Catalog Search Results
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Investigate some of the key methods scientists employ to communicate the right structural information about molecular compounds, including their identity, the ratio of elements that comprise them, and their connectivity. Explore Fischer projections, Newman projections, and stereoimages - all of which help us overcome the challenges of conveying the three-dimensional positions of atoms.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Nitroglycerine, dynamite, TNT. What do these explosives have in common? They all contain highly reactive compounds that combine nitrogen and oxygen in organics. Look closely at these and other materials in this in-depth lecture on functional groups containing nitrogen and oxygen that covers everything from nitrate esters to trinitrotoluene to amino acids.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Carboxylic acids and esters are two oxygen-containing compounds that possess multiple oxygen atoms with different hybridization states. First, look at two ways to prepare carboxylic acids. Then, examine how Fischer esterification produces esters. Finally, learn about retrosynthetic analysis, a tool that helps organic chemists address synthetic challenges.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Turn from synthetic polymers to biopolymers - those that occur naturally. Focus on polysaccharides, nucleic acids, and proteins (including a special class of proteins, enzymes). Discover that living systems exercise a level of control over the synthesis of these polymers that no chemist could ever hope to achieve in the lab.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Apply your understanding of electrochemistry to one of the most influential inventions of all time: the electrical storage battery. Trace the evolution of batteries from ancient times to Alessandro Volta's pioneering voltaic cell, developed in 1800, to today's alkaline, lithium, and other innovative battery technologies.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Survey events at the molecular level when substances convert between solid, liquid, and gaseous phases. Pay particular attention to the role of temperature and pressure on these transitions. Become familiar with a powerful tool of prediction called the phase diagram.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Transition to the other side of the visible spectrum and discover how infrared spectroscopy provides chemists with different information about structures. In doing so, you'll come to see molecular structures in a new light: not as rigid constructs but as dynamic, vibrating frameworks with bonds that can stretch and bend.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Probe the connections between biology and metals with this lecture on some compounds and reactions in the field of organometallic chemistry. As you'll quickly learn, organometallics have a range of practical applications; one example you'll encounter is Dotarem, an organometallic compound used to help detect tumors in cancer patients.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
In this final lecture on spectroscopic techniques, discover the importance of modern NMR spectrometers, which use superconducting magnets and radio receivers to collect spectra with more speed and precision (and in different ways) than other techniques. Also, get an intriguing lesson in the human element - and limitations - involved in spectroscopy.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Revisit the nuclear energy binding curve, noting that most elements lighter than iron can release energy by fusing together. This is an even more energetic reaction than fission, and it is what powers the sun. Follow the development of fusion weapons and the so-far-unrealized dream of fusion reactors.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Take a short tour of geochemistry, starting at Earth's core and working your way to the surface. Discover why our planet has a magnetic field, how radioactive atoms move continents and build mountain ranges, and why digging a hole to extract resources can produce a chemical catastrophe.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Visit the radio portion of the electromagnetic spectrum for insights into how tiny, atom-sized magnets in organic molecules interact with radio waves (and each other) to produce a complex set of magnetic resonances - which are one of the gold-standard identification tools used in modern organic chemistry. Topics include Zeeman splitting, magnetic spin-spin coupling, and multiplets.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
How can pi bonds change the chemistry of hydrocarbons? How did one of the greatest rivalries in chemistry lead to an understanding of trends in stability among regio- and stereoisomers with the same molecular formula? Why do terminal alkynes have such unusual acidity? Professor Davis has the answers to these and other questions.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Make sense of a crucial concept in organic chemistry: the handedness of molecules, or, as chemists call it, "chirality." Topics include the definition of chiral tetrahedral centers; the creation of stereoisomer sets via inversion of handedness; and intriguing examples of stereoisomers (including enantiomers and double-bonded stereoisomers) and their unique chiral centers.
15) Chemistry series
Publisher
Kanopy Streaming
Pub. Date
2014.
Language
English
Description
Explore the world of chemistry through these informative programs, which provide a valuable supplement to middle-school, high-school or college science curriculums. Films in the series include: Acids, Bases and salts (2nd Ed. ) Chemical bonding and Atomic structure (2nd Ed. ) Elements, Compounds and mixtures (2nd Ed. ) The periodic table of periodicity reaction rates and equilibrium solutions: ionic and molecular (2nd Ed. ).
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
In the first of five lectures on chemical bonds, start to unravel the mystery of what joins atoms into molecules. Investigate how molecular bonds reflect the octet rule encountered in Lecture 7 and fall into four classes: ionic, covalent, polar covalent, and metallic bonds.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Get a taste of one of the favorite challenges for organic chemists - turning one organic compound into another. Focus on three types of reactions from the many used in organic synthesis: substitution, elimination, and addition. Close by considering the vital role of water in organic chemistry.
Publisher
The Great Courses
Pub. Date
2016.
Language
English
Description
Complete your study of acids and bases by searching out the fundamental causes of their disparate behavior. For example, why is there a difference in the ease with which various acids ionize? Your search draws on concepts from previous lectures, including electronegativity, molecular geometry, hybridization, and covalent bonding.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Turn now to nitrogen, which has played an important role in the chemistry of life since it began. Learn the chemistry of primary, secondary, and tertiary amines, the simplest of nitrogen-containing compounds. Also, consider imines (containing a pi-bond to nitrogen) and nitriles (where two pi bonds are present), including the simplest and most well-known nitrile: hydrogen cyanide.
Publisher
The Great Courses
Pub. Date
2014.
Language
English
Description
Discover how solubility makes for an extremely effective tool for isolating non-volatile organic compounds through liquid-liquid and solid-liquid extractions (part of a larger phenomenon known as partitioning). As you delve into these processes, you'll learn one way to better understand extractions: making a perfect cup of tea.
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