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|a UAMI
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|a Yttrium :
|b compounds, production and applications /
|c Bradley D. Volkerts editor.
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|a New York :
|b Nova Science Publishers, Inc.,
|c [2011]
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|a Includes bibliographical references and index.
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|a Print version record and CIP data provided by publisher.
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|a English.
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|a YTTRIUM: COMPOUNDS, PRODUCTION AND APPLICATIONS ; YTTRIUM: COMPOUNDS, PRODUCTION AND APPLICATIONS; CONTENTS ; PREFACE ; ND:YAG LASER TREATMENT FOR DIFFERENT VASCULAR LESIONS ; ABSTRACT ; 1. INTRODUCTION ; 2. HISTORY OF ND:YAG LASER FOR THE TREATMENT OF VASCULAR LESIONS ; 3. PRINCIPLES OF VASCULAR LASER; 4. SELECTING PARAMETERS ; 4.1. Wavelength ; 4.2. Pulse Duration; 4.3. Spot Size ; 4.4. Fluence ; 4.5. Algorithm ; 5. DEFINITION OF VASCULAR PATHOLOGY ; 6. CLINICAL APPLICATIONS ; 6.1. Patient Selection ; 6.2. Preoperative Patient Evaluation, Care and Checklist.
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|a 6.3. Contraindications 6.4. Patient Information and Consent ; 6.5. Role of Cooling ; 6.6. Post-Operative Care ; 6.7. Side Effects ; 6.8. Histopathological Effects of Nd:YAG Laser Treatment ; 7. REVIEW OF ARTICLES ON USE OF ND:YAG LASER FOR VASCULAR LESIONS ; 7.1. Vascular Tumors ; 7.1.1. Hemangiomas ; 7.1.2. Pyogenic Granulomas ; 7.2. Vascular Malformations ; 7.2.1. Congenital Vascular Malformations ; 7.2.1.1. Port Wine Stain ; 7.2.1.2. Other Congenital Vascular Malformations ; 7.2.2. Vascular Ectasias ; 7.2.2.1. Facial Telangiectases ; 7.2.2.2. Leg Telangiectases ; 7.2.2.3. Venous Lake.
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|a 7.2.2.4. Spider Angioma 7.2.2.5. Cherry Angiomas ; 7.2.2.6. Hereditary Hemorrhagic Telangiectasia ; 7.2.2.7. Generalized Essential Telangiectasia ; 7.2.2.8. Poikiloderma of Civatte ; 7.2.3. Angiokeratoma ; 8. ENDOVENOUS ND:YAG LASER THERAPY ; 9. MANUFACTURERS OF ND:YAG LASER ; 10. CONCLUSION ; REFERENCES ; YTTRIUM IN PIGMENTS AND PHOSPHORS ; ABSTRACT ; INTRODUCTION ; STRUCTURE OF YTTRIUM OXIDES, HYDROXIDES AND OTHER Y-CONTAINING OXIDES WITH INTEREST AS PIGMENTS OR PHOSPHORS ; Properties of Y-Containing Oxides ; Y2O3 ; YVO4 ; Y-Containing Pyrochlores ; YAlO3 Perovskite ; Y2BaCuO5.
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|a Y2SiO5 (YSO) CONCLUSION ; Acknowledgments ; REFERENCES ; MICROWAVE PROPERTIES AND APPLICATIONS OF YTTRIUM IRON GARNET (YIG) FILMS: CURRENT STATE OF ART AND PERSPECTIVES ; ABSTRACT ; INTRODUCTION ; 1. YIG AS REMARKABLE MATERIAL IN THE FAMILY OF MICROWAVE FERRITES ; 1.1. YIG -- 20 Sublattice Ferrimagnet ; 1.2. LPE and PLD YIG Films ; a. LPE YIG Films ; b. PLD YIG Films ; 1.3. Advanced Theoretical Ferromagnetic Models of YIG Films ; a. Anisotropy of (111) LPE Films ; b. The Magnetic Permeability Tensor of (111) Film ; 1.4. Dipole-Exchange Spin Excitations in YIG Films.
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|a 1.5. Experimental Microwave Methods for YIG Magnetic Parameters Testing a. Destructive Techniques ; b. Nondestructive Techniques ; 2. RECENT DEVELOPMENTS IN METAMATERIALS BASED ON YIG FILMS ; 2.1. 1D and 2D Magnonic Crystals ; 2.2. Composite YIG-Piezoelectric and YIG-Ferroelectric Structures ; 2.3. Negative Refractive Index Metamaterials ; 3. MICROWAVE APPLICATIONS OF YIG FILMS ; 3.1. Nonreciprocal Devices ; 3.2. MSW Filters and Filter Banks ; 3.3. Nonlinear Passive Devices ; a. Frequency Selective Limiter Operation ; b. Signal-to-Noise Enhancer Operation.
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|a Volkerts, Bradley D.,
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|t Yttrium.
|d Hauppauge, N.Y. : Nova Science Publishers, ©2011
|z 9781617289286
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