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A revolution in biochemistry and molecular biology education informed by basic research to meet the demands of 21st century career paths

机译:基本研究的生物化学和分子生物学教育革命,以满足21世纪职业道路的需求

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The National Science Foundation estimates that 80% of the jobs available during the next decade will require math and science skills, dictating that programs in biochemistry and molecular biology must be transformative and use new pedagogical approaches and experiential learning for careers in industry, research, education, engineering, health-care professions, and other interdisciplinary fields. These efforts require an environment that values the individual student and integrates recent advances from the primary literature in the discipline, experimentally directed research, data collection and analysis, and scientific writing. Current trends shaping these efforts must include critical thinking, experimental testing, computational modeling, and inferential logic. In essence, modern biochemistry and molecular biology education must be informed by, and integrated with, cutting-edge research. This environment relies on sustained research support, commitment to providing the requisite mentoring, access to instrumentation, and state-of-the-art facilities. The academic environment must establish a culture of excellence and faculty engagement, leading to innovation in the classroom and laboratory. These efforts must not lose sight of the importance of multidimensional programs that enrich science literacy in all facets of the population, students and teachers in K-12 schools, nonbiochemistry and molecular biology students, and other stakeholders. As biochemistry and molecular biology educators, we have an obligation to provide students with the skills that allow them to be innovative and self-reliant. The next generation of biochemistry and molecular biology students must be taught proficiencies in scientific and technological literacy, the importance of the scientific discourse, and skills required for problem solvers of the 21st century.
机译:国家科学基金会估计,未来十年中有80%的就业机会将需要数学和科学技能,决定生物化学和分子生物学的计划必须转型,并为行业,研究,教育的职业生涯和体验学习。 ,工程,医疗保健专业和其他跨学科领域。这些努力需要一个环境,这些环境将重视个人学生,并整合主要文学中的主要文学中的进步,实验指导的研究,数据收集和分析以及科学写作。目前趋势塑造这些努力必须包括关键思维,实验测试,计算建模和推理逻辑。实质上,必须通过尖端研究通知现代生物化学和分子生物学教育。这种环境依赖于持续的研究支持,承诺提供必要的指导,获取仪器和最先进的设施。学术环境必须建立卓越文化和教师参与,导致课堂和实验室的创新。这些努力不得忽视多维方案的重要性,这些计划在K-12学校,非自化和分子生物学学生和其他利益攸关方中丰富了人口,学生和教师的各个方面的科学素养。作为生物化学和分子生物学教育者,我们有义务为学生提供允许他们成为创新和自立的技能。下一代生物化学和分子生物学学生必须教授科技扫盲,科学话语的重要性,以及21世纪问题解决者所需的技能。

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