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Rock Magnetism (Fundamentals and Frontiers) ||

✍ Scribed by Dunlop, David J. (author);Özdemir, Özden (author)


Book ID
120179614
Publisher
Cambridge University Press
Year
1997
Weight
887 KB
Category
Article
ISBN
052100098X

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📜 SIMILAR VOLUMES


Rock Magnetism (Fundamentals and Frontie
✍ Dunlop, David J. (author);Özdemir, Özden (author) 📂 Article 📅 1997 🏛 Cambridge University Press 🌐 English ⚖ 887 KB

Rock Magnetism is a comprehensive treatment of fine particle magnetism and the magnetic properties of rocks. Starting from atomic magnetism and magnetostatic principles, the authors explain why domains and micromagnetic structures form in ferromagnetic crystals and how these lead to magnetic memory

Rock Magnetism (Fundamentals and Frontie
✍ Dunlop, David J. (author);Özdemir, Özden (author) 📂 Article 📅 1997 🏛 Cambridge University Press 🌐 English ⚖ 887 KB

Rock Magnetism is a comprehensive treatment of fine particle magnetism and the magnetic properties of rocks. Starting from atomic magnetism and magnetostatic principles, the authors explain why domains and micromagnetic structures form in ferromagnetic crystals and how these lead to magnetic memory

Rock Magnetism (Fundamentals and Frontie
✍ Dunlop, David J. (author);Özdemir, Özden (author) 📂 Article 📅 1997 🏛 Cambridge University Press 🌐 English ⚖ 887 KB

Rock Magnetism is a comprehensive treatment of fine particle magnetism and the magnetic properties of rocks. Starting from atomic magnetism and magnetostatic principles, the authors explain why domains and micromagnetic structures form in ferromagnetic crystals and how these lead to magnetic memory

Rock Magnetism (Fundamentals and Frontie
✍ Dunlop, David J. (author);Özdemir, Özden (author) 📂 Article 📅 1997 🏛 Cambridge University Press 🌐 English ⚖ 887 KB

Rock Magnetism is a comprehensive treatment of fine particle magnetism and the magnetic properties of rocks. Starting from atomic magnetism and magnetostatic principles, the authors explain why domains and micromagnetic structures form in ferromagnetic crystals and how these lead to magnetic memory