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Showing 1 - 6 of 6 matches in All Departments

Rectifying Semi-conductor Contacts (Hardcover): Heinz K. Henisch Rectifying Semi-conductor Contacts (Hardcover)
Heinz K. Henisch
R981 Discovery Miles 9 810 Ships in 10 - 15 working days
Electroluminescence (Hardcover): Heinz K. Henisch Electroluminescence (Hardcover)
Heinz K. Henisch
R1,050 Discovery Miles 10 500 Ships in 10 - 15 working days
Electroluminescence (Paperback): Heinz K. Henisch Electroluminescence (Paperback)
Heinz K. Henisch
R740 Discovery Miles 7 400 Ships in 10 - 15 working days
Rectifying Semi-conductor Contacts (Paperback): Heinz K. Henisch Rectifying Semi-conductor Contacts (Paperback)
Heinz K. Henisch
R696 Discovery Miles 6 960 Ships in 10 - 15 working days
Crystals in Gels and Liesegang Rings (Paperback, Revised): Heinz K. Henisch Crystals in Gels and Liesegang Rings (Paperback, Revised)
Heinz K. Henisch
R1,813 Discovery Miles 18 130 Ships in 10 - 15 working days

Providing the first comprehensive overview of the method of crystal growth in gels, Professor Henisch reviews the field, covering the underlying physics as well as the empirical experience of growth techniques accumulated over the past century. In addition, the book discusses the phenomenon of periodic precipitation, which often governs the distribution of crystal in laboratory growth systems. For the first time, computer techniques are brought to bear on the subject, the diffusion equations being solved numerically, in association with the conditions governing precipitations and crystal growth.

Crystals in Gels and Liesegang Rings (Hardcover): Heinz K. Henisch Crystals in Gels and Liesegang Rings (Hardcover)
Heinz K. Henisch
R4,000 Discovery Miles 40 000 Ships in 10 - 15 working days

Providing the first comprehensive overview of the method of crystal growth in gels, Professor Henisch reviews the field, covering the underlying physics as well as the empirical experience of growth techniques accumulated over the past century. In addition, the book discusses the phenomenon of periodic precipitation, which often governs the distribution of crystal in laboratory growth systems. For the first time, computer techniques are brought to bear on the subject, the diffusion equations being solved numerically, in association with the conditions governing precipitations and crystal growth.

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