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9th Grade - 12th Grade

Decoding - Genetic Code - Molecular Biology

Decoding - Genetic Code - Molecular Biology

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Decoding - Genetic Code - Molecular Biology

9th Grade - 12th Grade

Science, Biology

Explore the foundational aspects of genetic coding, focusing on DNA functions, mRNA roles, and exceptions to the universal genetic code. Gain a comprehensive understanding of protein synthesis and the central dogma of molecular biology, enhancing knowledge of genetic mechanisms.

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9th Grade - 10th Grade

[Molecular Biology Processes - Genetic Code Comprehension - Translation and Protein Synthesis]

[Molecular Biology Processes - Genetic Code Comprehension - Translation and Protein Synthesis]

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[Molecular Biology Processes - Genetic Code Comprehension - Translation and Protein Synthesis]

9th Grade - 10th Grade

Biology

Understand key concepts in genetic translation, focusing on the roles of genes, enzymes, and codons in protein synthesis. Gain insight into the central dogma of biology and how molecular mechanisms drive the translation process.

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9th Grade - 12th Grade

Genetic Information - Code Redundancy and Reprogramming - Biological Concepts

Genetic Information - Code Redundancy and Reprogramming - Biological Concepts

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Genetic Information - Code Redundancy and Reprogramming - Biological Concepts

9th Grade - 12th Grade

Science, Biology, Chemistry

Explore the complexities of the genetic code, highlighting its redundancy and the role of RNA in its transmission. Examine techniques to reprogram the genetic code for advanced biotechnological applications while understanding the potential benefits and challenges of these innovations. Enhance comprehension of cutting-edge biological advancements and the skills necessary to navigate this evolving field.

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11th Grade - University

Advanced Comprehension - Genetic Code Redundancy - Biology

Advanced Comprehension - Genetic Code Redundancy - Biology

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Advanced Comprehension - Genetic Code Redundancy - Biology

11th Grade - University

Science, Biology

Gain insights into the complexities of the genetic code by examining its redundancy and exploring the consequences for genetic engineering and mutation resilience. Develop an understanding of the mechanisms that confer resilience to the genetic code, learn about the potential applications in biotechnology, and discover innovations in genetic engineering.

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6th Grade - 10th Grade

Genetic Code Understanding - Structure Insights - DNA Discovery

Genetic Code Understanding - Structure Insights - DNA Discovery

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Genetic Code Understanding - Structure Insights - DNA Discovery

6th Grade - 10th Grade

Biology

Examine DNA's structure and genetic code by exploring key historical discoveries and influential scientific figures. Gain a comprehensive understanding of DNA's composition and replication processes while evaluating significant contributions to the field of molecular biology.

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12th Grade

DNA and RNA - Genetic Code - Mutations in Molecular Biology

DNA and RNA - Genetic Code - Mutations in Molecular Biology

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DNA and RNA - Genetic Code - Mutations in Molecular Biology

12th Grade

Biology

Understand the core concepts of DNA and RNA, with a focus on genetic coding and mutation effects. Gain insight into the importance of genetic sequences in protein synthesis and how specific mutations can influence molecular functions.

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11th Grade - University

Advanced Genetic Coding - Eight-Letter DNA - Hachimoji DNA

Advanced Genetic Coding - Eight-Letter DNA - Hachimoji DNA

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Advanced Genetic Coding - Eight-Letter DNA - Hachimoji DNA

11th Grade - University

Biology, Science

Learn about the groundbreaking concept of hachimoji DNA, an eight-letter genetic code that redefines the basic structure of life. Gain insights into the impact of this enhanced genetic coding, including innovations in data storage and cutting-edge medical applications.

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10th Grade - 12th Grade

Gene Regulation Skills - Expression Mechanisms - Molecular Biology

Gene Regulation Skills - Expression Mechanisms - Molecular Biology

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Gene Regulation Skills - Expression Mechanisms - Molecular Biology

10th Grade - 12th Grade

Science, Biology

Explore gene expression regulation by examining operons, transcription factors, and RNA splicing. Gain a comprehensive understanding of the functions of these elements in both prokaryotic and eukaryotic systems and their roles in controlling gene activity.

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9th Grade - 12th Grade

Gene Expression Mechanisms - Nutrient Functions and RNA Processing - Molecular Biology

Gene Expression Mechanisms - Nutrient Functions and RNA Processing - Molecular Biology

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Gene Expression Mechanisms - Nutrient Functions and RNA Processing - Molecular Biology

9th Grade - 12th Grade

Biology, Science

Explore the intricacies of gene expression and protein synthesis by examining nutrient functions and stages of RNA processing, including transcription and translation. Gain insights into the cellular mechanisms of DNA's role in protein synthesis and understand the importance of diverse nutrients for bodily functions, enhancing comprehension of these critical biological processes.

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9th Grade - 12th Grade

Pathways of Signal Transduction - Molecular Mechanisms - Cellular Communication

Pathways of Signal Transduction - Molecular Mechanisms - Cellular Communication

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Pathways of Signal Transduction - Molecular Mechanisms - Cellular Communication

9th Grade - 12th Grade

Science, Biology

Analyze the complex processes of signal transduction and gene expression, emphasizing the role of chemical signals in influencing cellular functions. Understand the biochemical pathways that contribute to cellular responses, deepening knowledge of molecular biology and cellular communication.

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9th Grade - 12th Grade

Understanding Gene Expression - Mechanisms of Central Dogma - Molecular Biology

Understanding Gene Expression - Mechanisms of Central Dogma - Molecular Biology

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Understanding Gene Expression - Mechanisms of Central Dogma - Molecular Biology

9th Grade - 12th Grade

Science, Biology

Investigate the fundamental mechanisms of the central dogma of molecular biology by examining the processes of transcription and translation. Gain insights into the flow of genetic information from DNA to RNA to protein, and understand the crucial roles of RNA and ribosomes in gene expression.

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9th Grade - 12th Grade

Gene Function and Regulation - Gene Expression & Protein Synthesis - Molecular Biology

Gene Function and Regulation - Gene Expression & Protein Synthesis - Molecular Biology

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Gene Function and Regulation - Gene Expression & Protein Synthesis - Molecular Biology

9th Grade - 12th Grade

Science, Biology

Examine the intricate processes of gene expression and protein synthesis, focusing on foundational concepts such as RNA polymerase function and mRNA modifications. Gain a deeper understanding of molecular biology by identifying key components and mechanisms, which will enable the explanation of gene regulation and protein production.

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9th Grade - 12th Grade

Genetic Processes - DNA, Chromosomes, & Gene Expression

Genetic Processes - DNA, Chromosomes, & Gene Expression

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Genetic Processes - DNA, Chromosomes, & Gene Expression

9th Grade - 12th Grade

Biology, Science

Examine the fundamental roles of DNA, chromosomes, and gene expression to gain insights into the molecular basis of inheritance. Learners will enhance their comprehension of genetic mechanisms, enabling them to articulate the principles of genetic inheritance and the importance of differential gene expression in cellular activities.

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9th Grade - 12th Grade

Gene Expression and Protein Synthesis - Transcription & Translation - Molecular Biology

Gene Expression and Protein Synthesis - Transcription & Translation - Molecular Biology

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Gene Expression and Protein Synthesis - Transcription & Translation - Molecular Biology

9th Grade - 12th Grade

Biology, Science

Analyze the intricate processes of gene expression and protein synthesis, emphasizing the stages of transcription and translation in molecular biology. Develop a deep understanding of how DNA directs protein production while enhancing the ability to describe each step involved in transcription and translation. Discover the roles of various RNA types in these crucial biological processes.

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6th Grade - 9th Grade

Gene Regulation Mechanisms - Control of Gene Expression - Cellular Processes

Gene Regulation Mechanisms - Control of Gene Expression - Cellular Processes

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Gene Regulation Mechanisms - Control of Gene Expression - Cellular Processes

6th Grade - 9th Grade

Biology, Chemistry, Science, Geography

Examine the complexities of gene regulation with a specific emphasis on transcription factors, repressor molecules, RNA binding proteins, and post-translational modifications. Understand the pivotal roles these elements play in modulating gene expression, leading to a deeper comprehension of cellular mechanisms and molecular biology.

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7th Grade - 12th Grade

Foundations of Genetics - Gregor Mendel's Experiments - Heredity and Trait Inheritance

Foundations of Genetics - Gregor Mendel's Experiments - Heredity and Trait Inheritance

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Foundations of Genetics - Gregor Mendel's Experiments - Heredity and Trait Inheritance

7th Grade - 12th Grade

Biology, Science

Explore the foundational principles of genetics by studying Gregor Mendel's pioneering experiments with pea plants, emphasizing heredity and trait inheritance. Gain an understanding of key concepts such as dominant and recessive traits, genotype versus phenotype, and the impact of Mendel's work on modern genetics.

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11th Grade - University

Gene Regulation Mechanisms - Operons, Epigenetics & Transcription Factors

Gene Regulation Mechanisms - Operons, Epigenetics & Transcription Factors

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Gene Regulation Mechanisms - Operons, Epigenetics & Transcription Factors

11th Grade - University

Biology, Chemistry

Explore how cells control gene expression through operons, epigenetic modifications, and transcription factors, enabling them to adapt to changes in their environment. Understand molecular biology processes and gain insight into regulatory mechanisms and biological adaptability.

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9th Grade - 12th Grade

Mendelian Genetics - Principles of Inheritance - Dihybrid and Monohybrid Crosses

Mendelian Genetics - Principles of Inheritance - Dihybrid and Monohybrid Crosses

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Mendelian Genetics - Principles of Inheritance - Dihybrid and Monohybrid Crosses

9th Grade - 12th Grade

Science, Biology

Understand foundational concepts in Mendelian genetics by exploring inheritance principles and genetic cross analysis. Develop skills to predict phenotypic ratios and appreciate the significance of genetic variation in biological studies.

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9th Grade - 12th Grade

Mendelian Genetics - Understanding Laws and Principles

Mendelian Genetics - Understanding Laws and Principles

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Mendelian Genetics - Understanding Laws and Principles

9th Grade - 12th Grade

Biology, Science

Explore the fundamental concepts of Mendelian genetics by examining Gregor Mendel's groundbreaking experiments. Understand the laws of segregation and independent assortment. By the end of the lesson, learners will be able to apply genetic principles through the use of Punnett squares and distinguish between key genetic terms.

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11th Grade - University

Signal Transduction Mechanisms - Hormonal Regulation - Gene Expression

Signal Transduction Mechanisms - Hormonal Regulation - Gene Expression

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Signal Transduction Mechanisms - Hormonal Regulation - Gene Expression

11th Grade - University

Biology, Chemistry

Understand the mechanisms of signal transduction and hormonal regulation with a focus on epinephrine's role in modulating gene expression. Learn how signal pathways activate transcription factors, which subsequently lead to protein synthesis and cellular responses.

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