Syllabus for Chemistry 12A Spring Semester 2015

Similar documents
Syllabus for Chemistry 12B Spring Semester 2015

CHEM 25: Organic Chemistry I (2009FA-CHEM )

CHEM 333 Spring 2016 Organic Chemistry I California State University Northridge

Chemistry 7A Fall 2009

Hunan University. CHEM32: Organic Chemistry

CHEM ORGANIC CHEMISTRY

Chemistry 8 Principles of Organic Chemistry Spring Semester, 2013

Georgia Gwinnett College CHEM 2212 Organic Chemistry II Course Syllabus Summer MTWR, 9-11am, A1640 (class); MTW, pm, A1290 (lab)

Prerequisites: CHEM 1312 and CHEM 1112, or CHEM 1412 General Chemistry II (Lecture and Laboratory)

CHEMISTRY 3A INTRODUCTION TO CHEMISTRY SPRING

WEST LOS ANGELES COLLEGE Introduction to General Chemistry CHEMISTRY 60 SYLLABUS; 5 units

CHE 171: Mechanistic Organic Chemistry I

PELLISSIPPI STATE TECHNICAL COMMUNITY COLLEGE MASTER SYLLABUS ORGANIC CHEMISTRY I CHEM Class Hours: 3.0 Credit Hours: 4.0

CHEM 102 Fall 2012 GENERAL CHEMISTRY

Chemistry 330 Fall 2015 Organic Chemistry I

COWLEY COLLEGE & Area Vocational Technical School

Prerequisite: one year of high school chemistry and MATH 1314

WEST LOS ANGELES COLLEGE. CHEMISTRY 60 SYLLABUS Spring 2014

A SURVEY OF ORGANIC CHEMISTRY CHEMISTRY 1315 TuTr 9:35-10:55 am, Boggs B6

COURSE SYLLABUS AND INSTRUCTOR PLAN GENERAL INORGANIC CHEMISTRY I CHEM Dr. Vanessa Castleberry

Chemistry 12B Organic Chemistry. Spring 2016

Chemistry 20, Section 1204 Fundamentals of Chemistry, 5 Units El Camino College Spring 2008

Chemistry 110 General Chemistry, Course Lecture MWF 8:30 am 9:50 am Room NSM C221 Laboratory M or W 1:00 pm 3:50 pm Room NSM B340

SOUTHERN CONNECTCUT STATE UNIVERSITY

CHE 251 Contemporary Organic Chemistry

Office Hours: Mon., Wed before and after class or by appointment.

CH 331 Syllabus Fall 2012

CHE 262 (03): Organic Chemistry II Spring 2018 Syllabus MWF 12:50-1:50 in Phillips Lecture Hall

Southwestern College CHEM /62 Preparation for General Chemistry Spring Semester 2012

Chemistry 2281G: Inorganic Chemistry of the Main Group Elements

4. Prerequisites Grade of C or better in Chemistry 201 & Chem. 203 or consent of the department chairperson

Angelina College Science and Mathematics Chemistry 1105 Introductory Chemistry Internet General Syllabus

Bergen Community College Division of Mathematics, Science and Technology Department of Physical Sciences

Los Angeles Mission College Chemistry 65 Syllabus Spring Semester 2012

University of Wisconsin-Eau Claire CHEM 103: General Chemistry- Syllabus Spring 2014

CHEM1107: SURVEY OF ORGANIC AND BIOCHEMISTRY LABORATORY COURSE INFORMATION

Topics in General Chemistry Chemistry 103 Fall 2017

Physics 343: Modern Physics Autumn 2015

DEPARTMENT: Chemistry

HOSTOS COMMUNITY COLLEGE Natural Sciences Department Physical Sciences Unit. ENV 110/34311 Course Title: Environmental Science I Session:

Chemistry 21 Organic Chemistry I

CHEMISTRY 100 : CHEMISTRY and MAN

SYLLABUS. Departmental Syllabus. Organic Chemistry I CHEM Departmental Syllabus. Departmental Syllabus. Departmental Syllabus

DEPARTMENT: Chemistry

CHEMISTRY 446 Organometallic Chemistry SPRING 2013 SYLLABUS

CHEM 30A: Introductory General Chemistry Fall 2017, Laney College. Welcome to Chem 30A!

Syllabus for CHEM 241 Organic Chemistry I, 3CR, Great Basin College

Southwestern Michigan College Dowagiac, Michigan Division of Academic Studies Course Syllabus. Spring/Summer Semester 2005

ORGANIC CHEMISTRY 1 CHEM A FALL 2004 SYLLABUS

CALIFORNIA STATE UNIVERSITY, East Bay Department of Chemistry. Chemistry 1615 Survey of Basic Chemistry for Healthier Living Fall Quarter, 2014

University of West Alabama College of Natural Sciences and Mathematics Department of Physical Sciences Livingston, AL 35470

COURSE SYLLABUS Math/Science Department PHY 104 Physical Science Spring 2016

General Chemistry I (CHE 1401)

CHEMISTRY INTRODUCTORY CHEMISTRY

LAGUARDIA COMMUNITY COLLEGE CITY UNIVERSITY OF NEW YORK NATURAL SCIENCES DEPARTMENT. SCC 110: Foundations of Chemistry Fall I 2017

Course Syllabus. Department: Science & Technology. Date: April I. Course Prefix and Number: CHM 211. Course Name: Organic Chemistry I

MISSISSIPPI VALLEY STATE UNIVERSITY Department of Natural Science Chemistry Program Course Number: CH 320 Course Name: Introduction to Biochemistry

PELLISSIPPI STATE COMMUNITY COLLEGE MASTER SYLLABUS BASIC ORGANIC & BIOCHEMISTRY CHEM 1020

CHEMISTRY 2H Honors General Chemistry I Fall 2013 Course Syllabus

General Chemistry 201 Section ABC Harry S. Truman College Spring Semester 2014

CELL PHONES ALLOWED AS CALCULATORS

KOMAR UNIVERSITY OF SCIENCE AND TECHNOLOGY (KUST)

Chemistry 21 Organic Chemistry I

STATISTICAL AND THERMAL PHYSICS

The lecture schedule is only a rough guide and will be likely changed as needed.

Physics 141 Course Information

Math 060/070 PAL: Elementary and Intermediate Algebra Spring 2016

PELLISSIPPI STATE COMMUNITY COLLEGE MASTER SYLLABUS CONCEPTS OF CHEMISTRY CHEM 1310

Textbooks, supplies and other Resources TITLE: CHEMISTRY: A MOLECULAR APPROACH EDITION:4 TH EDITION

PELLISSIPPI STATE COMMUNITY COLLEGE MASTER SYLLABUS GENERAL CHEMISTRY I CHEM 1110

General Chemistry I Chemistry 101B Fall 2002 Department of Chemistry Colgate University

Sul Ross State University Syllabus for Organic Chemistry II: CHEM 3408 (Spring 2017)

CHEM2077 HONORS ORGANIC CHEMISTRY SYLLABUS

CHEM 1413 Course Syllabus (CurricUNET) Course Syllabus

Organic Chemistry Syllabus

COURSE OUTLINE. The course description is

University of Alaska Fairbanks Chemistry 103: Basic General Chemistry Course Syllabus

Sul Ross State University Syllabus for General Chemistry I; CHEM 1311:02 (Spring 2017)

Chemistry 14C: Structure of Organic Molecules - Winter 2017 Version 56

ENVIRONMENT AND NATURAL RESOURCES 3700 Introduction to Spatial Information for Environment and Natural Resources. (2 Credit Hours) Semester Syllabus

AS 203 Principles of Astronomy 2 Introduction to Stellar and Galactic Astronomy Syllabus Spring 2012

Physics 141 Course Information

CHEMISTRY 413 Spring 2014

AS 101: The Solar System (Spring 2017) Course Syllabus

Chemistry 401: Modern Inorganic Chemistry (3 credits) Fall 2017

Chemistry 401 : Modern Inorganic Chemistry (3 credits) Fall 2014

Chemistry 534 Fall 2012 Advanced Organic Chemistry (Physical Organic: Structure and Mechanism)

University of Houston-Clear Lake PHYS Modern Physics (Summer 2015) Syllabus 3:00-5:50pm Bayou 3324

Chemistry 311 Chemistry Across the Periodic Table Spring 2017

CHEM 1100 General Chemistry I: Summer 2019

Fall 2017 CHE 275 Organic Chemistry I

LAGUARDIA COMMUNITY COLLEGE CITY UNIVERSITY OF NEW YORK NATURAL SCIENCES DEPARTMENT. SCC105: Introduction to Chemistry Fall I 2014

GEOL 443 SYLLABUS. Igneous and Metamorphic Petrology, Spring 2013 Tuesday & Thursday 8:00 a.m. 9:15 a.m., PLS Date Subject Reading

CHEMISTRY 104 Summer Course Information

CCHEMISTRY 366. Inorganic Chemistry with Emphasis on Bioinorganic, Medicinal & Materials Chemistry

Angelina College Science and Mathematics Chemistry 1305 Introductory Chemistry General Syllabus

General Chemistry I Office: Chem

PELLISSIPPI STATE TECHNICAL COMMUNITY COLLEGE MASTER SYLLABUS ORGANIC CHEMISTRY II CHEM 2020

CHE 325 ORGANIC CHEMISTRY II Spring 2017

Chemistry 103: Basic General Chemistry (4.0 Credits) Fall Semester Prerequisites: Placement or concurrent enrollment in DEVM F105 or higher

Transcription:

Syllabus for Chemistry 12A Spring Semester 2015 Taught by: Sam Gillette, Ph.D. email: sgillette@peralta.edu Phone: 510-981-5016 Office: BCC 541 Lab: BCC 514 Web Site: http://www.berkeleycitycollege.edu/wp/sgillette/ Units: 5 semester hours Class Meetings: Lecture: M, W 11:00-12:15 in BCC 518. Laboratory: M, W 1:30-4:20 PM in BCC 514. Office Hours: Texts/Materials: M-Th 10:00-11:00 AM BCC 541 or 514. Or by appointment. Organic Chemistry, by David Klein, 2nd edition. (Note that the Study Guide is not strictly essential, but many students find it helpful; consider getting together with someone else in the class to share a copy. A Small Scale Approach to Organic Laboratory Techniques, third or fouth Edition, by D. L. Pavia, G. M. Lampman, G. S. Kriz and R. G. Engel. Laboratory notebook: One with sequentially numbered pages. Carbon copy is not desired. Molecular models (not strictly necessary, but very helpful). Calculator not mandatory if you can do addition and multiplication without one. Safety goggles (available at the bookstore, or in any hardware store). Course Objectives: Students who satisfactorily complete this course will be prepared to: Recognize and name a variety of the most common organic compound types; apply fundamental concepts of chemical bonding, structure and reactivity to build a basic understanding of the major classes of organic compounds and reactions listed in the course content and schedule; solve organic synthetic, mechanistic and structural problems, and to interpret chemical behavior, based on fundamental principles and experimental data, including use of modern spectroscopic methods; carry out a variety of organic laboratory operations, applying appropriate judgment and safe work habits in the use and study of organic compounds; maintain a laboratory notebook, and write formal laboratory reports describing and interpreting the results obtained in the laboratory. Course Content and Format: Chemistry 12A is the first semester of a two-semester course in organic chemistry; successful completion of Chemistry 1B or its equivalent is a course prerequisite. In this first semester, we will develop fundamental concepts of structure, properties, and reactivity of the compounds of carbon, to build an overview of the scope and concepts of organic chemistry. This allows later applications both to understanding many common substances, and to the chemistry of living systems. Although there are millions of known organic compounds, most chemical behavior can be predicted and explained according to readily recognizable "functional groups" which determine the compound type. Fortunately many generalizations are possible. This semester we discuss hydrocarbons; functional groups; how to name organic compounds; three-dimensional structures of organic compounds; compounds containing carbon-carbon double and triple bonds; alcohols, ethers, and some carbonyl compounds; substitution, elimination, addition, and free-radical reactions; aromatic compounds; aromatic substitution reactions; and physical and spectroscopic properties of organic compounds. The lab exercises are intended to reinforce the lecture topics, and to provide direct experience with the properties, preparation, and safe handling of organic compounds. Since laboratory skills have their own logic, and because labs address a series of individual topics, the labs may not always follow the specific order of the lectures. See attached lecture schedule for details. The morning session will prodominantly be lecture material based on the chapters covered in the text. There will usually be a powerpoint presentation with quite a bit of work on the board. The afternoon session will be comprised of working in the lab, lab demos, some lab lecture, and workshops based on lecture and lab material. Ground rules: Silence your cell phones. If you must take a call, please step out of class. Please don t text in class. Questions and class participation are important and encouraged. Remember, the only dumb question is the unasked question.

Evaluation: Grades will be based on a combination of quizzes, exams, and laboratory scores: Quizzes: There will be quizzes throughout the semester and will account for 22% of your grade. Quizzes count approximately 20 points each. Midterm exams: There will be three regular midterm exams and one standardized ACS exam during the term; each of the midterm exams will count 10% of your final grade. The ACS exam will count 5% of your grade. Exams are tentatively scheduled for February 18, March 16, April 29, and May 13 (ACS). Laboratory reports and notebooks: Formal lab reports (see the separate handout regarding format) will be due at the beginning of lab the week after the lab is performed; notebooks will be collected approximately twice during the semester and will count toward your lab score total. Labs will count 23% of your grade. Final exam: The final will account 20% of your final score; it is tentatively set for Monday, May 13 from 1:30 4:20 PM, and will be comprehensive, covering topics from the entire semester. Grading is approximately according to the following percentage ranges (out of approximately 850 points): A = <90%; B = 80-89%; C = 70-79%; D = 60-69%; F = below 60%. The Lab and lecture components of this course are combined. You will not receive a passing grade without completion of both Lab and Lecture sections. Failure to complete the lab portion of the course will result in a failing grade see attendance guidelines below! Makeup exams or quizzes are possible only in cases of illness or other emergency absences, and then only if it is possible to take the makeup before the exam or quiz is returned or the exam appears on the website. Repetitious absence (the equivalent of two weeks of class/lab time) from lectures and/or labs, or repeated disregard of lab safety rules, will result in being dropped from the course. No labs may be dropped or made up. Pagers and cell phones must be turned off during lectures and during the introductory parts of lab periods (go discreetly into the hall for any later calls during lab; any such calls must be kept to an absolute minimum, and only in ways that do not compromise your lab work), to avoid distracting the rest of the class. Use of phones or messaging devices during an exam or a quiz will result in a zero on that exam or quiz. Since your undistracted attention is critical to your performance in this demanding course, and also is necessary for safe lab work, use of ipods and other personal music systems will not be permitted in lecture or lab. It is also expected that students will consistently adhere to the highest standards of integrity in this course as a condition of passing and of continuing enrollment (please refer to the BCC Student Code of Conduct, and the Academic Honesty Policy in the current BCC catalog). Course content: See attached lecture schedule. Laboratory Exercises: See attached lab schedule. Some additional comments: It is utterly essential that you keep up with the assigned work for this course. This means, in particular, that you will need to schedule your week so that you devote substantial study time (two hours or more) to organic chemistry on at least four or five days each week. College work is your job here at BCC, and requires your highest priority! Homework that may be assigned at times is intended to be representative of the course material, but is by no means sufficient to assure mastery. The plain fact is that those students who perform best in organic chemistry courses (as in all demanding courses) are those students who truly devote themselves to learning the subject, methodically trying each and every exercise while working through the text. The use of molecular models is strongly advised as an aid to visualizing structures. Learning organic chemistry is like learning a new language: the individual parts are not particularly difficult, but there is no substitute for time, effort, and motivation. Taking responsibility for your own performance in this course will be your most important step toward doing well in organic chemistry! DSPS Statement - Students who require special accommodations due to disabilities should submit documentation from DSPS regarding your prescribed accommodations for this course. If you need such documentation, please contact the Programs and Services for Students with Disabilities (DSPS) office. The DSPS office is available to facilitate the reasonable accommodations process and is located in Room 261. The DSPS staff can be reached by telephone at (510) 981-2812 or (510) 981-2813. The student is also welcome to contact the instructor, preferably in writing, to begin the accommodations process. (This should be done within the first two weeks of class.) Should a disabling condition arise during the course of the semester, please let the instructor know for appropriate planning, if any, for needed accommodations.

Student Learning Outcome (SLO): 1. Nomenclature - Apply naming rules (nomenclature) to name or draw the structures for organic molecules and, where appropriate, indicate stereochemistry. 2. Bonding - Describe the overall structure and properties of organic molecules using the principles of chemical bonding, atomic hybridization, and orbital theory. 3. Mechanisms - Apply thermodynamic and kinetic principles to characterize organic chemical reactions and mechanisms. 4. Spectroscopy - Use common spectroscopic techniques (NMR, IR, UV/Vis, MS) to determine the molecular structure of organic compounds and also to correlate with chemical reactivity. 5. Lab Safety - Operate in the laboratory using routine acceptable safe laboratory practices to handle chemicals, glassware, and common laboratory equipment. (Apply the precautionary principle when handling hazardous materials, especially those of unknown toxicity.) 6. Notebook - Record laboratory results and data correctly in a scientific notebook and report and interpret results using appropriate notational and descriptive content in standard scientific format. Attendance: Attendance in lecture and lab classes is essential for success in the class. Please make every effort to attend classes, lectures and workshops. Stay informed: Please check the course MOODLE site, http://eperalta.org/spring2015/regularly for important documents and course updates Disclaimer: Due to unforseen circumstances, the contents of this syllabus, lecture and lab schedule are subject to change. Any changes required will be announced in class and via email to the registered students in the class.

Chemistry 12A Tentative Lab Schedule Spring 2015 Week Dates Lab Exercise Reference 1 Jan 21* Safety/Introduction pg. 546-586; handout 2 Jan 26-28 Check in handout Computer Structure Drawing Assignment handout 3 Feb. 2-4 Fundamental lab techniques Expt. 1 A, C, D Expt. 2 (A, C) 4 Feb. 9-11 Fundamental lab techniques Expt. 3(A, B) Simple and fractional distillation Expt. 6 5 Feb. 18 * Exam 1 6 Feb. 23-25 Infrared spectroscopy Klein Ch 15 Oil of cloves Expt. 13; Tech. 18 and 25 7 March 2-4 Mass spectroscopy Klein Ch 15 Spectroscopy workshop handout 8 March 9-11 TLC analyses: analgesics Expt 10; Tech 20 Review -- 9 March 16-18 Exam 2 Piperine from pepper Handout 10 March 23-25 Caffeine from tea Expt 11B; Tech.18/25 11 April 6-8 NMR Spectroscopy Klein chapter 16 12 April 13-15 Spectroscopy workshop -- 13 April 20-22 ACS exam workshop -- 14 April 27-29 Review / Workshops / Catch up Handout Exam 3 15 May 4-6 ACS Exam Review and Workshop -- 16 May 11-13 Check-out / Exam 4 (ACS) -- Chapter references are to D. L. Pavia, G. M. Lampman, G. S. Kriz and R. G. Engel, "A Microscale Approach to Organic Laboratory Techniques", 5th Edition (Brooks/Cole, 2013) * MLK and Presidents days observed on Jan 19 and Feb 16: No Class The instructor reserves the right to make changes to this schedule with advanced notice. 12A Lab.doc

Chemistry 12A Tentative Lecture Schedule Spring 2015 Week Dates Lecture Topic Chapter 1 Jan 21 Intro /syllabus -- 2 Jan 26-28 Review: Electrons, Bonds, Structure 1, 2 3 Feb. 2-4 Molecular representations 2 4 Feb. 9-11 Acids and Bases, Pushing arrows 3 5 Feb. 18 * Review 1-3 Exam 1: 2/18 (Chapters 1-3) 6 Feb. 23-25 Alkanes, cycloalkanes 4 7 March 2-4 Stereoisomers 5 8 March 9-11 Thermodynamics / Kinetics 6 9 March 16-18 Alkyl halides 7 Exam 2: 3/16 (Chapters 4-6, 15) 10 March 23-25 Substitution reactions 7 11 April 6-8 Elimination reactions 8 12 April 13-15 Addition reactions / oxidations 9 Handout 13 April 20-22 Alkynes 9, 10 14 April 27-29 Review and catch up 7-10 Exam 3: 4/29 (Chapters 7-10, 16) 15 May 4-6 Radicals 11 16 May 11-13 Review and catch up -- ACS Exam: 5/13 The final exam is tentatively scheduled for 5/18 from 1:30-4:20 PM * MLK and Presidents Day observed 1/19 and 2/16: No Class This schedule is a guideline only. Some changes may become necessary as the course progresses 12A Lec