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9th Grade - 12th Grade

[Understanding Synthetic Biology - Concepts and Ethical Concerns - Bioengineering]

[Understanding Synthetic Biology - Concepts and Ethical Concerns - Bioengineering]

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[Understanding Synthetic Biology - Concepts and Ethical Concerns - Bioengineering]

9th Grade - 12th Grade

Biology, Science

Examine the complexity and potential dangers of synthetic biology, differentiating it from traditional genetic engineering. Gain insights into ethical concerns and industry applications while receiving guidance on implementing balanced industry regulation. Develop a comprehensive understanding of the subject, fostering a nuanced perspective on these advanced biotechnological fields.

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11th Grade - University

Synthetic Biology - Functions of Living Systems - Biological Production and Processes

Synthetic Biology - Functions of Living Systems - Biological Production and Processes

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Synthetic Biology - Functions of Living Systems - Biological Production and Processes

11th Grade - University

Science

Explore the key functions of living systems, focusing on molecule production and energy generation. Gain an understanding of biological systems and processes, such as photosynthesis and respiration, and their contributions to life and production in both natural and synthetic contexts. Develop insights into synthetic biology through the study of these fundamental life processes.

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10th Grade - University

Advanced Concepts - Synthetic Biology - Biological Applications

Advanced Concepts - Synthetic Biology - Biological Applications

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Advanced Concepts - Synthetic Biology - Biological Applications

10th Grade - University

Science, Chemistry, Biology

Explore advanced concepts in synthetic biology, focusing on DNA synthesis, genome manipulation, and their applications in medicine and environmental solutions. Learners will enhance their understanding of synthetic biology's potential to drive innovation in biotechnology and address global challenges.

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10th Grade - University

Synthetic Biology Applications - Genetic Engineering - Impact on Society

Synthetic Biology Applications - Genetic Engineering - Impact on Society

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Synthetic Biology Applications - Genetic Engineering - Impact on Society

10th Grade - University

Biology, Science, Design, Arts, Social Studies

Examine the transformative role of synthetic biology in altering organisms, inspired by insights from genetic engineering leaders and groundbreaking projects. Gain an understanding of synthetic biology's societal impact, cultivate critical inquiry skills regarding emerging technologies, and appreciate the integration of science, art, and ethics in biological innovation.

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9th Grade - 12th Grade

Engineering Benefits - Impacts of Synthetic Biology - Human and Nature Interaction

Engineering Benefits - Impacts of Synthetic Biology - Human and Nature Interaction

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Engineering Benefits - Impacts of Synthetic Biology - Human and Nature Interaction

9th Grade - 12th Grade

Biology, Science, Moral Science

Explore the intersection of synthetic biology and its societal and environmental impacts, focusing on sustainability, technological advancements, and economic benefits. Gain insights into modern sustainability principles, the integration of biology and engineering, and the moral imperatives of balancing human and environmental priorities.

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10th Grade - University

Design Exploration - Speculative and Synthetic Biology - Biotechnological Innovations

Design Exploration - Speculative and Synthetic Biology - Biotechnological Innovations

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Design Exploration - Speculative and Synthetic Biology - Biotechnological Innovations

10th Grade - University

Science, Design, Arts, Biology

Explore how design fiction merges with synthetic biology to investigate the potential of plants in indicating soil toxicity, and examine speculative design in the realm of olfactory experiences. Investigate biotechnological innovations developed at MIT to understand the integration of technology into creative, emotional, and artistic applications, enhancing both scientific and creative viewpoints. The focus will be on broadening perspectives through interdisciplinary approaches.

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11th Grade - University

Synthetic Biology - Gene Functions and Energy Dynamics - Biology

Synthetic Biology - Gene Functions and Energy Dynamics - Biology

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Synthetic Biology - Gene Functions and Energy Dynamics - Biology

11th Grade - University

Science

Investigate the future of synthetic biology by examining gene functions and the energy dynamics within cells. Learners will develop a deeper understanding of biological processes and appreciate the role of precise language in advancing scientific knowledge.

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11th Grade - University

Critical Exploration - Design Fiction - Synthetic Biology

Critical Exploration - Design Fiction - Synthetic Biology

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Critical Exploration - Design Fiction - Synthetic Biology

11th Grade - University

Explore innovative concepts in synthetic biology and design, focusing on the use of olfaction and challenging conventional design principles. Develop critical thinking skills regarding the impact of engineered nature and understand the role of artists in advancing technology through the intersection of art and technology.

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11th Grade - University

Challenges and Problem Solving in Synthetic Biology - Workplace Considerations

Challenges and Problem Solving in Synthetic Biology - Workplace Considerations

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Challenges and Problem Solving in Synthetic Biology - Workplace Considerations

11th Grade - University

Social Studies, Science, Biology

Analyze the primary challenges in synthetic biology, focusing on the decision-making process between employing biological solutions and traditional engineering methods. Enhance skills in problem-solving and assessing project feasibility within this innovative field by gaining a deeper understanding of the complexities involved.

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11th Grade - University

Sustainable Industrial Processes - Nature-Made Plastics - Synthetic Biology & Materials Science

Sustainable Industrial Processes - Nature-Made Plastics - Synthetic Biology & Materials Science

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Sustainable Industrial Processes - Nature-Made Plastics - Synthetic Biology & Materials Science

11th Grade - University

Chemistry, Biology, Science

Investigate the advantages of utilizing enzymes and engineered microorganisms in the production of eco-friendly materials, such as naturally derived plastics. Gain an understanding of the environmental implications and benefits associated with enzyme-driven manufacturing processes, and acquire insights into innovative approaches for sustainable production.

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10th Grade - University

Synthetic Biology Techniques - Genomics Innovations - Applications in Genetics

Synthetic Biology Techniques - Genomics Innovations - Applications in Genetics

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Synthetic Biology Techniques - Genomics Innovations - Applications in Genetics

10th Grade - University

Biology, Science

Explore the groundbreaking advancements in synthetic biology and genomics, focusing on genetic code sequencing and key findings from oceanic research. Gain insights into emerging genetic technologies and their potential applications, enhancing your understanding of modern genomics and its bioethical considerations.

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11th Grade - University

Synthetic Biology Advancements - Health, Food, and Materials Innovation

Synthetic Biology Advancements - Health, Food, and Materials Innovation

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Synthetic Biology Advancements - Health, Food, and Materials Innovation

11th Grade - University

Social Studies, Biology

Examine how synthetic biology is transforming health, food, and materials through innovative methods. Understand the sustainability, economic benefits, and environmental effects of synthetic biology applications, gaining insights into its role in future advancements.

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11th Grade - University

[Understanding Cellular Functions - Advancing Synthetic Biology - Research & Applications]

[Understanding Cellular Functions - Advancing Synthetic Biology - Research & Applications]

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[Understanding Cellular Functions - Advancing Synthetic Biology - Research & Applications]

11th Grade - University

Science, Biology

Gain insights into how understanding cellular functions advances synthetic biology by examining how cells maintain homeostasis and the predictive modeling of cellular behavior. Explore cell organization and the development of synthetic cells, providing foundational knowledge for innovative research and practical applications.

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11th Grade - University

Cellular Function Understanding - Synthetic Biology Insights - Biological Advancements

Cellular Function Understanding - Synthetic Biology Insights - Biological Advancements

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Cellular Function Understanding - Synthetic Biology Insights - Biological Advancements

11th Grade - University

Science, Biology

Understanding cellular functions is vital for advancing synthetic biology, with a focus on generating predictive and integrated models of cells. Insights into cellular organization principles and homeostasis are essential for designing synthetic cells. These concepts have significant applications in scientific and biological research, facilitating innovation and efficiency in creating synthetic life forms.

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10th Grade

Synthetic Biology - Applications and Ethical Implications

Synthetic Biology - Applications and Ethical Implications

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Synthetic Biology - Applications and Ethical Implications

10th Grade

Explore the innovative applications of synthetic biology and its potential impacts on addressing global challenges, such as mosquito eradication. Evaluate the ethical considerations and speculate on future advancements to foster critical thinking and creativity. Emphasize content understanding, learning outcomes, and skills development.

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8th Grade - 12th Grade

Genetic Engineering Techniques - Microbial Insulin Production - Biotechnology Advancements

Genetic Engineering Techniques - Microbial Insulin Production - Biotechnology Advancements

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Genetic Engineering Techniques - Microbial Insulin Production - Biotechnology Advancements

8th Grade - 12th Grade

Biology, Science

Explore the process of genetic engineering, focusing on the utilization of microorganisms for human insulin production. Understand genetic modification and insulin extraction, gaining insights into the roles of enzymes and molecular techniques in biotechnology. Learn about the practical applications of recombinant DNA technology and develop a deeper understanding of the subject.

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9th Grade - 10th Grade

Advanced Techniques - Genetic Engineering - Environmental Biotechnology

Advanced Techniques - Genetic Engineering - Environmental Biotechnology

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Advanced Techniques - Genetic Engineering - Environmental Biotechnology

9th Grade - 10th Grade

Biology

Explore the forefront of genetic engineering to understand modifications in trees aimed at enhancing growth efficiency and carbon capture capacities. Gain insights into biotechnological advancements and analyze the economic implications of implementing sustainable forestry practices.

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9th Grade - 10th Grade

[Understanding Genetic Engineering - Gene Transfer and Modification - Challenges and Solutions]

[Understanding Genetic Engineering - Gene Transfer and Modification - Challenges and Solutions]

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[Understanding Genetic Engineering - Gene Transfer and Modification - Challenges and Solutions]

9th Grade - 10th Grade

Biology

Investigate the complexities of genetic engineering, emphasizing gene transfer and modification alongside challenges in gene therapy. Learn to develop desirable traits in organisms, address the hurdles of gene therapy, and comprehend the advantages of genetically modified crops. Gain valuable insights and skills critical for advancements in biotechnology.

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9th Grade - 12th Grade

Future Human Evolution - Depictions in Science Fiction - Genetic Engineering

Future Human Evolution - Depictions in Science Fiction - Genetic Engineering

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Future Human Evolution - Depictions in Science Fiction - Genetic Engineering

9th Grade - 12th Grade

Biology, Science, Philosophy

Investigate the intriguing world of genetic engineering and its influence on the future evolution of humans, with an exploration of common portrayals in science fiction. Gain insights into the implications of modern transportation on isolated evolution and understand the constraints of current genetic engineering technologies. Focus on enhancing understanding of the subject and developing analytical skills in evaluating scientific and ethical considerations.

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10th Grade - 12th Grade

Critical Evaluation Skills - Ethical Implications - Genetic Engineering

Critical Evaluation Skills - Ethical Implications - Genetic Engineering

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Critical Evaluation Skills - Ethical Implications - Genetic Engineering

10th Grade - 12th Grade

Biology, Science

Explore the ethical and societal implications of genetic engineering, highlighting the differences between conventional breeding and genetic modifications. Develop critical evaluation skills to analyze the impact of genetic engineering on society and agriculture from multiple perspectives.

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