ANTALYA BİLİM UNIVERSITY
Course Information Package

CHM 1001 - General Chemistry

Basic Information

Course Code:
CHM 1001
Course Name:
General Chemistry
Language of Instruction:
English
Course Type:
Class
Course Level:
Bachelor
ECTS:
5.00
Instructor:
Dr. Öğr. Üyesi Seda DEMİREL TOPEL

Course Objectives

Understanding of basic concepts related to chemistry and gaining necessary knowledge and applying it to engineering fields, technological and environmental situationsDeveloping chemistry knowledge, critical thinking skills and problem solving skills by working on case studies and practical problems

Course Content

The CHM1001 covers the fundamental aspects of general chemistry. Matter ant its properties, Uncertainty and Significant figures, Dimentional analysis, Atom and atomic theory, Mass relationships in chemical reactions, Reactions in aqueous solutions, Gases, Thermochemistry, Electronic structure of atoms, Periodic table, Chemical binding, Liquids and solids, Physical properties of solutions, Thermodynamics and Electrochemistry are the sub-titles of this course.

Prerequisites / Corequisites

No pre-or co-requisites

Course Books / Materials / Recommended Resources

General Chemistry : The essential concept (11th Edition) (ISBN:9781259060427): Autohor:Raymond Chang, Publisher: McGrow Hill General Chemistry: Principles and modern applications (11th Edition)(ISBN: 9780134097329) Authour: Ralph H. Petrucchi, Publisher: Pearson

Learning Outcomes

Code Description
LO1 The scientific method, classification of matter, physical and chemical properties of matter, measurement and significant numbers will be learned.
LO2 The atomic theory, the structure of an atom, the periodic table, molecules and ions, chemical formulas and naming of compounds will be learned.
LO3 Chemical reactions and chemical equations, reagent yield will be calculated.
LO4 General properties of aqueous solutions, precipitation reaction, acid-base reactions, pH and oxidation-reduction reactions will be learned.
LO5 Substances that exist as gases, pressure of a gas, the gas laws, the ideal gas equation, dalton’s law of partial pressures, kinetic molecular theory of gases
LO6 The nature of energy and types of energy, law of thermodynamics, enthalpy, entropy, and gibbs rree energy will be learned.
LO7 Electronic structure of atoms, chemical bonds, liquids and solids will be learned.
LO8 Redox reactions, galvanic cells, standard reduction potentials, batteries, corrosion, semiconductors will be learned.

Assessment

# Assessment Type Contribution (%)
1 Final Exam %100

PO - LO Matrix

Learning Outcomes (LO):
  • LO1
  • LO2
  • LO3
  • LO4
  • LO5
  • LO6
  • LO7
  • LO8

Teaching and Learning Methods

# Method Name Description Tools
1 Lecture (expository teaching), interactive discussion Listening and taking notes. Standard classroom technologies, multimedia tools (projector, computer, digital presentations)
2 Controversial Course Listening and comprehension, critical thinking Standard classroom technologies, multimedia tools, projector, computer, overhead projector
3 Problem Solving * Analyzing physical and physiological problems using problem-solving techniques and developing appropriate solutions.
4 Brainstorming The purpose of forming pairs is to ensure that they are open to innovation during the idea generation phase Standard classroom technologies, multimedia tools, projector, computer, overhead projector
5 Simulation Exploring the operation of physical circuit designs through the use of simulation software. Simulation tools
6 Homework Solving and analyzing homework questions using a computer and Excel. Computer
7 Guest Speaker Listening and comprehension, observation/processing situations Standard classroom technologies, multimedia tools, projector, computer, overhead projector, special equipment

Academic Integrity and Artificial Intelligence

Violation of academic integrity includes, but is not limited to, cheating and attempting to cheat, plagiarism, providing false information or citations, facilitating dishonest actions by others, obtaining exams without authorization, using previously completed work without informing the instructor, and altering another student's academic work. Any form of violation of academic integrity is a serious academic offense and will have consequences under the university's disciplinary regulations.