53 courses with the subject CHEM, each shown exactly as we captured it from the college's catalog, with every element we hold. Where the wording looks broken, that is our reading of the catalog, not the college's text.
CHEM 100(E) Elements of Chemistry3
An elementary study of the field of chemistry for the non-science major; concepts of structure, states of matter, modern developments, implications of the field for modern society. Three hours lecture.
A study of some current problems of a scientific and technological nature from the point of view of the non-science major. Scientific background will be provided to lead to greater understanding and possible solutions. Possible topic: energy, genetic engineering, narcotics, pesticides, etc. Three hours lecture.
(CHEM 110 is a prerequisite for CHEM 111) A study of the fundamental concepts of general chemistry, organic chemistry, and biochemistry. Three hours lecture each semester.
(Lecture is required as pre- or co-requisite; CHEM 110L is prerequisite for CHEM 111L) Experiments dealing with principles of general, organic and biological chemistry are performed. Two hours laboratory each semester.
A study of the laws, theories and principles of general chemistry together with qualitative and quantitative analysis. Three hours lecture each semester.
( CHEM 112 is a prerequisite for CHEM 113 ) A study of the laws, theories and principles of general chemistry together with qualitative and quantitative analysis. Three hours lecture each semester.
CHEM 112LGeneral and Analytical Chemistry Laboratory3
(1.5, 1.5 cr.) (Lecture is required as pre- or co-requisite; CHEM 112L is prerequisite for CHEM 113L) Experiments involve semi-micro techniques for qualitative and quantitative analysis (gravimetric and volumetric analysis). Three hours laboratory each semester.
( CHEM 112 is a prerequisite for CHEM 113) A study of the laws, theories and principles of general chemistry together with qualitative and quantitative analysis. Three hours lecture each semester.
A special laboratory course for those students who are advanced in chemistry. Semi-micro techniques of gravimetric and volumetric quantitative analysis. Admission will be on the basis of a placement exam and the professor’s permission.
Earth system sciences and global environmental change, examining the records of past changes in climate, land-mass distribution, and atmospheric and oceanic composition, evaluating fossils, tree ring data, and geological indicators.
(Lecture is required as pre- or co-requisite; CHEM 113L or CHEM 114L is a prerequisite for CHEM 232L; CHEM 232L is prerequisite for CHEM 233L ) Investigation of the chemical preparations and syntheses of major organic functional groups. Three hours laboratory each semester.
(Lecture is required as pre- or co-requisite; CHEM 232L is prerequisite for CHEM 233L) Investigation of the chemical preparations and syntheses of major organic functional groups. Three hours laboratory each semester.
CHEM 113 ) Descriptive chemistry of main group and selected transition elements and their compounds correlated with the periodic table, physical properties, atomic and molecular structure.
CHEM 320Industrial Chemistry3
A review of chemical operations and unit or batch processes common to industry. Econometric analysis involving supply-demand, productivity, commodity prices and costing is an important area covered, as are measures of productivity and patent activity. Three hours lecture.
CHEM 232 - CHEM 233 ) A continuation of CHEM 232 and CHEM 233 , emphasizing the study of the major types of organic mechanisms. Two hours lecture.
CHEM 330LOrganic Chemistry III1.5-3
(Lecture is required as pre- or co-requisite; CHEM 233L is a prerequisite) Experiments involve advanced techniques in synthesis and characterization of organic compounds. Six hours laboratory for Chemistry majors and three hours laboratory for Biochemistry majors.
CHEM 232 - CHEM 233 ) A study of chemicals in the environment including their origin, transport, reactions, and toxicity in soil, water, air and living systems.
CHEM 232 - CHEM 233 , BIOL 141 - BIOL 142 ) This course will encompass several realms of environmental toxicology, including general toxicological theory, effects of contaminants on various biological systems, and discussion of environmental toxicological issues (i.e., specific case studies as well as the types of analyses used in these types of studies).
CHEM 232 - CHEM 233 ) Consideration of natural cycles (carbon, sulfur, oxygen, water, etc.) that govern the chemistry of our planet. The origins of the elements, paleohistory, and composition of the planet. Effects of man’s activities with attention to their effects on the state of the oceans and the atmosphere.
CHEM 233 ) An introduction to the study of biochemistry. A study of the chemical nature of lipids, carbohydrates, proteins, nucleic acids and enzymes, including relationships among vitamins, hormones, and inorganic compounds. Three hours lecture. Successful completion of CHEM 350 precludes credit for CHEM 450 .
CHEM 350 ) An introduction to the study of the metabolism of carbohydrates, lipids, amino acids, and proteins, including energy transformations and the role of enzyme systems in the above processes. Successful completion of CHEM 351 precludes credit for CHEM 451 . Three hours lecture.
CHEM 232 - CHEM 233 and CHEM 232L - CHEM 233L ) An introduction to the application of physical-chemical principles to biological problems. This involves aqueous solutions, colloidal chemistry, thermodynamics, electro-chemistry, chemical kinetics and nuclear chemistry. Three hours lecture.
CHEM 360LBiophysical Chemistry Laboratory1.5
(Lecture is required as pre- or co requisite; CHEM 360L is prerequisite for CHEM 361L ) Experiments involve applications of physical-chemical techniques to biological problems. Three hours laboratory each semester.
(Prerequisite CHEM 360 ) A continuation of Biophysical Chemistry I involving a study of atomic and molecular structure, spectroscopy, photo-chemistry, and surface chemistry with applications to biological and biochemical phenomena. Three hours lecture.
(Lecture is required as pre- or co requisite; CHEM 360L is prerequisite for CHEM 361L) Experiments involve applications of physical-chemical techniques to biological problems. Three hours laboratory each semester.
CHEM 113 , MATH 222 ) A study of the physical-chemical properties of matter and the dynamics of chemical reactions. Three hours lecture each semester.
CHEM 362L(EPW) Physical Chemistry Laboratory1.5
Lecture is pre- or co-requisite; CHEM 362L is prerequisite for CHEM 363L ) Experiments demonstrate physical-chemical properties of matter and reactions. Three hours laboratory each semester.
CHEM 113 , MATH 222 ) A study of the physical-chemical properties of matter and the dynamics of chemical reactions. Three hours lecture each semester.
CHEM 363L(EPW) Physical Chemistry Laboratory1.5
(Lecture is pre- or co-requisite; CHEM 362L is prerequisite for CHEM 363L) Experiments demonstrate physical-chemical properties of matter and reactions. Three hours laboratory each semester.
CHEM 113 ) Instrumental methods of analysis consisting of theory and application of such instrumental techniques as spectroscopy, polarography, and instrumental titrimetry. Two hours lecture.
CHEM 370LInstrumental Analysis Laboratory3
(Lecture is required as pre- or co-requisite) Experiments involve application of modern chemical instrumentation and techniques to quantitative analysis. Six hours laboratory.
Study of selected topics in chemistry and biochemistry, depending on student and faculty interest and the current state of the science. It may include topics from inorganic chemistry, organic chemistry, physical chemistry, analytical chemistry, polymer chemistry and interdisciplinary topics.
A study of the published source material of chemical science and industry. The course includes practical instruction in library technique and in the written reporting of results. One hour lecture.
CHEM 362 - CHEM 363 or CHEM 360 - CHEM 361 ) Theoretical concepts and their application to the reactions and structure of inorganic compounds. Coordination chemistry and related topics, physical methods and reaction mechanisms. Three hours lecture.
(Lecture is required as pre- or co-requisite) Laboratory methods involving synthesis and characterization of inorganic compounds are developed. Three hours laboratory.
CHEM 233 ) Structure-function relationships with emphasis on the organic and biophysical characteristics of proteins, lipids and carbohydrates are described. Enzyme mechanisms and kinetics and the thermodynamic basis of intermediary metabolism are major themes. Three hours lecture. CHEM 450L is required of Biochemistry majors. Successful completion of CHEM 450 precludes credit for CHEM 350 .
CHEM 450L(EPW) Biochemistry Laboratory1.5
(Lecture is required as pre- or co-requisite) Experiments involve techniques used in characterization of biopolymers and study of enzyme kinetics.
CHEM 450 ) The discussion of intermediary metabolism is continued from CHEM 450 with emphasis on lipid protein and nucleic acid metabolism. Chemical aspects of molecular biology, including DNA replication, gene regulation and protein biosynthesis are included. Three hours lecture. Successful completion of CHEM 451 precludes credit for CHEM 351 .
CHEM 452Enzymology3
A course in the chemical nature of enzymes with relation to mechanism of enzyme action and kinetics, purification and identification of enzymes and isoenzymes, biochemical and physiological aspects of enzymes in living systems. Three hours lecture.
CHEM 363 ) Quantum mechanics and quantum chemistry, including classical problems, perturbational theory, variational theory and specific applications of molecular orbital theory to organic molecules and spectroscopic applications.
CHEM 464Polymer Chemistry3
(Co-requisites: CHEM 330, CHEM 361 or CHEM 363) Survey of preparative methods for polymers; characterization of polymers using physico-chemical methods, spectroscopy, and thermal analysis; structure-property relationships; and applications of polymers. Three hours lecture.
CHEM 330 , CHEM 361 or CHEM 363 ) Survey of preparative methods for polymers; characterization of polymers using physico-chemical methods, spectroscopy, and thermal analysis; structure-property relationships; and applications of polymers. Three hours lecture.
CHEM 464LPolymer Chemistry Laboratory1.5
(Pre- or co-requisites: CHEM 330, CHEM 464) Laboratory experiments investigate synthesis and characterization methods for polymers, structure- property effects, and thermal analysis of polymers. Three hours laboratory.
CHEM 360 or CHEM 362 ) Acquisition of forensic evidence through use of analytical techniques. Statistical and multivariate analysis of data, and presentation of forensic evidence in a legal environment. Two hours lecture.
CHEM 470 ) Acquisition of forensic evidence through use of analytical techniques. Statistical and multivariate analysis of data, and presentation of forensic evidence in a legal environment. Four hours laboratory.
CHEM 450 - CHEM 451 or permission of the instructor) The capstone course for students majoring in Biochemistry-Preprofessional Track. Fundamentals of biochemistry are used to explore various themes in applied biochemistry. Students are responsible for researching advanced topics and presenting lecture/discussions or case studies to the class.
CHEM 233 , CHEM 360 or CHEM 362 , CHEM 390 ) Individual study and research in connection with a specific chemistry or biochemistry problem. Results must be written as a thesis and defended before the department. 1.5 credits each semester.
CHEM 233 , CHEM 360 or CHEM 362 , CHEM 390 ) Individual study and research in connection with a specific chemistry or biochemistry problem. Results must be written as a thesis and defended before the department. 1.5 credits each semester.
Source: University of Scranton's catalog, linked per course · table learning_unit · CourseShelf publish 59