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High School Dna Repair Mechanisms Interactive Videos

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9th Grade - 12th Grade

Understanding DNA Repair Mechanisms - Damage and Correction Processes

Understanding DNA Repair Mechanisms - Damage and Correction Processes

Interactive Video

Understanding DNA Repair Mechanisms - Damage and Correction Processes

9th Grade - 12th Grade

Science, Biology

Investigate the complex processes involved in DNA repair mechanisms and the various types of damage that DNA can sustain. Understanding these concepts enables learners to grasp the significance of DNA damage and repair in preserving genetic integrity, potentially providing deeper insights into genetic disorders and cellular health.

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9th Grade - 10th Grade

Genetic Alterations - DNA Mutations & Repair - Molecular Biology

Genetic Alterations - DNA Mutations & Repair - Molecular Biology

Interactive Video

Genetic Alterations - DNA Mutations & Repair - Molecular Biology

9th Grade - 10th Grade

Biology

Explore the mechanisms behind DNA mutations and repair, including topics like large-scale and point mutations, the role of various repair enzymes, and the effects of chemical mutagens. Understand the biological processes involved in DNA mutation and repair. Develop the ability to identify and describe different types of mutations and their impact on protein function and genetic stability.

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6th Grade - 10th Grade

Genetic Mutations and Repair - DNA Damage and Repair Mechanisms

Genetic Mutations and Repair - DNA Damage and Repair Mechanisms

Interactive Video

Genetic Mutations and Repair - DNA Damage and Repair Mechanisms

6th Grade - 10th Grade

Biology

Explore the intricate processes of genetic mutations and DNA repair mechanisms, including the causes and effects of various mutation types. Gain foundational knowledge of DNA's role and insights into genetic disorders and mutation correction to enhance understanding of molecular biology and genetics.

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7th Grade - 12th Grade

DNA Replication: Key Enzymes and Mechanisms

DNA Replication: Key Enzymes and Mechanisms

Interactive Video

DNA Replication: Key Enzymes and Mechanisms

7th Grade - 12th Grade

Science, Biology

Examine the fundamental concepts of DNA replication, focusing on the pivotal roles of enzymes such as helicase and DNA polymerase. Gain a comprehensive understanding of the DNA replication process, identify essential enzymes involved, and recognize the significance of maintaining accuracy during replication, particularly in medical applications.

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9th Grade - 12th Grade

CRISPR Gene Editing - Mechanism & Applications - Molecular Biology

CRISPR Gene Editing - Mechanism & Applications - Molecular Biology

Interactive Video

CRISPR Gene Editing - Mechanism & Applications - Molecular Biology

9th Grade - 12th Grade

Science, Biology

Examine the CRISPR-Cas9 system's role in contemporary gene editing by focusing on its mechanism and varied applications. Learners will grasp the process by which the Cas9 protein allows precise DNA modifications and gain insights into its potential to reverse disease processes by restoring normal cellular functions.

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11th Grade - University

Understanding Mutations - DNA Damage & Repair Mechanisms

Understanding Mutations - DNA Damage & Repair Mechanisms

Interactive Video

Understanding Mutations - DNA Damage & Repair Mechanisms

11th Grade - University

Chemistry, Biology

Explore the mechanisms of DNA damage and repair, focusing on types of mutations such as point, frameshift, and silent mutations. Gain a comprehensive understanding of how these mutations occur and examine the biological processes involved in repairing DNA. Develop the ability to analyze and evaluate genetic changes critically.

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11th Grade - University

Cell Growth and Mutation - Oncogenes and Tumor Suppressors - Understanding Cancer Cells

Cell Growth and Mutation - Oncogenes and Tumor Suppressors - Understanding Cancer Cells

Interactive Video

Cell Growth and Mutation - Oncogenes and Tumor Suppressors - Understanding Cancer Cells

11th Grade - University

Biology

Gain an in-depth understanding of cancer through the exploration of cell mutation and the roles of oncogenes and tumor suppressors. Discover how these cellular components interact and influence the development and progression of cancer. The learning objectives include comprehending the mechanisms by which cell mutations lead to malignancy, identifying the functions of oncogenes in cancer growth, and understanding how tumor suppressors work to inhibit cancer progression. Enhance skills in analyzing the complex biological interactions driving cancer and evaluating their implications for health and disease management.

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9th Grade - 12th Grade

Genetic Mutations - DNA Changes - Cellular Biology

Genetic Mutations - DNA Changes - Cellular Biology

Interactive Video

Genetic Mutations - DNA Changes - Cellular Biology

9th Grade - 12th Grade

Science, Biology

Examine the mechanisms and effects of genetic mutations, addressing their contribution to diversity and potential role in disease. Understand the impact of mutations on cellular functions and gain insights into the various types and causes of DNA alterations.

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10th Grade - 12th Grade

Gene Editing - CRISPR-Cas9 Mechanisms - Applications in Biotechnology

Gene Editing - CRISPR-Cas9 Mechanisms - Applications in Biotechnology

Interactive Video

Gene Editing - CRISPR-Cas9 Mechanisms - Applications in Biotechnology

10th Grade - 12th Grade

Science, Biology

Investigate the innovative CRISPR-Cas9 system by focusing on its mechanisms and wide-ranging applications in gene editing. Gain a comprehensive understanding of the system's components and their functions, which can enhance skills in genetic engineering and drive advances in biotechnology.

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11th Grade - University

Synthetic Life Creation - Genome Synthesis - Advancements in Biotechnology

Synthetic Life Creation - Genome Synthesis - Advancements in Biotechnology

Interactive Video

Synthetic Life Creation - Genome Synthesis - Advancements in Biotechnology

11th Grade - University

Biology

Explore the forefront of synthetic biology, focusing on creating artificial life and genome synthesis. Understand how these advancements can transform industries through DNA replication, addressing synthesis challenges, and replacing petrochemical processes with synthetic alternatives.

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9th Grade - 12th Grade

Nobel Prize Impact - Key Discoveries in Physics & Chemistry

Nobel Prize Impact - Key Discoveries in Physics & Chemistry

Interactive Video

Nobel Prize Impact - Key Discoveries in Physics & Chemistry

9th Grade - 12th Grade

Chemistry, Physics, Biology, Science

Explore groundbreaking discoveries in neutrino research and DNA repair mechanisms recognized by the Nobel Prize. Understand their significance in advancing our knowledge of the universe and molecular biology. Focus on how these advancements enhance comprehension of fundamental physics and biochemical processes. Learn to appreciate the scientific rigor and collaborative efforts involved in these monumental achievements, while cultivating analytical and critical thinking skills related to cutting-edge research and its impact on science and society.

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9th Grade - 12th Grade

Critical Thinking - Misconceptions about Sharks - Biology Myths

Critical Thinking - Misconceptions about Sharks - Biology Myths

Interactive Video

Critical Thinking - Misconceptions about Sharks - Biology Myths

9th Grade - 12th Grade

Science, Biology

Explore common misconceptions about sharks' immunity to cancer and the false beliefs surrounding shark cartilage as a treatment. Understand why these myths persist and gain insight into the mechanisms of shark DNA repair and their relevance to cancer research.

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9th Grade - 12th Grade

Mendelian Principles - Cell Cycle - Genetics

Mendelian Principles - Cell Cycle - Genetics

Interactive Video

Mendelian Principles - Cell Cycle - Genetics

9th Grade - 12th Grade

Science, Biology

Explore essential concepts in Mendelian genetics and cellular processes, focusing on foundational principles and significant biological mechanisms. Gain an understanding of key processes such as mitosis and meiosis, and analyze the contributions of pivotal figures in genetics history. By the end, learners will comprehend these mechanisms and appreciate the historical context of genetic discoveries.

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9th Grade - 12th Grade

Understanding Mutations and Molecular Biology - DNA Replication and Protein Synthesis

Understanding Mutations and Molecular Biology - DNA Replication and Protein Synthesis

Interactive Video

Understanding Mutations and Molecular Biology - DNA Replication and Protein Synthesis

9th Grade - 12th Grade

Science, Biology

Explore mutations and molecular biology concepts with a focus on DNA replication and protein synthesis. Gain insights into enzyme roles, RNA types, and the processes maintaining genomic integrity, building a strong foundational knowledge in molecular genetics.

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11th Grade - University

Cellular Processes - Apoptosis Mechanisms - Programmed Cell Death

Cellular Processes - Apoptosis Mechanisms - Programmed Cell Death

Interactive Video

Cellular Processes - Apoptosis Mechanisms - Programmed Cell Death

11th Grade - University

Biology

Explore the complexities of apoptosis, a crucial programmed cell death process that maintains cellular health by eliminating defective cells. Gain insights into genetic regulation's roles, comprehend the consequences of apoptosis failure, and investigate diseases linked to apoptosis disruption, enhancing understanding of essential cellular biology processes.

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11th Grade - University

Scientific Discoveries - Nobel Prize Insights - Physics and Chemistry

Scientific Discoveries - Nobel Prize Insights - Physics and Chemistry

Interactive Video

Scientific Discoveries - Nobel Prize Insights - Physics and Chemistry

11th Grade - University

Science, Biology, Physics

Explore the groundbreaking scientific discoveries recognized by the 2015 Nobel Prizes in Physics and Chemistry, focusing on neutrino flavor changes and DNA repair mechanisms. Develop an understanding of key scientific principles and gain insights into the impact of these discoveries on the broader field of science.

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10th Grade - 12th Grade

Organic Chemistry Reactions - SN1 and SN2 Mechanisms

Organic Chemistry Reactions - SN1 and SN2 Mechanisms

Interactive Video

Organic Chemistry Reactions - SN1 and SN2 Mechanisms

10th Grade - 12th Grade

Science, Biology, Chemistry

Explore the intriguing aspects of organic chemistry by examining SN1 and SN2 reactions, focusing on their unique characteristics and mechanisms. Gain a thorough understanding of these processes, including the detailed rate-determining steps and stereochemistry involved, to enhance the ability to analyze and predict outcomes in diverse chemical situations.

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8th Grade - 12th Grade

[Understanding UV Radiation - DNA Damage - Biological Impacts]

[Understanding UV Radiation - DNA Damage - Biological Impacts]

Interactive Video

[Understanding UV Radiation - DNA Damage - Biological Impacts]

8th Grade - 12th Grade

Biology, Science

Explore the effects of UV radiation on DNA, with an emphasis on long-term impacts such as skin cancer and the protective role of Earth's ozone layer. Gain an understanding of the biological implications of UV exposure and the body's DNA repair mechanisms, enriching knowledge of environmental health and safety.

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11th Grade - University

Genome Analysis - Misconceptions in Cancer Treatment - Shark Research

Genome Analysis - Misconceptions in Cancer Treatment - Shark Research

Interactive Video

Genome Analysis - Misconceptions in Cancer Treatment - Shark Research

11th Grade - University

Science, Biology

Explore the myths surrounding sharks as a cure for cancer, focusing on shark genome research and its implications for developing cancer treatments. Gain insights into the evolutionary importance of sharks and the challenges in translating shark DNA mechanisms into human medical applications.

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6th Grade - 10th Grade

DNA Replication - Mechanisms - Molecular Biology

DNA Replication - Mechanisms - Molecular Biology

Interactive Video

DNA Replication - Mechanisms - Molecular Biology

6th Grade - 10th Grade

Science

Explore the detailed processes of DNA replication by examining the semi-conservative model, the roles of critical enzymes, and the directionality of synthesis. Gain insights into the functions of helicase, polymerase, and ligase, enhancing comprehension of fundamental molecular biology concepts.

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