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1. |
Record Nr. |
UNINA9911093492903321 |
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Autore |
Rommel Florian |
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Titolo |
Active Directory disaster recovery / / Florian Rommel ; reviewers, James Eaton-Lee, Nathan Yocom |
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Pubbl/distr/stampa |
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Birmingham, U.K., : Packt Publishing Ltd., c2008 |
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ISBN |
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9786611386498 |
9781281386496 |
1281386499 |
9781847193285 |
1847193285 |
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Edizione |
[1st ed.] |
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Descrizione fisica |
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1 online resource (252 p.) |
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Disciplina |
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Soggetti |
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Directory services (Computer network technology) |
Data recovery (Computer science) - Planning |
Emergency management |
Data protection |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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"Expert guidance on planning and implementing Active Directory disaster recovery plans." |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Cover; Copyright; Credits; About the Author; About the Reviewers; Table of Contents; Preface; An Overview of Active Directory Disaster Recovery; What is Disaster Recovery?; Why is Disaster Recovery Needed?; Conventions Used in This Book; Disaster Recovery for Active Directory; Disaster Types and Scenarios Covered by This Book; Recovery of Deleted Objects; Single DC Hardware Failure; Single DC AD Corruption; Site AD Corruption; Corporate (Complete) AD Corruption; Complete Site Hardware Failure; Corporate (Complete) Hardware Failure; Summary; Active Directory Design Principles |
Active Directory ElementsThe Active Directory Forest; The Active Directory Tree; Organizational Units and Leaf Objects; Active Directory Sites; Group Policy Objects; Domain Design: Single Forest, Single Domain, and Star Shaped; Domain Design: Single Forest, Single Domain, Empty Root, Star Shaped; Domain Design: Multi-Domain Forest; Domain Design: Multi-Forest; LRS-Lag Replication Site; Design |
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Your Active Directory; Naming Standards; Username and Service Account Naming; Group Policy Naming; Design with Scalability in Mind; Flexible Single Master Operation Roles (FSMO) |
Migration from Other Authentication ServicesKeeping Up-To-Date and Safe; Documentation; Backups; Summary; Design and Implement a Disaster Recovery Plan for Your Organization; Analyze the Risks, Threats, and the Ways to Mitigate; The Two-Part, 10 Step Implementation Guide; Part One: The Steps for General Implementation; Calculate and Analyze; Create a Business Continuity Plan; Present it to the Management (Part 1 and 2); Define Roles and Responsibilities; Train the Staff for DR; Test Your DRP Frequently; Part Two: Implementing a Disaster Recovery Plan for AD; Writing is Not All |
Ensure that Everyone is Aware of Locations of the DRPDefine the Order of Restoration for Different Systems (Root First in Hub Site, then Add One Server etc.); Go back to ""Presentation to Management""; Summary; Strengthening AD to Increase Resilience; Baseline Security; Domain Policy; Domain Controller Security Policy; Securing Your DNS Configuration; Secure Updates; Split Zone DNS; Active Directory Integrated Zones; Configuring DNS for Failover; DHCP within AD; Tight User Controls and Delegation; Proper User Delegation; Group Full control; Group with Less Control |
Group to Allow Password ResetsCentral Logging; Proper Change Management; Virtualization and Lag Sites; Resource Assignment; Backups and Snapshots; Deployment; Sites and Services Explained; Creating Sites, Subnets, and Site Links; Setting Replication Schedules and Costs; Cost; Scheduling; Site Scheduling; Link Scheduling; Lag Sites and Warm Sites; Configuring a Lag Site; Creating, Configuring and Using a Warm Site; Summary; Active Directory Failure On a Single Domain Controller; Problems and Symptoms; Symptoms; Causes; Solution Process; Solution Details; Verification of Corruption |
Tools for Verification |
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Sommario/riassunto |
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Expert guidance on planning and implementing Active Directory disaster recovery plans with this book and eBook |
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2. |
Record Nr. |
UNINA9911139822703321 |
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Titolo |
Bioinformatics : managing scientific data / / edited by Zoe Lacroix and Terence Critchlow |
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Pubbl/distr/stampa |
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San Francisco, CA, : Morgan Kaufmann Publishers, c2003 |
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ISBN |
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9786611078133 |
9781281078131 |
1281078131 |
9780080527987 |
0080527981 |
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Edizione |
[1st edition] |
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Descrizione fisica |
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1 online resource (465 p.) |
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Collana |
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The Morgan Kaufmann series in multimedia information and systems |
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Altri autori (Persone) |
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LacroixZoé |
CritchlowTerence |
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Disciplina |
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Soggetti |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Cover; Bioinformatics: Managing Scientific Data; Copyright Page; Contents; Preface; Chapter 1. Introduction; 1.1 Overview; 1.2 Problem and Scope; 1.3 Biological Data Integration; 1.4 Developing a Biological Data Integration System; References; Chapter 2. Challenges Faced in the Integration of Biological Information; 2.1 The Life Science Discovery Process; 2.2 An Information Integration Environment for Life Science Discovery; 2.3 The Nature of Biological Data; 2.4 Data Sources in Life Science; 2.5 Challenges in Information Integration; Conclusion; References |
Chapter 3. A Practitioner's Guide to Data Management and Data Integration in Bioinformatics3.1 Introduction; 3.2 Data Management in Bioinformatics; 3.3 Dimensions Describing the Space of Integration Solutions; 3.4 Use Cases of Integration Solutions; 3.5 Strengths and Weaknesses of the Various Approaches to Integration; 3.6 Tough Problems in Bioinformatics Integration; 3.7 Summary; Acknowledgments; References; Chapter 4. Issues to Address While Designing a Biological Information System; 4.1 Legacy; 4.2 A Domain in Constant Evolution; 4.3 Biological Queries; 4.4 Query Processing |
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4.5 Visualization4.6 Conclusion; Acknowledgments; References; Chapter 5. SRS: An Integration Platform for Databanks and Analysis Tools in Bioinformatics; 5.1 Integrating Flat File Databanks; 5.2 Integration of XML Databases; 5.3 Integrating Relational Databases; 5.4 The SRS Query Language; 5.5 Linking Databanks; 5.6 The Object Loader; 5.7 Scientific Analysis Tools; 5.8 Interfaces to SRS; 5.9 Automated Server Maintenance with SRS Prisma; 5.10 Conclusion; References; Chapter 6. The Kleisli Query System as a Backbone for Bioinformatics Data Integration and Analysis; 6.1 Motivating Example |
6.2 Approach6.3 Data Model and Representation; 6.4 Query Capability; 6.5 Warehousing Capability; 6.6 Data Sources; 6.7 Optimizations; 6.8 User Interfaces; 6.9 Other Data Integration Technologies; 6.10 Conclusions; References; Chapter 7. Complex Query Formulation Over Diverse Information Sources in TAMBIS; 7.1 The Ontology; 7.2 The User Interface; 7.3 The Query Processor; 7.4 Related Work; 7.5 Current and Future Developments in TAMBIS; Acknowledgments; References; Chapter 8. The Information Integration System K2; 8.1 Approach; 8.2 Data Model and Languages; 8.3 An Example; 8.4 Internal Language |
8.5 Data Sources8.6 Query Optimization; 8.7 User Interfaces; 8.8 Scalability; 8.9 Impact; 8.10 Summary; Acknowledgments; References; Chapter 9. P/FDM Mediator for a Bioinformatics Database Federation; 9.1 Approach; 9.2 Analysis; 9.3 Conclusions; Acknowledgment; References; Chapter 10. Integration Challenges in Gene Expression Data Management; 10.1 Gene Expression Data Management: Background; 10.2 The GeneExpress System; 10.3 Managing Gene Expression Data: Integration Challenges; 10.4 Integrating Third-Party Gene Expression Data in GeneExpress; 10.5 Summary; Acknowledgments; Trademarks |
References |
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Sommario/riassunto |
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Life science data integration and interoperability is one of the most challenging problems facing bioinformatics today. In the current age of the life sciences, investigators have to interpret many types of information from a variety of sources: lab instruments, public databases, gene expression profiles, raw sequence traces, single nucleotide polymorphisms, chemical screening data, proteomic data, putative metabolic pathway models, and many others. Unfortunately, scientists are not currently able to easily identify and access this information because of the variety of semantics, interfaces, |
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