Q

  1. Randall M. German Ph.D., M.S., B.S. Chair Professor Director and
  2. Seong Jin Park Ph.D. Associate Research Professor

Published Online: 7 JAN 2008

DOI: 10.1002/9780470370087.ch17

Mathematical Relations in Particulate Materials Processing: Ceramics, Powder Metals, Cermets, Carbides, Hard Materials, and Minerals

Mathematical Relations in Particulate Materials Processing: Ceramics, Powder Metals, Cermets, Carbides, Hard Materials, and Minerals

How to Cite

German, R. M. and Park, S. J. (2008) Q, in Mathematical Relations in Particulate Materials Processing: Ceramics, Powder Metals, Cermets, Carbides, Hard Materials, and Minerals, John Wiley & Sons, Inc., Hoboken, NJ, USA. doi: 10.1002/9780470370087.ch17

Author Information

  1. Center for Advanced Vehicular Systems at Mississippi State University, Mississippi State, USA

Publication History

  1. Published Online: 7 JAN 2008
  2. Published Print: 27 AUG 2008

ISBN Information

Print ISBN: 9780470173640

Online ISBN: 9780470370087

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Keywords:

  • quantitative-microscopy determination and surface area;
  • quasi-3-dimensional energy-governing equation;
  • quasi-3-dimensional pressure-governing equation and powder injection molding

Summary

This chapter contains sections titled:

  • Quantitative-microscopy Determination of Surface Area—See Surface Area by Quantitative Microscopy

  • Quasi-3-dimensional Energy-governing Equation for Powder Injection Molding—See Energy-governing Equation for Powder Injection Molding

  • Quasi-3-dimensional Pressure-governing Equation for Powder Injection Molding—See Pressure-governing Equation in Powder Injection Molding

  • Quasi-3-dimensional Pressure-governing Equation for Powder Injection Molding with Slip-layer Model—See Pressure-governing Equation in Powder Injection Molding with Slip-layer Model

  • Quasi-3-dimensional Pressure-governing Equation for Powder Injection Molding with Slip-velocity Model—See Pressure-governing Equation in 2.5 Dimensions for Powder Injection Molding with Slip-velocity Model