Calculations for Molecular Biology and Biotechnology: A Guide to Mathematics in the Laboratory

By: Frank H StephensonContributor(s): STEPHENSON (Frank H)Material type: TextTextLanguage: English Publisher: Amsterdam Elsevier 2014Edition: 2Description: xiii,458p. PB 24x18cmISBN: 9789351072294Subject(s): Scientifc Notation | Cell Growth | Nucleic Acid Quantification | CentrifugationDDC classification: 574.88 Summary: Calculations for Molecular Biology and Biotechnology: A Guide to Mathematics in the Laboratory, Second Edition, provides an introduction to the myriad of laboratory calculations used in molecular biology and biotechnology. The book begins by discussing the use of scientific notation and metric prefixes, which require the use of exponents and an understanding of significant digits. It explains the mathematics involved in making solutions; the characteristics of cell growth; the multiplicity of infection; and the quantification of nucleic acids. It includes chapters that deal with the mathematics involved in the use of radioisotopes in nucleic acid research; the synthesis of oligonucleotides; the polymerase chain reaction (PCR) method; and the development of recombinant DNA technology. Protein quantification and the assessment of protein activity are also discussed, along with the centrifugation method and applications of PCR in forensics and paternity testing.
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Item type Current location Collection Call number Status Date due Barcode Item holds
Book Book St Aloysius College (Autonomous)
Bio Technology 574.88 STEC (Browse shelf) Available 077074
Total holds: 0

Calculations for Molecular Biology and Biotechnology: A Guide to Mathematics in the Laboratory, Second Edition, provides an introduction to the myriad of laboratory calculations used in molecular biology and biotechnology. The book begins by discussing the use of scientific notation and metric prefixes, which require the use of exponents and an understanding of significant digits. It explains the mathematics involved in making solutions; the characteristics of cell growth; the multiplicity of infection; and the quantification of nucleic acids. It includes chapters that deal with the mathematics involved in the use of radioisotopes in nucleic acid research; the synthesis of oligonucleotides; the polymerase chain reaction (PCR) method; and the development of recombinant DNA technology. Protein quantification and the assessment of protein activity are also discussed, along with the centrifugation method and applications of PCR in forensics and paternity testing.

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