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12th Grade

Gene Expression Foundations - Transcription Mechanisms - Molecular Biology

Gene Expression Foundations - Transcription Mechanisms - Molecular Biology

Comprehension

Gene Expression Foundations - Transcription Mechanisms - Molecular Biology

12th Grade

Biology

Explore gene expression intricacies through the examination of transcription mechanisms and the roles of RNA polymerase and transcription factors. Understand how these elements contribute to genetic regulation and protein diversity, providing a comprehensive foundation in molecular biology principles.

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9th Grade

Gene Expression - Transcription & Translation - Molecular Biology

Gene Expression - Transcription & Translation - Molecular Biology

Comprehension

Gene Expression - Transcription & Translation - Molecular Biology

9th Grade

Biology

Gain an understanding of gene expression by exploring the transcription and translation processes involved in protein production. Develop foundational molecular biology knowledge while engaging in simulations that demonstrate the flow of genetic information and the synthesis of proteins. Enhance comprehension of how genes are expressed to fulfill their roles within organisms.

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12th Grade

Gene Expression and Regulation - Methylation and Environmental Impact - Epigenetics

Gene Expression and Regulation - Methylation and Environmental Impact - Epigenetics

Comprehension

Gene Expression and Regulation - Methylation and Environmental Impact - Epigenetics

12th Grade

Biology

Investigate gene expression mechanisms by examining methylation and environmental influences in epigenetics. Understand the effects of external factors on DNA methylation, which impact gene expression. Gain insights into these processes through the analysis of twin studies.

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9th Grade

Transcription and Translation - RNA and Protein Synthesis

Transcription and Translation - RNA and Protein Synthesis

Comprehension

Transcription and Translation - RNA and Protein Synthesis

9th Grade

Biology

Investigate the detailed processes of transcription and translation in RNA and protein synthesis, focusing on the conversion of genetic instructions into functional proteins. Develop a comprehensive understanding of cellular mechanisms, enhancing the ability to explain the roles of mRNA, tRNA, and ribosomes in protein synthesis.

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10th Grade

Gene Regulation and Expression - Homeobox Genes and Lac Operon - Epigenetics and Genetic Control

Gene Regulation and Expression - Homeobox Genes and Lac Operon - Epigenetics and Genetic Control

Comprehension

Gene Regulation and Expression - Homeobox Genes and Lac Operon - Epigenetics and Genetic Control

10th Grade

Biology

Explore essential concepts in gene regulation, focusing on homeobox genes, the Lac Operon mechanism, and epigenetic principles. Gain an understanding of how gene expression is controlled and regulated, and acquire skills in identifying the roles of various genetic components and the impact of epigenetic changes on gene activity.

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10th Grade

Gene Expression and Regulation – Key Processes and Mechanisms

Gene Expression and Regulation – Key Processes and Mechanisms

Comprehension

Gene Expression and Regulation – Key Processes and Mechanisms

10th Grade

Biology

Explore gene expression and regulation through the key processes of transcription, translation, and RNA modification. Understand the role of RNA polymerase, the importance of DNA sequences like enhancers, and grasp the central dogma of biology, deepening comprehension of molecular biology.

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9th Grade

Cell Specialization - Cell Differentiation - Biological Processes

Cell Specialization - Cell Differentiation - Biological Processes

Comprehension

Cell Specialization - Cell Differentiation - Biological Processes

9th Grade

Science

Investigate the process of cell differentiation, where cells become specialized to perform specific functions within an organism. Understand fundamental principles of cell specialization and explore the roles of stem cells, transcription factors, and environmental influences in cellular development.

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11th Grade

Gene Expression Regulation - Operon Model - Prokaryotic Systems

Gene Expression Regulation - Operon Model - Prokaryotic Systems

Comprehension

Gene Expression Regulation - Operon Model - Prokaryotic Systems

11th Grade

Biology

Explore the operon model to understand gene expression regulation in prokaryotic cells. Develop insights into the mechanisms behind inducible and repressible operons and gain a comprehensive understanding of DNA transcription processes.

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9th Grade

Translation Process - mRNA Function - Gene Expression

Translation Process - mRNA Function - Gene Expression

Comprehension

Translation Process - mRNA Function - Gene Expression

9th Grade

Science

Explore the translation process, highlighting the attachment of mRNA to ribosomes in gene expression. Understand the cellular mechanics of protein synthesis, focusing on how mRNA carries genetic information necessary for accurate protein formation.

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12th Grade

Gene Linkage and Independent Assortment - Understanding Genetics

Gene Linkage and Independent Assortment - Understanding Genetics

Comprehension

Gene Linkage and Independent Assortment - Understanding Genetics

12th Grade

Biology

Investigate gene linkage and independent assortment, examining their impact on genetic inheritance. Gain insights into genetic concepts such as recombination and the distinction between linked and unlinked genes, thereby enhancing understanding of genetic patterns and predictions.

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10th Grade

Gene Regulation - Operons and Transcription Factors - Gene Expression

Gene Regulation - Operons and Transcription Factors - Gene Expression

Comprehension

Gene Regulation - Operons and Transcription Factors - Gene Expression

10th Grade

Biology

Explore the regulation and expression of genes, emphasizing operons in prokaryotes, transcription factors in eukaryotes, and environmental influences. Gain insights into gene regulation mechanisms, understand how various organisms control gene expression, and learn about the effects of external factors on genetic functions.

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11th Grade - University

Epistasis Mechanisms - Dominant and Recessive Interactions - Genetic Phenotypes

Epistasis Mechanisms - Dominant and Recessive Interactions - Genetic Phenotypes

Comprehension

Epistasis Mechanisms - Dominant and Recessive Interactions - Genetic Phenotypes

11th Grade - University

Biology

Examine the complex interactions of epistasis by analyzing how dominant and recessive genes influence genetic phenotypes, with examples from Labrador Retrievers and squash plants. Understand the phenotypic ratios resulting from dihybrid crosses and gain insights into the biological significance of gene interactions, deepening comprehension of complex genetic principles.

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10th Grade

Genetic Processes - Vocabulary and Concepts - Molecular Biology

Genetic Processes - Vocabulary and Concepts - Molecular Biology

Comprehension

Genetic Processes - Vocabulary and Concepts - Molecular Biology

10th Grade

Biology

Exploration of genetic coding mechanisms emphasizes understanding transcription, translation, and protein synthesis. Learners will comprehend genetic processes and develop skills to identify critical structures and processes in molecular genetics.

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9th Grade - 12th Grade

Innovative Techniques - Ethics & Challenges - Modern Healthcare

Innovative Techniques - Ethics & Challenges - Modern Healthcare

Comprehension

Innovative Techniques - Ethics & Challenges - Modern Healthcare

9th Grade - 12th Grade

English

Explore the latest innovations in surgical techniques and gene therapy, focusing on challenges and ethical considerations in modern healthcare. Gain insights into managing technological advancements and understanding disease transmission across species.

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