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General chemistry laboratory for engineers: A research-based approach.

机译:工程师通用化学实验室:一种基于研究的方法。

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摘要

Changes made in requirements to the Accreditation Board for Engineering and Technology in 2000 have made it possible for several engineering curricula to take one semester of a two part general chemistry series. At Montana State University - Bozeman engineering majors constitute just over 37% of the total 850 students per year in the first term general chemistry population. The single-semester engineering curricula enroll 88% of the engineering students. These students receive an incomplete survey of general chemistry, missing important topics such as equilibrium and kinetics, acids and bases, and electrochemistry that are taught in the second semester.; In 2001, discussion was initiated between the Department of Chemistry and Biochemistry and the Dean and Department Heads of the College of Engineering to identify learning objectives and chemistry content important to engineering students. Current learning and teaching theories were used to develop an original laboratory learning approach that supported these objectives. Next, innovative measurement technology was integrated for students' use in gathering experimental data. These materials were tested, evaluated, and refined during MSU freshman labs and in-service technology training for Montana science teachers.; The development of this general chemistry lab curriculum for these engineering majors supports both national science education goals and those of the Accreditation Board for Engineering and Technology. This curriculum employs the latest in microcomputer-based technology and guided-inquiry approaches to learning. This innovative approach fosters engineering track students' development of tools and skills necessary for critical thinking and problem solving.; Engineering students collaborated as research groups to (a) design and conduct experiments, (b) discuss and evaluate data, (c) prepare and write lab reports, and (d) present an oral report to their peers. This approach creates a research environment for students to connect chemistry in the context of real-world engineering applications.; Not only did the treatment group (N = 70) outperform their fellow engineering students in lecture exams and quizzes, but over a four and a half fold increase of enrollment into the second semester of general chemistry was observed. This approach shows promise as a transferable template for other interdisciplinary laboratory curriculum in general chemistry and deserves implementation and further research.
机译:2000年对工程技术认证委员会的要求进行了更改,使得几个工程课程可以修读由两部分组成的普通化学系列课程中的一个学期。在蒙大拿州立大学-博兹曼工程专业的学生在第一学期的普通化学课程学生中,每年占850名学生的37%以上。单学期的工程课程招收了88%的工程专业学生。这些学生的通用化学调查不完整,缺少第二学期所教授的诸如平衡与动力学,酸和碱以及电化学等重要主题。 2001年,化学与生物化学系与工程学院院长和系主任开始了讨论,以确定对工程专业学生重要的学习目标和化学内容。当前的学与教理论被用于开发支持这些目标的原始实验室学习方法。接下来,集成了创新的测量技术,供学生收集实验数据。在MSU新生实验室和蒙大拿州科学教师的在职技术培训期间,对这些材料进行了测试,评估和完善。针对这些工程专业的通用化学实验室课程的开发,既支持国家科学教育目标,也支持工程技术认证委员会的目标。该课程采用了最新的基于微机的技术和指导性查询方法进行学习。这种创新的方法可以培养工程学专业的学生发展批判性思维和解决问题所必需的工具和技能。工科学生作为研究小组合作,以(a)设计和进行实验,(b)讨论和评估数据,(c)准备和编写实验室报告,以及(d)向同伴提出口头报告。这种方法为学生创造了一个在实际工程应用环境中连接化学的研究环境。在演讲考试和测验中,治疗组(N = 70)不仅比工程学专业的学生好,而且到普通化学课程第二学期的入学人数增加了四倍半。这种方法显示出有望作为通用化学其他跨学科实验室课程的可移植模板,值得实施和进一步研究。

著录项

  • 作者

    Sorey, Timothy Lowell.;

  • 作者单位

    Montana State University.;

  • 授予单位 Montana State University.;
  • 学科 Chemistry General.; Education Higher.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 420 p.
  • 总页数 420
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;高等教育;
  • 关键词

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