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High School Isotope Effects In Enzymology Interactive Videos

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9th Grade - 12th Grade

Understanding Enzyme Function - Enzyme Activity & Kinetics - Biological Catalysts

Understanding Enzyme Function - Enzyme Activity & Kinetics - Biological Catalysts

Interactive Video

Understanding Enzyme Function - Enzyme Activity & Kinetics - Biological Catalysts

9th Grade - 12th Grade

Science, Biology

Explore the critical role of enzymes in biological systems, focusing on their specificity and fundamental concepts in enzyme kinetics such as Vmax and the Induced Fit Hypothesis. Understand the factors influencing enzyme activity to enhance knowledge of biological catalysis and modulation of reaction rates.

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10th Grade - 12th Grade

Enzyme Activity - Enzyme Inhibition Mechanisms - Biochemical Reactions

Enzyme Activity - Enzyme Inhibition Mechanisms - Biochemical Reactions

Interactive Video

Enzyme Activity - Enzyme Inhibition Mechanisms - Biochemical Reactions

10th Grade - 12th Grade

Science, Biology, Chemistry

Explore competitive, non-competitive, and uncompetitive inhibition mechanisms, analyzing their effects on enzyme kinetics. Mastering these concepts enables the analysis of enzyme-related biochemical pathways and understanding the impacts of different inhibition types on enzymatic efficiency and pathway regulation.

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10th Grade - 12th Grade

Mechanistic Analysis - Enzyme Inhibition - Biochemistry

Mechanistic Analysis - Enzyme Inhibition - Biochemistry

Interactive Video

Mechanistic Analysis - Enzyme Inhibition - Biochemistry

10th Grade - 12th Grade

Biology, Chemistry, Science

Investigate the mechanisms of enzyme inhibition, focusing on competitive and non-competitive processes. Study the molecular interactions that influence catalytic activity and gain insights into the principles of biochemistry. Enhance analytical skills related to enzymatic reactions and understand the role of inhibitors in biological systems.

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9th Grade - 10th Grade

Catalytic Mechanisms - Enzyme Activity & Industrial Processes

Catalytic Mechanisms - Enzyme Activity & Industrial Processes

Interactive Video

Catalytic Mechanisms - Enzyme Activity & Industrial Processes

9th Grade - 10th Grade

Chemistry

Examine the critical role of catalysis in biochemical and industrial contexts by understanding enzyme mechanisms and their applications, such as the Haber process. Gain a comprehensive understanding of catalyst functions, distinguish between various types of catalysis, and recognize the significant impacts of catalysts on chemical reactions and metabolic pathways.

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9th Grade - 12th Grade

Enzyme Activity - Mechanisms and Roles - Biochemical Reactions

Enzyme Activity - Mechanisms and Roles - Biochemical Reactions

Interactive Video

Enzyme Activity - Mechanisms and Roles - Biochemical Reactions

9th Grade - 12th Grade

Science, Biology

Examine the crucial roles and mechanisms of enzymes in biochemical reactions, highlighting their function as catalysts and specific naming conventions. Gain insights into enzyme-substrate interactions, factors affecting enzyme activity, and the impact of inhibitors. Develop a comprehensive understanding of enzyme kinetics and their applications.

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9th Grade - 12th Grade

Catalysis Mechanisms - Enzyme Functions - Biochemical Reactions

Catalysis Mechanisms - Enzyme Functions - Biochemical Reactions

Interactive Video

Catalysis Mechanisms - Enzyme Functions - Biochemical Reactions

9th Grade - 12th Grade

Science, Biology, Chemistry

Examine the dynamic roles and mechanisms of enzymes in catalyzing biochemical reactions within the body. Gain understanding of enzyme activity, substrate specificity, and the importance of cofactors, exploring essential biochemical concepts and applications.

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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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9th Grade - 12th Grade

Understanding Enzyme Function - The Lock and Key Model - Biochemistry

Understanding Enzyme Function - The Lock and Key Model - Biochemistry

Interactive Video

Understanding Enzyme Function - The Lock and Key Model - Biochemistry

9th Grade - 12th Grade

Biology, Science, Chemistry

Explore the principles of enzyme activity focusing on the lock and key model, which highlights enzyme specificity and substrate interaction. Gain insights into the historical evolution of this model, including the introduction of the induced fit model, for a deeper understanding of enzyme behavior in biological processes.

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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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9th Grade - 10th Grade

Enzyme Functionality - Reaction Dynamics - Biochemical Processes

Enzyme Functionality - Reaction Dynamics - Biochemical Processes

Interactive Video

Enzyme Functionality - Reaction Dynamics - Biochemical Processes

9th Grade - 10th Grade

Biology

Explore how environmental conditions affect enzyme activity through hands-on experiments focusing on liver and hydrogen peroxide interactions. Understand the influence of temperature and pH on enzyme reactions, and examine catalase reusability to enhance comprehension of biochemical processes.

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10th Grade - 12th Grade

Hypertension Management - Treatment Strategies and Mechanisms

Hypertension Management - Treatment Strategies and Mechanisms

Interactive Video

Hypertension Management - Treatment Strategies and Mechanisms

10th Grade - 12th Grade

Biology, Science, Health

Investigate the comprehensive mechanisms and treatment strategies for managing hypertension, covering the most common causes and the use of pharmaceutical interventions such as diuretics and ACE inhibitors. Gain a deeper understanding of cardiovascular health management.

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10th Grade - University

Enzyme Facilitation - Glucose Phosphorylation - Biochemical Reaction Mechanisms

Enzyme Facilitation - Glucose Phosphorylation - Biochemical Reaction Mechanisms

Interactive Video

Enzyme Facilitation - Glucose Phosphorylation - Biochemical Reaction Mechanisms

10th Grade - University

Biology, Science

Analyze the biochemical process of glucose phosphorylation and enzyme roles in facilitating this reaction. Understand how enzymes influence reaction conditions and energy states, gaining insights into crucial biochemical pathways and mechanisms. Learners will enhance their comprehension of these processes, leading to a deeper understanding of the metabolic functions and regulatory mechanisms in cellular environments.

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10th Grade - 12th Grade

[Enzyme Function - Biochemical Processes - Enzymes and Proteins]

[Enzyme Function - Biochemical Processes - Enzymes and Proteins]

Interactive Video

[Enzyme Function - Biochemical Processes - Enzymes and Proteins]

10th Grade - 12th Grade

Biology, Science

Explore the distinctive characteristics and roles of enzymes in comparison to general proteins, emphasizing their catalytic properties and active involvement in cellular processes such as glycolysis. Gain a thorough understanding of enzyme functionality and protein structures to enhance skills in analyzing biochemical interactions and applying this knowledge effectively in experimental contexts.

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10th Grade - University

Analyzing Chemical Reactivity - Bases - Nucleophiles

Analyzing Chemical Reactivity - Bases - Nucleophiles

Interactive Video

Analyzing Chemical Reactivity - Bases - Nucleophiles

10th Grade - University

Chemistry

Analyze the complexities of chemical reactivity, concentrating on distinguishing between bases and nucleophiles, understanding their roles in reactions, and examining factors influencing their strength. Develop the ability to differentiate bases from nucleophiles, evaluate how charge and solvents impact nucleophilic behavior, and predict reaction mechanisms with precision.

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9th Grade - 12th Grade

[Chemical Differences - Heavy Water vs. Regular Water - Nuclear Chemistry and Safety]

[Chemical Differences - Heavy Water vs. Regular Water - Nuclear Chemistry and Safety]

Interactive Video

[Chemical Differences - Heavy Water vs. Regular Water - Nuclear Chemistry and Safety]

9th Grade - 12th Grade

Physics, Chemistry, Science

Examine the differences between heavy water and regular water, focusing on their nuclear chemistry and safety implications. Understand how isotopic variations influence chemical reactions and nuclear operations, improving knowledge of chemical safety and scientific applications.

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11th Grade - University

Mechanisms and Side Effects - Glucocorticoids - Endocrinology

Mechanisms and Side Effects - Glucocorticoids - Endocrinology

Interactive Video

Mechanisms and Side Effects - Glucocorticoids - Endocrinology

11th Grade - University

Chemistry, Biology

Explore the mechanisms, administration routes, and side effects of glucocorticoids, emphasizing their role in treating conditions such as asthma and managing immune responses. Gain insights into the endocrine functions of glucocorticoids, understand their significant mechanisms of action, and recognize the potential health implications associated with their use.

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11th Grade - University

Reaction Mechanism Selection - Nucleophilicity and Basicity - Organic Chemistry

Reaction Mechanism Selection - Nucleophilicity and Basicity - Organic Chemistry

Interactive Video

Reaction Mechanism Selection - Nucleophilicity and Basicity - Organic Chemistry

11th Grade - University

Science, Chemistry

Enhance skills in predicting organic reaction pathways by understanding the factors that influence the choice between SN1, SN2, E1, and E2 mechanisms. Focus on steric hindrance, nucleophilicity, and solvent effects to grasp the interplay between nucleophilicity and basicity in reactions.

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10th Grade - 12th Grade

Enzyme Catalysis - Mechanisms & Functions - Biological Chemistry

Enzyme Catalysis - Mechanisms & Functions - Biological Chemistry

Interactive Video

Enzyme Catalysis - Mechanisms & Functions - Biological Chemistry

10th Grade - 12th Grade

Science, Biology

Investigate the processes and functions of enzymes in biological reactions, focusing on enzyme-substrate interaction, enzyme inhibition, and the role of cofactors. Master the core principles of enzyme functionality, ensuring the ability to assess enzyme activity and apply this expertise in practical laboratory experiments.

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9th Grade - 12th Grade

Enzyme Kinetics - Activity & Inhibition Mechanisms - Biochemical Reactions

Enzyme Kinetics - Activity & Inhibition Mechanisms - Biochemical Reactions

Interactive Video

Enzyme Kinetics - Activity & Inhibition Mechanisms - Biochemical Reactions

9th Grade - 12th Grade

Science, Chemistry, Biology

Gain a comprehensive understanding of enzyme behavior, focusing on activity patterns and the impact of inhibitors on biochemical reactions. Learn how factors such as temperature, pH, and concentration affect enzyme activity, and differentiate between competitive and non-competitive inhibition.

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8th Grade - 12th Grade

Enzyme Functionality - Impact of Conditions - Biochemical Processes

Enzyme Functionality - Impact of Conditions - Biochemical Processes

Interactive Video

Enzyme Functionality - Impact of Conditions - Biochemical Processes

8th Grade - 12th Grade

Chemistry, Biology, Science

Investigate the core principles of enzyme activity, emphasizing the impact of environmental elements like temperature and pH on their functionality and structure. Gain insights into enzyme denaturation and identify the optimal conditions for enzyme function, enhancing comprehension of biochemical catalyst mechanisms.

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