close menu
Bookswagon-24x7 online bookstore
close menu
My Account
Electroceramics in Japan IX: (Volume 320 Key Engineering Materials)

Electroceramics in Japan IX: (Volume 320 Key Engineering Materials)

          
5
4
3
2
1

Out of Stock


Premium quality
Premium quality
Bookswagon upholds the quality by delivering untarnished books. Quality, services and satisfaction are everything for us!
Easy Return
Easy return
Not satisfied with this product! Keep it in original condition and packaging to avail easy return policy.
Certified product
Certified product
First impression is the last impression! Address the book’s certification page, ISBN, publisher’s name, copyright page and print quality.
Secure Checkout
Secure checkout
Security at its finest! Login, browse, purchase and pay, every step is safe and secured.
Money back guarantee
Money-back guarantee:
It’s all about customers! For any kind of bad experience with the product, get your actual amount back after returning the product.
On time delivery
On-time delivery
At your doorstep on time! Get this book delivered without any delay.
Notify me when this book is in stock
Add to Wishlist

About the Book

Volume is indexed by Thomson Reuters CPCI-S (WoS).
Japan is currently the most active country of all of those carrying out research in the rapidly expanding field of Electroceramics; a field that has tremendous implications for a wide range of high-tech applications.



Table of Contents:
  • Dielectric, Ferroelectric and Piezoelectric Single Crystals and Ceramics
  • Evolution of Crystallographic Grain Orientation of (K0.5Na0.5)NbO3 Piezoelectric Ceramics
  • Self Assemble Synthesis of Potassium Niobate at Room Temperature
  • Preparation of Lead-Free Multi-Layered Piezoelectric Actuator
  • Piezoelectric Properties in Textured Ceramics of SrBi2Nb2O9
  • Influence of Oxygen Vacancies on the Polarization Properties in Bi4Ti3O12 Ferroelectric Single Crystals
  • Piezoelectric Properties and Depolarization Temperatures of (Bi1/2Na1/2)TiO3-(Bi1/2K1/2)TiO3-BaTiO3 Lead-Free Piezoelectric Ceramics
  • Influence of Annealing on Domain Structures of Bismuth-Titanate-Based Crystals
  • Electrical Properties of Grain-Oriented SrBi2Nb2-xVxO9 Ceramics
  • Crystal Growth and Electric-Field-Induced Strain in Bi0.5Na0.5TiO3 Crystals
  • Piezoelectric Properties of Nd and V Cosubstituted Bi4Ti3O12 Ceramics
  • Dielectric, Ferroelectric, and Piezoelectric Thin Films
  • Ferroelectricity of BiFeO3 Thin Films by Pulsed Laser Deposition and Effect of Atmosphere
  • Electrical Properties of Perovskite-Based Ferroelectric Thin Films Modified Using Rare-Earth Elements
  • In Situ Simultaneous Observation of Phase Transition and Electrical Properties of Pb(Zr,Ti)O3 Thin Film by High Temperature XRD and Electrical Measurement Apparatus
  • Preparation of Epitaxial LiTaO3 Thin Films by Metal Organic Chemical Vapor Deposition and its Electrical and Optical Properties
  • Photovoltaic Effect with the Structural Control and its Application to the Optical Sensor
  • Effect on Crystal Orientation on Residual Stress and Electrical Properties of a PZT Thin Film Deposited on Buffered-Si Substrate
  • Orientation Control of Perovskite Epitaxial Thin Film on Silicon Substrate with Yttria-Stabilized Zirconia Buffer Layers
  • Characterization of Dielectric Properties of Alkoxy-Derived (Y,Yb)MnO3 Ferroelectrics /HfO2 Stacking Layers
  • Chemically Deposited (100)-Oriented BaTiO3 Films with Highly Concentrated Solution Using High Crystallinity BaTiO3 as a Buffer Layer
  • Fabrication and Electrical Characterization of Epitaxially Grown (Ba,Sr)TiO3 Thin Films Prepared by Sol-Gel Method
  • Crystallization Behavior of KNbO3 Series Precursors Synthesized by CSD Process
  • Thin and Thick Films
  • Synthesis of Oxide Thin Films on Silicon Substrate Using Supercritical Carbon Dioxide Fluid
  • Fabrication and Application of MoSi2 Thin Film Electric Heaters
  • B- and P-Doped Si0.8Ge0.2 Thin Film Deposited by Helicon Sputtering for the Micro-Thermoelectric Gas Sensor
  • Defect Structure in (Zn,Mg)O Films Prepared on YSZ Substrate
  • Zinc Oxide and Semiconductive Materials
  • Evaluation of Planar-Type Thin Film ZnO Varistors Fabricated Using Pulsed Laser Ablation
  • Near-Infrared Light Emission from of Er-Doped ZnO Thin Film in Micropits Processed on Si Substrate
  • Relation Between Grain Boundary and Electrical Degradation of ZnO Varistors
  • Cathodoluminescence of Diffusion Layer Synthesized by Coupling of β-Ga2O3 and ZnO
  • Nanocrystals and Processing
  • Preparation and Dielectric Properties of 3D Barium Titanate Colloidal Sphere Array
  • Phase Transition Behavior of Barium Titanate Nanoparticles
  • Synthesis and Characterization of BaTiO3 Nano-Particle by Aerosol Plasma Pyrolysis Process
  • Size Dependence of Dielectric Properties for Barium Titanate Nanoparticles Prepared under Various Vacuum Atmospheres
  • Powder and Dielectric Characterization of Hydrothermally Synthesized Barium Titanate Nanopowders
  • Domain Wall Engineering in Potassium Niobate Single Crystals and Their Piezoelectric Properties
  • Development of Lead-Free Piezoelectric Materials Using Domain Wall Engineering
  • Morphological Design of Zinc Oxide Films Grown in Aqueous Solutions
  • Preparation and Characterization of Porous Alumina Film Using Sol Containing PEG
  • Synthesis of Carbon Nanotubes from Polycyclic Compounds by CVD Method
  • Photoinduced Nanodots in Bi2Sr2CaCu2O8+d
  • Micropattern of Colloidal Crystal by Using Electrophoretic Deposition Process with Three-Electrode System
  • Synthesis of a New Photochromic ZrO2 Precursor for Preparation of Functional Thin Films
  • Microwave Dielectrics and Related Materials
  • Low Temperature Sintering of Alumina by CuO-TiO2-Nb2O5 Additives
  • A Technique for Permittivity Measurement of Ceramic Powders at Microwave Frequencies
  • High Frequency Dielectric Mapping Using Un-Contact Probe for Dielectric Materials
  • Evaluation of Characteristics of Composite Electromagnetic Wave Absorbers
  • Effect of Lanthanum Oxide Addition on Dielectric Loss and Microstructure of AlN Ceramics
  • Preparation and Formation Mechanism of Micrometer-Sized Spherical Single Crystal Particles of Perovskite Oxides by Flame Fusion
  • Effect of Powder Properties of Dielectric Filler on the Dielectric Properties of a Ceramics-Polymer Composite
  • Dielectric Properties of Phosphate Glasses in the Region from 1 to 10 GHz
  • Ionic Conductors and Battery Related Materials
  • High-Rate Charge-Discharge Performance of Composite Materials of β-FeOOH Particles and Carbon Powder Prepared in the Presence of Ti(IV) Ions
  • New Method to Adsorb Dye Molecules for Dye Sensitized Solar Cell
  • High-Rate Electrode Properties of Li-Mn-oxide Synthesized by Reassembly of MnO2 Nanosheets for Li-Ion Battery
  • Doping Effect on Crystal Structure of Fast Oxide Ion Conductor LaGaO3-Based Perovskite Compounds
  • Electrode Properties of Dye Sensitized Solar Cell Using Ruthenium Complex/Titania Nano Crystal
  • Effects of the Substitution of the B-Site Ion on Oxygen Reduction Electrode Properties of the Pyrochlore Pb2Ru2O7-δ at Low Temperatures
  • Growth and Electric Properties of Al-Substituted Langasite-Type La3Ta0.5Ga5.5O14 Crystals at High Temperature
  • Oxygen Reduction Electrode Properties of Perovskite-Related Oxides Sr(Fe,Co,Ru)O3-δ at Low Temperatures
  • Oxygen Reduction Electrode Properties of the Ba(Ce,Gd,Ru) O3-δ Oxides at Low Temperatures
  • Large-Scale Synthesis and Electrochemical Properties of LiAlXMn2-XO4 Powders by Internal Combustion Type Spray Pyrolysis Apparatus Using Gas Burner
  • Synthesis and Characterization of Li(Ni1/3Mn1/3Co1/3)O2 Nano-Particle by Aerosol Plasma Pyrolysis
  • Preparation of LiFePO4 as a Cathode Material for Lithium Ion Batteries by a Citric Acid Complex Method
  • Preparation of Three Dimensionally Ordered Macroporous Li4Ti5O12 Electrode
  • Proton Conducting Properties of Layered Metal Phosphate Hydrates
  • Electrochemical Behavior of LiFePO4 in Aqueous Lithium Hydroxide Electrolyte
  • Computational Simulations of Li Ion Conduction in (Li,La)TiO3


Best Seller

| | See All

Product Details
  • ISBN-13: 9783038130628
  • Publisher: Trans Tech Publications Ltd
  • Publisher Imprint: Trans Tech Publications Ltd
  • Language: English
  • Series Title: Volume 320 Key Engineering Materials
  • ISBN-10: 3038130621
  • Publisher Date: 15 Sep 2006
  • Binding: Digital download and online
  • No of Pages: 300


Similar Products

How would you rate your experience shopping for books on Bookswagon?

Add Photo
Add Photo

Customer Reviews

REVIEWS           
Be The First to Review
Electroceramics in Japan IX: (Volume 320 Key Engineering Materials)
Trans Tech Publications Ltd -
Electroceramics in Japan IX: (Volume 320 Key Engineering Materials)
Writing guidlines
We want to publish your review, so please:
  • keep your review on the product. Review's that defame author's character will be rejected.
  • Keep your review focused on the product.
  • Avoid writing about customer service. contact us instead if you have issue requiring immediate attention.
  • Refrain from mentioning competitors or the specific price you paid for the product.
  • Do not include any personally identifiable information, such as full names.

Electroceramics in Japan IX: (Volume 320 Key Engineering Materials)

Required fields are marked with *

Review Title*
Review
    Add Photo Add up to 6 photos
    Would you recommend this product to a friend?
    Tag this Book
    Read more
    Does your review contain spoilers?
    What type of reader best describes you?
    I agree to the terms & conditions
    You may receive emails regarding this submission. Any emails will include the ability to opt-out of future communications.

    CUSTOMER RATINGS AND REVIEWS AND QUESTIONS AND ANSWERS TERMS OF USE

    These Terms of Use govern your conduct associated with the Customer Ratings and Reviews and/or Questions and Answers service offered by Bookswagon (the "CRR Service").


    By submitting any content to Bookswagon, you guarantee that:
    • You are the sole author and owner of the intellectual property rights in the content;
    • All "moral rights" that you may have in such content have been voluntarily waived by you;
    • All content that you post is accurate;
    • You are at least 13 years old;
    • Use of the content you supply does not violate these Terms of Use and will not cause injury to any person or entity.
    You further agree that you may not submit any content:
    • That is known by you to be false, inaccurate or misleading;
    • That infringes any third party's copyright, patent, trademark, trade secret or other proprietary rights or rights of publicity or privacy;
    • That violates any law, statute, ordinance or regulation (including, but not limited to, those governing, consumer protection, unfair competition, anti-discrimination or false advertising);
    • That is, or may reasonably be considered to be, defamatory, libelous, hateful, racially or religiously biased or offensive, unlawfully threatening or unlawfully harassing to any individual, partnership or corporation;
    • For which you were compensated or granted any consideration by any unapproved third party;
    • That includes any information that references other websites, addresses, email addresses, contact information or phone numbers;
    • That contains any computer viruses, worms or other potentially damaging computer programs or files.
    You agree to indemnify and hold Bookswagon (and its officers, directors, agents, subsidiaries, joint ventures, employees and third-party service providers, including but not limited to Bazaarvoice, Inc.), harmless from all claims, demands, and damages (actual and consequential) of every kind and nature, known and unknown including reasonable attorneys' fees, arising out of a breach of your representations and warranties set forth above, or your violation of any law or the rights of a third party.


    For any content that you submit, you grant Bookswagon a perpetual, irrevocable, royalty-free, transferable right and license to use, copy, modify, delete in its entirety, adapt, publish, translate, create derivative works from and/or sell, transfer, and/or distribute such content and/or incorporate such content into any form, medium or technology throughout the world without compensation to you. Additionally,  Bookswagon may transfer or share any personal information that you submit with its third-party service providers, including but not limited to Bazaarvoice, Inc. in accordance with  Privacy Policy


    All content that you submit may be used at Bookswagon's sole discretion. Bookswagon reserves the right to change, condense, withhold publication, remove or delete any content on Bookswagon's website that Bookswagon deems, in its sole discretion, to violate the content guidelines or any other provision of these Terms of Use.  Bookswagon does not guarantee that you will have any recourse through Bookswagon to edit or delete any content you have submitted. Ratings and written comments are generally posted within two to four business days. However, Bookswagon reserves the right to remove or to refuse to post any submission to the extent authorized by law. You acknowledge that you, not Bookswagon, are responsible for the contents of your submission. None of the content that you submit shall be subject to any obligation of confidence on the part of Bookswagon, its agents, subsidiaries, affiliates, partners or third party service providers (including but not limited to Bazaarvoice, Inc.)and their respective directors, officers and employees.

    Accept

    New Arrivals

    | | See All


    Inspired by your browsing history


    Your review has been submitted!

    You've already reviewed this product!
    ASK VIDYA