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C++: An Active Learning Approach

An Active Learning Approach

C++: An Active Learning Approach provides a hands-on approach to the C++ language through active learning exercises and numerous programming projects. Ideal for the introductory programming course, this text includes the latest C++ upgrades without losing site of the C underpinnings still required for all computing fields. With over 30 years combined teaching experience the authors understand potential pitfalls students face and aim to keep the language simple, straightforward, and conversational. The topics are covered in-depth yet as succinctly as possible. The text provides challenging exercises designed to teach students how to effectively debug a computer program and Team Programming exercises urge students to read existing code, adhere to code specifications, and write from existing design documents. Examples are provided electronically allowing to students to easily run code found in the text.

These tools, which are integrated into the IDE, will not find the errors for you but
will allow you to analyze the situation to determine whether the results of the
code being examined meet the expectations. Remember: Debugging tools only
help you find logic and run-time errors in running applications. All syntax and
linker errors must be corrected before using debugging tools. Most modern
developer environments have some form of these debugging tools. It is crucial for
you to learn the ...

The Amide Linkage

Structural Significance in Chemistry, Biochemistry, and Materials Science

The amide linkage is one of the most fundamental and widespread chemical bonds in nature, underlying the properties of a vast array of organic molecules, polymers, and materials, including peptides and proteins. Arthur Greenberg, Curt Breneman, and Joel Liebman’s peerless text provides comprehensive coverage of the experimental, structural, and computational findings that shed light on the chemical and physical properties of the amide linkage, as well as its emerging applications in materials and biotechnology. Chapters in The Amide Linkage highlight how this chemical bond factors in the design of enzyme inhibitors, cyclic peptides, antibacterial agents, and emerging nanotechnology applications. This one-of-a-kind study also: Discusses selected aspects of chemical reactions, structure, bonding, and energetics of the amide bond, including amide rotational barriers, stereochemistry, complexation, spectroscopy, and thermochemistry Presents specific applications to supramolecular and stereospecific synthesis Discusses ke y aspects of peptide and protein chemistry–such as molecular recognition, conformation, and folding–in terms of the amide linkage Includes chapters contributed by numerous eminent chemists and biochemists Organic, medicinal, polymer, and physical chemists, as well as biochemists and materials scientists, will find The Amide Linkage to be an invaluable addition to their professional libraries.

48. Stewart, J. J. P. Quantum Chemistry Program Exchange Bull. l993, l3. 40-43.
MOPAC, QCPE Program 455, Indiana University. Bloomington. IN. 49. Hehre,
W. J.; Radom, L.; Schleyer, P. v. R.; Pople. J. A. Ah Initio Molecular Orhital Theory;
 ...