习,增强了学生与课程材料的互动。该方法支持学生获得自信,动机和科学技能,以解决早期阶段的不同研究挑战,同时提高学习水平。在这种情况下,采用的战略促进了第一学期掌握学生,深入了解新的“莱顿弗洛斯特纳米科学”现象来合成Au纳米粒子。获取这些知识,学生可以参与解决探索性研究问题和相关的实验挑战。已被证明“学习和创新”方法是刺激学生积极学习和基于创新教育的AHA的关键和新的积极教学策略!影响。

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