REU Site: Nanoscale Materials Science and Engineering at Vanderbilt University
REU Site: Nanoscale Materials Science and Engineering at Vanderbilt University
批准号:
1560414
负责人:
Clare McCabe
金额:
$35.85万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-05-01 至 2020-04-30
中文摘要
非技术描述:范德比尔特纳米科学与工程研究所(VINSE)夏季REU网站将为STEM本科生提供与教师密切合作的机会,从事纳米科学与工程领域的前沿研究项目。VINSE教师将为REU学生提供真正的跨学科研究体验,在这种环境中,物理学家,化学家,生物学家和所有工程师共同解决问题并创造新的科学理解。研究项目的首要主题将是纳米材料创新和制造。VINSE教师亲自致力于指导REU学生的研究和指导。他们将正式教育参与的研究生,博士后助理和教师如何指导REU学生,设计适当的研究项目,并形成一个相互支持的群体身份。该项目旨在建立学生和参与教师之间的社区意识,以及让学生广泛接触纳米科学和工程前沿的研究。该项目将重点关注从代表性不足的少数群体和STEM研究机会有限的学校招收学生。 技术说明:纳米科学和纳米技术的承诺,以多种方式彻底改变我们的生活(包括前所未有的小型和高功能的医疗和计算设备)已经吸引了科学家的想象力,媒体的关注和资助机构的支持,其结果是美国每年联邦对纳米科学的投资已达到15亿美元/年,自2001年以来累计投资230亿美元。纳米科学和纳米技术是基于在纳米尺度上系统地合成、组织、表征和操纵物质的能力,创造出独特的功能材料,这些材料可以是无机的、有机的或生物的,或者是其中任何两种或更多种的混合物。因此,纳米科学和纳米技术提出了跨越传统上不同学科的巨大挑战。显然,为了满足这些需求,在纳米技术的广泛领域的未来科学家和工程师的培训是至关重要的。纳米科学和工程的跨学科性质意味着它本质上涉及所有科学和工程,包括医学,从而需要以跨学科的方式培养各级学生。为了实现这一目标,范德比尔特纳米科学与工程研究所(VINSE)夏季REU网站将为STEM本科生提供与教师密切合作的机会,在纳米科学和工程领域的前沿研究项目。VINSE教师将为REU学生提供真正的跨学科研究体验,在这种环境中,物理学家,化学家,生物学家和所有工程师共同解决问题并创造新的科学理解。
英文摘要
NON-TECHNICAL DESCRIPTION: The Vanderbilt Institute for Nanoscale Science and Engineering (VINSE) summer REU site will offer STEM undergraduate students the opportunity to work closely with faculty on forefront research projects in the field of nanoscale science and engineering. VINSE faculty will provide REU students with a true interdisciplinary research experience in an environment where physicists, chemists, biologists, and all engineers collaboratively solve problems and create new scientific understanding. The overarching theme of the research projects will be nano-materials innovation and fabrication. The VINSE faculty are personally committed to directing the REU student research and mentoring. They will formally educate involved graduate students, postdoctoral associates, and faculty on how to mentor the REU students, to design an appropriate research project, and to form a mutually supportive group identity. The project is designed to build a sense of community among the students and the participating faculty, as well as expose the students broadly to research at the leading edge of nanoscale science and engineering. The project will put strong emphasis on recruiting students from underrepresented minority groups and schools with limited STEM research opportunities. TECHNICAL DESCRIPTION: The promise of nanoscience and nanotechnology to revolutionize our lives in multiple ways (including unprecedentedly small and highly functional medical and computational devices) has captured the imagination of scientists, the attention of the media, and the support of funding agencies, with the result that the U.S. annual federal investment in nanoscience has reached $1.5B/yr, with a cumulative investment since 2001 of $23B. Nanoscience and nanotechnology are based on the ability to synthesize, organize, characterize, and manipulate matter systematically at the nanoscale, creating uniquely functional materials that can be inorganic, organic or biological, or a hybrid of any two or more of these. Consequently, nanoscience and nanotechnology pose formidable challenges that cut across traditionally distinct disciplines. Clearly, to meet these demands, the training of future scientists and engineers in the broad field of nanotechnology is of paramount importance. The interdisciplinary nature of nanoscale science and engineering means it inherently involves all of the sciences and engineering, including medicine, resulting in the need to train students at all levels in an interdisciplinary manner. To achieve this goal the Vanderbilt Institute for Nanoscale Science and Engineering (VINSE) summer REU site will offer STEM undergraduate students the opportunity to work closely with faculty on forefront research projects in the field of nanoscale science and engineering. VINSE faculty will provide REU students with a true interdisciplinary research experience in an environment where physicists, chemists, biologists, and all engineers collaboratively solve problems and create new scientific understanding.
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会议论文
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依托单位:
NSF/CONACyT: Molecular Modeling of Phase Equilibria in Porous Media: Application to Enhanced Oil Recovery
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