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KIM 109 - Basic Chemistry and Laboratory

Faculty of Health Sciences · Nutrition and Dietetics · Undergraduate

ECTS: 5 T+P+L: 2+0+2 Compulsory
Coordinator: Arş. Gör. İrem KAYA
Instructors: Prof. Dr. Serap ACAR

Course Objective

To provide students with fundamental concepts of chemistry, including the structure of matter, chemical bonding, stoichiometry, solutions, and acid-base equilibrium; to introduce the chemistry of organic compounds and biomolecules that form the foundation of nutritional science; and to teach laboratory safety, measurement, solution preparation, titration, qualitative analysis skills, and scientific report writing.

Course Content

This course covers the properties and measurement of matter, atomic structure and periodic properties, chemical bonding and intermolecular forces, chemical compounds and reactions, stoichiometry, aqueous solutions and concentration, acid-base equilibrium and buffers, chemical equilibrium, oxidation-reduction reactions, an introduction to organic chemistry, and the basic chemistry of carbohydrates, proteins, and lipids. The theoretical topics are reinforced through laboratory applications conducted in parallel.

Required Resources

Petrucci, R. H., Herring, F. G., Madura, J. D., & Bissonnette, C. (2017). General chemistry: Principles and modern applications (12th ed.). Pearson.

Course Learning Outcomes

  1. Explains the structure of matter, periodic properties, and types of chemical bonds.
  2. Performs stoichiometric calculations on chemical reactions using the concept of the mole.
  3. Prepares solutions of different concentrations and performs concentration calculations.
  4. Relates the concepts of acids and bases, pH, and buffers to biological and nutrition-related systems.
  5. Recognizes the basic chemical structures and properties of carbohydrates, proteins, and lipids.
  6. Conducts basic experiments in accordance with laboratory safety rules, evaluates experimental data, and prepares scientific reports.

Core Area Distribution

(44) Physical Sciences%100

Teaching Methods

ExpressionQuestion-AnswerDiscussionExercise and PracticePresentationGuided PracticeGroup StudyBrain StormingCase StudyExperiment - Test / Lab/ Workshop / Field PracticeSelf studyProblem Solving

Assessment & Evaluation

HomeworkPerformance Assignment ( Lab / Workshop / Field Work / Seminar / Presentation / Completion Study / ThesisTesting (Essay / Tests: True-Falls, multiple-choice, short answer, matching)

ECTS / Workload

ActivityQuantityDuration (h)Total Workload
Course Duration (Including Exam Week)12224
Out of Class Study Period14456
Midterm133
Quiz122
Assignment10110
Practice12224
Final166

Course Schedule

WeekSubjectPreparation
1Theoretical: Fundamental Concepts of Chemistry: Classification of Matter, Physical and Chemical Properties; Measurement, Systems of Units, and Significant Figures Laboratory: Laboratory Safety RulesReview of the relevant textbook section and laboratory experiment handout
2Theoretical: Atomic Structure and the Development of Atomic Theory; Subatomic Particles, Isotopes and Atomic Mass; Electronic Structure of the Atom; The Periodic Table and the Study of Periodic Properties Laboratory: Introduction to Basic Laboratory EquipmentReview of the relevant textbook section and laboratory experiment handout
3Theoretical: Types of Chemical Bonds (Ionic, Covalent, and Metallic) and Bonding Theories Laboratory: Techniques for Separating Homogeneous MixturesReview of the relevant textbook section and laboratory experiment handout
4Theoretical: Molecular Geometry, Polarity, and Intermolecular Interactions; Hydrogen Bonding and the Structural Properties of Water Laboratory: Techniques for Separating Heterogeneous MixturesReview of the relevant textbook section and laboratory experiment handout
5Theoretical: Naming Chemical Compounds, Chemical Formulas, and the Concept of the Mole Laboratory: Determination of the Densities of Solid and Liquid SubstancesReview of the relevant textbook section and laboratory experiment handout
6Theoretical: Chemical Reactions, Balancing Chemical Equations, and Stoichiometric Calculations Laboratory: Solution Preparation and Molarity CalculationsReview of the relevant textbook section and laboratory experiment handout
7Public HolidayPublic Holiday
8Mİd-term ExamMid-term Exam
9Theoretical: Aqueous Solutions, Solubility, and Units of Concentration (Molarity, Mass Percentage, ppm) Laboratory: Acid-Base TitrationsReview of the relevant textbook section and laboratory experiment handout
10Theoretical: Acids and Bases; pH–pOH Concepts, Acid-Base Strength, and Neutralization Reactions; Acid-Base Equilibria, Buffer Solutions, and pH Balance in Physiological Systems Laboratory: Investigation of the Effect of Salivary AmylaseReview of the relevant textbook section and laboratory experiment handout
11Theoretical: Oxidation-Reduction (Redox) Reactions and the Concept of Antioxidants Laboratory: Determination of Fatty AcidsReview of the relevant textbook section and laboratory experiment handout
12Theoretical: Introduction to Organic Chemistry: Hydrocarbons and Functional Groups Laboratory: Determination of Salt Content in CheeseReview of the relevant textbook section and laboratory experiment handout
13Theoretical: Basic Chemistry of Biomolecules: Carbohydrates and Lipids Laboratory: Quantitative Analysis of Ascorbic Acid (Vitamin C)Review of the relevant textbook section and laboratory experiment handout
14Theoretical: Proteins and Amino Acids Laboratory: Determination of Lactic Acid in MilkReview of the relevant textbook section and laboratory experiment handout
15Final ExamFinal Exam
16