Searching the World's top universities for courses with:

source
Johns Hopkins University (X)
level
Lower Level Undergraduate (17)
Independent Academic Work (7)
Upper Level Undergraduate (6)
department
Chemistry (X)
true *,score on 1 0 department:"Chemistry" source:"Johns Hopkins University" AND 2.2 25
Total results: 30

Johns Hopkins University - Introductory Chemistry II

Continuation of 030.101 emphasizing chemical kinetics, chemical bonding. Topics: energy levels and wavefunctions for particle-in-a-box and hydrogen atom and approximate wavefunctions for molecules including introduction to hybrid orbitals. Note: Appropriate adjusting caps should be used – to ensure both sections are approximately the same size
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Introductory Chemistry II

Continuation of 030.101 emphasizing chemical kinetics, chemical bonding. Topics: energy levels and wavefunctions for particle-in-a-box and hydrogen atom and approximate wavefunctions for molecules including introduction to hybrid orbitals. Note: Appropriate adjusting caps should be used – to ensure both sections are approximately the same size
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Chemistry Lab

Fundamental methods of chemistry with related calculation. Prereq: 030.105 or either 030.102 (Co- or Prereq.) or 510.101 (Prereq.) - Students may attend either the Thursday 1:30-2:20 lecture or Friday 1:30-2:20 lecture.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem II

Prereq: 030.205 Continuation of 030.205 Appropriate adjusting caps should be used – to ensure both sections are approximately the same size. Switching sections requires instructor's approval.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem II

Prereq: 030.205 Continuation of 030.205 Appropriate adjusting caps should be used – to ensure both sections are approximately the same size. Switching sections requires instructor's approval.
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem Lab

Techniques include methods of purification, isolation, synthesis, and analysis. Prereq: 030.101-102, 030.105 - Instructor's Permission Required for Freshmen
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem Lab

Techniques include methods of purification, isolation, synthesis, and analysis. Prereq: 030.101-102, 030.105 - Instructor's Permission Required for Freshmen
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem Lab

Techniques include methods of purification, isolation, synthesis, and analysis. Prereq: 030.101-102, 030.105 - Instructor's Permission Required for Freshmen
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem Lab

Techniques include methods of purification, isolation, synthesis, and analysis. Prereq: 030.101-102, 030.105 - Instructor's Permission Required for Freshmen
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intro Organic Chem Lab

Techniques include methods of purification, isolation, synthesis, and analysis. Prereq: 030.101-102, 030.105 - Instructor's Permission Required for Freshmen
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Intmd Organic Chem Lab

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Physical Chemistry II

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Phys Chem Instr Lab

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Phys Chem Instr Lab

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Elementary Computational Chemistry

This course introduces the student to the use of computers to address questions in chemistry. Basic notions of self consistent field and density functional theory will be introduced. Molecular wave functions (orbitals) for molecules of increasing complexity, starting from simple diatomic molecules and increasing to molecules of biological relevance, will be determined. Visualization tools will be used to understand the nature of chemical bonding and molecular interactions. Ligand field interactions will be quantified. Chemical reactions, for example SN2 reactions, will be described using rigorously computed reaction paths. Equilibrium and transition state structures will be determined and analyzed. Molecular vibrations will be computed, analyzed and visualized. Infrared spectra will be simulated. The effects of solvents will be considered. NMR chemical shifts will be studied. Prerequisite: 030.205-206
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Organometallic Chemistry

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Chem Inorganic Compounds

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Ind Rsrch Phys Chem

Not Available
Score: 8.386122 Details | Listing | Web page

Johns Hopkins University - Ind Rsrch Phys Chem

Not Available
Score: 8.386122 Details | Listing | Web page

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