Course Number and Title:
CHM 150 Chemical Principles I
Campus Location
- Dover
- Georgetown
- Stanton
- Wilmington
Prerequisites
Prerequisite: (Test scores or MAT 152 or MAT 183 or higher) and (CHM 110 or MAT 193)
Course Credits and Hours
5 credit(s)
4 lecture hours/week
3 lab hours/week
Course Description
This course is the first of a two-semester sequence for science and engineering majors. Topics covered include atomic and molecular structure, nomenclature, chemical reactions, stoichiometry, oxidation-reduction, thermo-chemistry, electronic structure of atoms, chemical bonding, gases, liquids and solids. Laboratory experiments are used to illustrate theory.
Additional Materials
None
Core Course Performance Objectives (CCPOs)
- Practice individual and collaborative quantitative skills necessary to solve scientific problems. (CCC 1, 2, 6; PGC 1, 7, 10).
- Relate proper chemical terminology to nomenclature and formulas. (CCC 1, 2, 6; PGC 1, 7, 10).
- Describe the structure and composition of matter. (CCC 1, 2, 6; PGC 1, 7, 10)
- Explain properties of chemical substances. (CCC 1, 2, 6; PGC 1, 7, 10)
- Express observable changes as chemical equations. (CCC 1, 2, 6; PGC 1, 7, 10)
- Perform calculations using principles of chemistry. (CCC 1, 2, 6; PGC 1, 7, 10)
- Safely assemble and operate routine chemistry laboratory apparatus. (CCC 2, 3, 6; PGC 1, 2, 3, 4, 5, 6, 7, 8, 9, 10)
- Perform laboratory activities, document them in accordance with accepted professional standards, and analyze the results. (CCC 1, 2, 3, 4, 5, 6; PGC 1, 2, 3, 4, 5, 6, 7, 8, 9, 10)
See Core Curriculum Competencies and Program Graduate Competencies at the end of the syllabus. CCPOs are linked to every competency they develop.
Measurable Performance Objectives (MPOs)
Upon completion of this course, the student will:
- Practice individual and collaborative quantitative skills necessary to solve scientific problems.
- Describe the scientific method.
- Distinguish between qualitative and quantitative observations.
- Interpret and apply the SI and non-SI systems of measurements.
- Apply dimensional analysis using both SI and non-SI units.
- Express numbers in scientific notation.
- Define precision and accuracy.
- Express calculated results to the correct number of significant figures to reflect measurement uncertainty.
- Relate proper chemical terminology to nomenclature and formulas.
- Write the name or chemical description of various particles of matter, given the other.
- Compare and contrast the nomenclature of various particles of matter.
- Describe the organization of the periodic table.
- Use the periodic table to construct chemical nomenclature and formulas.
- Describe the structure and composition of matter.
- Define and classify samples of matter.
- State the law of conservation of matter.
- Identify and compare the physical and chemical properties of various particles of matter.
- Distinguish between physical and chemical changes.
- Summarize the historical development of the atomic model of matter.
- Identify the electrical charge and mass of each of the three major subatomic particles.
- Compare atomic number and mass number.
- Differentiate between isotopes in terms of atomic structure.
- Define relative atomic mass.
- Calculate average atomic mass using isotopic composition.
- Explain quantized matter and energy.
- Recognize, draw, and interpret descriptions of electronic structures.
- Identify trends in the periodic table.
- Explain properties of chemical substances.
- Describe macroscopic and atomic scale properties of elements and compounds.
- Compare observable behavior to theoretical behavior.
- Explain changes of state as dynamic equilibria.
- Explain solubility.
- Describe energy in terms of thermodynamic variables.
- Interpret thermodynamic data.
- Explain chemical bonding.
- Compare actual structure to theoretical structure.
- Express observable changes as chemical equations.
- Describe chemical reactions using proper chemical notation.
- Explain oxidation-reduction in chemistry.
- Distinguish and predict the behavior of ionic and molecular compounds in chemical reactions.
- Perform calculations using principles of chemistry.
- Set up and solve conversion problems.
- Analyze elemental composition.
- Set up and solve stoichiometry problems.
- Analyze yields of a reaction.
- Set up and solve thermodynamic problems.
- Set up and solve gas problems.
- Set up and solve solution problems.
- Safely assemble and operate routine chemistry laboratory apparatus.
- Describe and apply safe laboratory practices.
- Demonstrate correct use of laboratory equipment, including balances, volumetric glassware, spectrometers, and micropipettes.
- Construct models to illustrate chemical theories.
- Perform laboratory activities, document them in accordance with accepted professional standards, and analyze the results.
- Distinguish experimental results and theory.
- Set up and maintain a laboratory notebook.
- Synthesize and isolate a compound, and calculate the theoretical, actual, and percentage yields.
- Construct a calibration curve, and perform a quantitative analysis.
- Determine heat capacities and heats of reaction.
- Use titration to determine the concentration of a substance.
- Demonstrate proper sampling technique.
- Summarize and orally present results.
Evaluation Criteria/Policies
The grade will be determined using the Delaware Tech grading system:
90-100 |
= |
A |
80-89 |
= |
B |
70-79 |
= |
C |
0-69 |
= |
F |
Students should refer to the
Catalog/Student Handbook for information on the Academic Standing Policy, the Academic Integrity Policy, Student Rights and Responsibilities, and other policies relevant to their academic progress.
Program Graduate Competencies (PGCs are the competencies every graduate will develop specific to his or her major)
- Apply knowledge of the theories and principles of chemistry.
- Follow safety procedures.
- Perform basic laboratory operations and techniques.
- Keep a laboratory notebook following standard laboratory practices and present data in an organized written format.
- Prepare common laboratory solutions.
- Prepare and purify samples using common techniques.
- Communicate in a professional manner.
- Analyze samples by common qualitative and quantitative techniques.
- Use and maintain common laboratory instruments and equipment.
- Apply mathematical concepts to the solution of scientific problems.
Core Curriculum Competencies (CCCs are the competencies every graduate will develop)
- Apply clear and effective communication skills.
- Use critical thinking to solve problems.
- Collaborate to achieve a common goal.
- Demonstrate professional and ethical conduct.
- Use information literacy for effective vocational and/or academic research.
- Apply quantitative reasoning and/or scientific inquiry to solve practical problems.
Students in Need of Accommodations Due to a Disability
We value all individuals and provide an inclusive environment that fosters equity and student success. The College is committed to providing reasonable accommodations for students with disabilities. Students are encouraged to schedule an appointment with the campus Disabilities Support Counselor to request an accommodation needed due to a disability. The College's policy on accommodations for persons with disabilities can be found in the College's Guide to Requesting Academic Accommodations and/or Auxiliary Aids Students may also access the Guide and contact information for Disabilities Support Counselors through the Student Resources web page under Disabilities Support Services, or visit the campus Advising Center.