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Funicello, Maria; Cerminara, Iole; Chiummiento, Lucia; Lupattelli, Paolo; Felluga, Fulvia; Berti, Federico – Journal of Chemical Education, 2021
Multicomponent reactions (MCRs) represent very interesting tools to reach eco-friendly and sustainable transformations in organic chemistry. In particular, the Biginelli reaction furnishes a very easy approach to the synthesis of a library of biological active compounds in an academic course. Here we describe the realization of several experiments…
Descriptors: Organic Chemistry, Experiments, Advanced Courses, Introductory Courses
Works, Carmen; Fukuto, Jon; Lares, Monica; Negru, Bogdan; Lillig, Jennifer – Journal of Chemical Education, 2020
The Chemistry Department at Sonoma State University teaches two upper division capstone laboratory courses as culminating experiences for our BS chemistry and biochemistry majors. The courses share complementary learning experiences and have student learning objectives (SLOs) of literature competency, experimental design, development of…
Descriptors: Chemistry, Capstone Experiences, Pandemics, COVID-19
Donnelly, Julie; Winkelmann, Kurt – Journal of Chemical Education, 2021
Students' negative perceptions of physical chemistry courses are well-known and are likely impacting their learning and performance in this upper-division course for majors. The syllabus can be the first interaction students have with a course and instructor and can be central to the expectations student set for the learning experience. While…
Descriptors: Student Centered Learning, College Students, Student Attitudes, Majors (Students)
Andrea M. Munro – Journal of Chemical Education, 2023
This article describes a laboratory course designed for nonmajors with a focus on food chemistry. The course can be delivered in a traditional format or in a fully remote, asynchronous format. The course is designed for students to develop an understanding of how chemists view the world and how chemists generate knowledge. Food chemistry was…
Descriptors: Food, Chemistry, College Science, Hands on Science
Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
Boesdorfer, Sarah B.; Baldwin, Emilee; Lieberum, Kyle A. – Journal of Chemical Education, 2018
Many students associate grades with the completion of course work rather than learning the course content. While research has heavily focused on teaching strategies and instructional tools to improve students' learning in general chemistry, less focus has been given to assessments as a learning tool to improve students learning. Standards-based…
Descriptors: Grading, Standards, Science Instruction, Nonmajors
Malinak, Steven M.; Bayline, Jennifer Logan; Brletic, Patricia A.; Harris, Mark F.; Iuliucci, Robbie J.; Leonard, Michael S.; Matsuno, Nobunaka; Pallack, Linda A.; Stringfield, Thomas W.; Sunderland, Deborah Polvani – Journal of Chemical Education, 2014
The chemistry department at Washington & Jefferson College implemented an "organic first" curriculum in the fall semester of 2005. Assessment data suggest that the net impact of this change for the department and associated constituencies has been positive: (i) Student outcomes have generally not been impacted by the curricular…
Descriptors: Organic Chemistry, Curriculum Implementation, Educational Change, Change Strategies
Marine, Susan Sonchik – Journal of Chemical Education, 2013
Guidelines for planning a study abroad course in chemistry start with defining the course objectives and outcomes. These, in turn, guide the choice of course content and format, location, length of travel, activities, and assessment. Budgetary issues include transportation, lodging, admission fees, activities, docents and guides (including audio…
Descriptors: Study Abroad, Science Instruction, Chemistry, Course Objectives

Journal of Chemical Education, 1972
Descriptors: Chemical Analysis, Chemistry, College Science, Course Objectives

Bergendahl, Christina; Tibell, Lena – Journal of Chemical Education, 2005
An investigation on whether a course designed strategically so that assessment methods are aligned with course objectives promotes the students' capacity for higher-order cognitive thinking is presented. Students' view of their own learning process in this course is examined.
Descriptors: Course Objectives, Curriculum Development, Science Curriculum, Evaluation Methods

Fitzgerald, John J. – Journal of Chemical Education, 1982
Describes the rationale for and implementation, content, objectives, and format of an undergraduate toxicology course. Includes criteria required to offer such a course. (SK)
Descriptors: Chemistry, College Science, Course Descriptions, Course Objectives

Bland, Jeffrey S.; Medcalf, Darrell G. – Journal of Chemical Education, 1974
Describes a course designed to strengthen a student's background in organic chemistry, demonstrate the interfacing of chemistry and biology, expose undergraduates to graduate research, provide familiarity with instrumentation, and provide a novel field experience. (Author/GS)
Descriptors: Biology, Chemistry, College Science, Course Descriptions

Meckstroth, Wilma K. – Journal of Chemical Education, 1974
Descriptors: Chemistry, College Science, Course Content, Course Descriptions

Klatt, Leon N.; Sheafer, James C. – Journal of Chemical Education, 1974
Discusses the general design and operation of a quantitative analysis laboratory which is relevant to the student's career objectives and provides reliable and objective criteria for judging student performance. Included are a list of core experiments and a description of student responses. (CC)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions

Verbit, Lawrence; Madan, Stanley K. – Journal of Chemical Education, 1973
Describes a one-semester course which consists of undergraduate-oriented talks by faculty members and industrial scientists, reading assignments concerning human elements, and an introduction to chemical literature. Indicates that the course has the flexibility to change as other areas of need are identified. (CC)
Descriptors: Chemistry, College Science, Course Objectives, Curriculum Design
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