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Il y a 4 modules dans ce cours
Master essential chemistry principles that form the foundation of pharmacology, metabolism, and medical diagnostics. This course bridges basic chemical concepts with real-world healthcare applications, preparing you for advanced nursing coursework and clinical practice. Build confident understanding of molecular interactions, drug mechanisms, and laboratory interpretations essential for safe patient care.
By the end of this course, you will be able to:
Analyze atomic structure, bonding theories, and molecular interactions to understand drug-receptor mechanisms
Evaluate acid-base equilibria, buffer systems, and redox reactions in biological and pharmaceutical contexts
Explain organic chemistry principles including functional groups, stereochemistry, and reaction mechanisms relevant to biomolecules
Apply pharmacokinetic and pharmacodynamic concepts to understand drug action, enzyme interactions, and antibiotic mechanisms
Skills: Chemical Analysis, Laboratory Interpretation, Problem Solving, Critical Thinking
Chemistry is the scientific study of the properties of matter. It is a natural science that involves the elements that make up matter—their compositions, structures, properties, and behaviors, as well as the changes they undergo when reacting with other substances. At its most basic level, chemistry helps to explain how molecules and atoms may interact via chemical bonds and form new chemical compounds. In the body, this can be applied to our fundamental building blocks—for example, explaining why DNA behaves the way it does, how proteins fold, and why cell membranes have hydrophilic and hydrophobic compartments. Clinically, we encounter chemistry most often as it applies to pharmaceuticals and pharmacology. It governs the behavior of these molecules in our bodies, as with regard to bioavailability to binding sites and other characteristics.
Inclus
28 vidéos5 lectures28 devoirs
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28 vidéos•Total 139 minutes
Introduction•2 minutes
Atoms•11 minutes
Periodic Table•4 minutes
Electrons•4 minutes
Shells•6 minutes
Orbitals•10 minutes
Introduction•4 minutes
Aufbau Principle•3 minutes
Hund's Rule•6 minutes
Valence Electrons•4 minutes
Formation of Ions•12 minutes
Covalent Bonds•5 minutes
Valence Bond Theory•4 minutes
Other Sigma Bonds•3 minutes
Electronegativity•3 minutes
Hybridization•8 minutes
Pi Bonds•3 minutes
Double and Triple Bond•5 minutes
Introduction•3 minutes
Chirality•8 minutes
Cahn—Ingold—Prelog Rules•6 minutes
Identifying Enantiomers & Synthesis of Chiral Compounds•4 minutes
Introduction•4 minutes
Dipoles•5 minutes
Observable Polarity•3 minutes
Resonance: Mesomeric Effects•6 minutes
Resonance: Examples•2 minutes
Induction and Resonance•3 minutes
5 lectures•Total 150 minutes
Introduction to Chemistry: Slides•30 minutes
Quantum Numbers: Slides•30 minutes
Chemical Bonding: Slides•30 minutes
Stereochemistry: Slides•30 minutes
Electronegativity: Slides•30 minutes
28 devoirs•Total 165 minutes
Atoms: Quiz•5 minutes
Periodic Table: Quiz•5 minutes
Electrons: Quiz•5 minutes
Shells: Quiz•5 minutes
Orbitals: Quiz•5 minutes
Introduction: Quiz•5 minutes
Aufbau Principle: Quiz•5 minutes
Hund's Rule: Quiz•5 minutes
Valence Electrons: Quiz•5 minutes
Formation of Ions: Quiz•5 minutes
Covalent Bonds: Quiz•5 minutes
Valence Bond Theory: Quiz•5 minutes
Other Sigma Bonds: Quiz•5 minutes
Electronegativity: Quiz•5 minutes
Hybridization: Quiz•5 minutes
Pi Bonds: Quiz•5 minutes
Double and Triple Bond: Quiz•5 minutes
Introduction: Quiz•5 minutes
Chirality: Quiz•5 minutes
Cahn—Ingold—Prelog Rules: Quiz•5 minutes
Identifying Enantiomers & Synthesis of Chiral Compounds: Quiz•5 minutes
Introduction: Quiz•5 minutes
Dipoles: Quiz•5 minutes
Observable Polarity: Quiz•5 minutes
Resonance: Mesomeric Effects: Quiz•5 minutes
Resonance: Examples: Quiz•5 minutes
Induction and Resonance: Quiz•5 minutes
Chemistry: Introduction – Final Quiz•30 minutes
Ionic Chemistry
Module 2•4 heures à terminer
Détails du module
Ionic chemistry is the field of chemistry that focuses on ions and ionic bonds, including the concepts of acid–base reactions, oxidizing and reducing agents, buffer capacity, and equilibrium. Ionic bonding is the complete transfer of valence electrons between atoms. This type of chemical bond generates ions of opposite charges. In ionic bonds, the nonmetal becomes a negatively charged anion via acceptance of electrons, while the metal loses those electrons to become a positively charged cation. These concepts are extremely important for understanding basic physiologic functions, pharmacologic mechanisms, and the interplay between the two in the body. Buffers, for example, are regulators of pH in the bloodstream, while acid–base chemistry is key to understanding respiratory physiology. A strong grasp of ionic chemistry will serve you well in the field of medicine.
Inclus
15 vidéos2 lectures15 devoirs
Afficher les informations sur le contenu du module
15 vidéos•Total 77 minutes
Introduction•4 minutes
Equilibrium•9 minutes
Strength and Concentration•5 minutes
Bases•4 minutes
Calculation Examples•8 minutes
Buffer Solutions•3 minutes
Buffer Solution in Action•8 minutes
Buffer Capacity and Ranges•2 minutes
Introduction•6 minutes
Solutions and Molarity•7 minutes
Redox Reactions•3 minutes
Oxidizing and Reducing Agents•7 minutes
Combination Reactions•5 minutes
Balancing Redox Reactions•4 minutes
Example Calculation and Summary•4 minutes
2 lectures•Total 60 minutes
Acid-Base Reactions: Slides•30 minutes
Other Ionic Reactions: Slides•30 minutes
15 devoirs•Total 100 minutes
Equilibrium: Quiz•5 minutes
Strength and Concentration: Quiz•5 minutes
Bases: Quiz•5 minutes
Calculation Examples: Quiz•5 minutes
Buffer Solutions: Quiz•5 minutes
Buffer Solution in Action: Quiz•5 minutes
Buffer Capacity and Ranges: Quiz•5 minutes
Introduction: Quiz•5 minutes
Solutions and Molarity: Quiz•5 minutes
Redox Reactions: Quiz•5 minutes
Oxidizing and Reducing Agents: Quiz•5 minutes
Combination Reactions: Quiz•5 minutes
Balancing Redox Reactions: Quiz•5 minutes
Example Calculation and Summary: Quiz•5 minutes
Ionic Chemistry – Final Quiz•30 minutes
Medical Chemistry
Module 3•9 heures à terminer
Détails du module
You may notice that the Medical Chemistry section contains an inordinately large number of videos. This is no accident. The fields of medicine and chemistry are very closely linked, as the principles of the latter, in some way or another, touch nearly every aspect of the former (e.g., pharmacokinetics, bioavailability, the mechanisms of antibiotic resistance, and the basic building blocks of proteins and amino acids and how they interact with one another). Being able to grasp the chemical interplay between the human body and its environment is important not only for researchers and drug developers but also for clinicians.
Inclus
32 vidéos6 lectures33 devoirs
Afficher les informations sur le contenu du module
32 vidéos•Total 151 minutes
Introduction•4 minutes
Physical and Chemical Properties•3 minutes
Preparation of Amines•6 minutes
Amino Acids•4 minutes
Amino Acids, Peptides and Proteins•3 minutes
Introduction•3 minutes
Receptors•6 minutes
Types of Interaction•5 minutes
Dipole-Dipole Interactions•4 minutes
Ion-Dipole Bonds•6 minutes
Role of Water•5 minutes
Shape and Isomerism•6 minutes
Introduction•6 minutes
Roles of Enzymes•4 minutes
Metal Containing Enzymes•5 minutes
Enzyme Inhibitors•6 minutes
Allosteric Binding•4 minutes
Introduction•3 minutes
Lipophilicity•5 minutes
Acid Sensitivity•4 minutes
Bbb Penetration•3 minutes
Introduction•4 minutes
Reducing Ionization•6 minutes
Creation of Prodrug•5 minutes
Prolong Duration of Action•5 minutes
Introduction•8 minutes
Peptidoglycan•5 minutes
Action of Transamidase•5 minutes
Problems With Penicillins•5 minutes
Problem of Beta Lactamases•4 minutes
Other Approaches to Beta Lactamase Issue•3 minutes
Carbapenems•3 minutes
6 lectures•Total 180 minutes
Amines: Slides•30 minutes
Biological Interactions: Slides•30 minutes
Enzymes: Slides•30 minutes
Pharmacokinetics and Pharmacodynamics: Slides•30 minutes
Prodrugs: Slides•30 minutes
Beta Lactam Antibiotics: Slides•30 minutes
33 devoirs•Total 190 minutes
Introduction: Quiz•5 minutes
Physical and Chemical Properties: Quiz•5 minutes
Preparation of Amines: Quiz•5 minutes
Amino Acids: Quiz•5 minutes
Amino Acids, Peptides and Proteins: Quiz•5 minutes
Introduction: Quiz•5 minutes
Receptors: Quiz•5 minutes
Types of Interaction: Quiz•5 minutes
Dipole-Dipole Interactions: Quiz•5 minutes
Ion-Dipole Bonds: Quiz•5 minutes
Role of Water: Quiz•5 minutes
Shape and Isomerism: Quiz•5 minutes
Introduction: Quiz•5 minutes
Roles of Enzymes: Quiz•5 minutes
Metal Containing Enzymes: Quiz•5 minutes
Enzyme Inhibitors: Quiz•5 minutes
Allosteric Binding: Quiz•5 minutes
Introduction: Quiz•5 minutes
Lipophilicity: Quiz•5 minutes
Acid Sensitivity: Quiz•5 minutes
Bbb Penetration: Quiz•5 minutes
Introduction: Quiz•5 minutes
Reducing Ionization: Quiz•5 minutes
Creation of Prodrug: Quiz•5 minutes
Prolong Duration of Action: Quiz•5 minutes
Introduction: Quiz•5 minutes
Peptidoglycan: Quiz•5 minutes
Action of Transamidase: Quiz•5 minutes
Problems With Penicillins: Quiz•5 minutes
Problem of Beta Lactamases: Quiz•5 minutes
Other Approaches to Beta Lactamase Issue: Quiz•5 minutes
Carbapenems: Quiz•5 minutes
Medical Chemistry – Final Quiz•30 minutes
Organic Chemistry
Module 4•11 heures à terminer
Détails du module
Organic chemistry is the study of the structures, properties, compositions, reactions, and preparations of carbon-containing compounds. Most organic compounds contain carbon and hydrogen, the backbones of organic chemistry, but often these compounds include any number of other elements, such as nitrogen, oxygen, phosphorus, and sulfur. Organic compounds are found in many modern materials, including but not limited to agrochemicals, food, fuel, cosmetics, pharmaceuticals, and plastics. They have been an important factor in economic growth and have proven foundational to fields like medicine, biotechnology, and biochemistry.
Inclus
36 vidéos6 lectures37 devoirs
Afficher les informations sur le contenu du module
36 vidéos•Total 157 minutes
Introduction•4 minutes
Nucleophiles and Electrophiles•3 minutes
Electrophilic Attack•3 minutes
Stability of Carbocations•3 minutes
Addition of Halogens•5 minutes
Addition Reactions•3 minutes
Introduction•6 minutes
Nucleophilic Substitution and Sn2 Reaction•4 minutes
Reaction Parameters•4 minutes
Sn1 Reaction•5 minutes
Summary Sn1 and Sn2 Reactions•2 minutes
Elimination Reaction•4 minutes
Introduction•3 minutes
Hydrogen Bonds•7 minutes
Formation of Alkyl Halides•4 minutes
Elimination of Water•3 minutes
Ester Formation•5 minutes
Redox Reactions and Enzymes•5 minutes
Introduction•5 minutes
Biologically Relevant Examples•3 minutes
Benzene•3 minutes
Aromatic Compounds•4 minutes
Electrophilic Aromatic Substitution•4 minutes
Introduction•5 minutes
Structure•6 minutes
Nucleophilic Addition•7 minutes
Carbohydrates•5 minutes
Oxidation•2 minutes
Introduction•3 minutes
Structure and Acidity•6 minutes
Nomenclature•8 minutes
Nucleophilic Substitution•5 minutes
Reactivity•6 minutes
Hydrolysis•4 minutes
Amides Formation from Esters•4 minutes
Exercise•4 minutes
6 lectures•Total 180 minutes
Alkanes and Alkenes: Slides•30 minutes
Haloalkanes: Slides•30 minutes
Alcohols: Slides•30 minutes
Aromatic Compounds and Eas: Slides•30 minutes
Carbonyl Compounds: Slides•30 minutes
Carboxylic Acids and Their Derivatives: Slides•30 minutes
37 devoirs•Total 295 minutes
Introduction: Quiz•5 minutes
Nucleophiles and Electrophiles: Quiz•5 minutes
Electrophilic Attack: Quiz•5 minutes
Stability of Carbocations: Quiz•5 minutes
Addition of Halogens: Quiz•5 minutes
Addition Reactions: Quiz•5 minutes
Introduction: Quiz•5 minutes
Nucleophilic Substitution and Sn2 Reaction: Quiz•5 minutes
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