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Course Outline 1: Architecture NIST Definitions Essential Characteristics Service Models Deployment Models Multi-Tenancy CSA Cloud Reference Model Jericho Cloud Cube Model Cloud Security Reference Model Cloud Service Brokers Service Level Agreements 2: Governance and Enterprise Risk Management Contractual Security Requirements Enterprise and Information Risk Management Third Party Management Recommendations Supply chain examination Use of Cost Savings for Cloud 3: Legal Issues: Contracts and Electronic Discovery Consideration of cloud-related issues in three dimensions eDiscovery considerations Jurisdictions and data locations Liability for activities of subcontractors Due diligence responsibility Federal Rules of Civil Procedure and electronically stored information Metadata Litigation hold 4: Compliance and Audit Management Definition of Compliance Right to audit Compliance impact on cloud contracts Audit scope and compliance scope Compliance analysis requirements Auditor requirements 5: Information Management and Data Security Six phases of the Data Security Lifecycle and their key elements Volume storage Object storage Logical vs physical locations of data Three valid options for protecting data Data Loss Prevention Course Syllabus Detection Data Migration to the Cloud Encryption in IaaS, PaaS andamp; SaaS Database Activity Monitoring and File Activity Monitoring Data Backup Data Dispersion Data Fragmentation 6: Interoperability and Portability Definitions of Portability and Interoperability Virtualization impacts on Portability and Interoperability SAML and WS-Security Size of Data Sets Lock-In considerations by IaaS, PaaS andamp; SaaS delivery models Mitigating hardware compatibility issues 7: Traditional Security, Business Continuity, and Disaster Recovery Four D's of perimeter security Cloud backup and disaster recovery services Customer due diligence related to BCM/DR Business Continuity Management/Disaster Recovery due diligence Restoration Plan Physical location of cloud provider 8: Data Center Operations Relation to Cloud Controls Matrix Queries run by data center operators Technical aspects of a Provider's data center operations for customers Logging and report generation in multi-site clouds 9: Incident Response Factor allowing for more efficient and effective containment and recovery in a cloud Main data source for detection and analysis of an incident Investigating and containing an incident in an Infrastructure as a Service environment Reducing the occurrence of application level incidents How often should incident response testing occur Offline analysis of potential incidents 10: Application Security Identity, entitlement, and access management (IdEA) SDLC impact and implications Differences in S-P-I models Consideration when performing a remote vulnerability test of a cloud-based application Categories of security monitoring for applications Entitlement matrix 11: Encryption and Key Management Adequate encryption protection of data in the cloud Key management best practices, location of keys, keys per user Relationship to tokenization, masking, anonymization and cloud database controls 12: Identity, Entitlement, and Access Management Relationship between identities and attributes Identity Federation Relationship between Policy Decision Point (PDP) and Policy Enforcement Point (PEP) SAML and WS-Federation Provisioning and authoritative sources 13: Virtualization Security concerns for hypervisor architecture VM guest hardening, blind spots, VM Sprawl, data comingling, instant-on gaps In-Motion VM characteristics that can create a serious complexity for audits How can virtual machine communications bypass network security controls VM attack surfaces Compartmentalization of VMs 14: Security as a Service 10 categories Barriers to developing full confidence in security as a service (SECaaS) Deployment of Security as a Service in a regulated industry prior SLA Logging and reporting implications How can web security as a service be deployed What measures do Security as a Service providers take to earn the trust of their customers ENISA Cloud Computing: Benefits, Risks and Recommendations for Information Security Isolation failure Economic Denial of Service Licensing Risks VM hopping Five key legal issues common across all scenarios Top security risks in ENISA research OVF Underlying vulnerability in Loss of Governance User provisioning vulnerability Risk concerns of a cloud provider being acquired Security benefits of cloud Risks Data controller vs data processor definitions in Infrastructure as a Service (IaaS), who is responsible for guest systems monitor Need to train your Team? 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Which reseller hosting services offer privacy and data protection?
Many reseller hosting services offer privacy and data protection as part of their packages. Some popular options include SiteGround, Bluehost, and A2 Hosting. These providers offer features such as SSL certificates, regular backups, and secure data centers to ensure the privacy and protection of customer data. It's important to carefully review the privacy and security features offered by each reseller hosting service to ensure they meet your specific needs.
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Can data be lost in online storage cloud systems?
Yes, data can be lost in online storage cloud systems. While cloud storage systems are designed to be reliable and secure, they are not immune to technical failures, human errors, or cyber attacks. Additionally, if a user accidentally deletes files or if there is a problem with synchronization, data can be lost. It is important for users to regularly back up their data and for cloud storage providers to have robust data protection measures in place to minimize the risk of data loss.
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What is the difference between Shared Hosting and Cloud Hosting?
Shared hosting involves hosting multiple websites on a single server, with resources such as CPU, RAM, and storage being shared among all the websites. This can lead to slower performance and potential security risks if one website experiences a surge in traffic or a security breach. On the other hand, cloud hosting utilizes a network of virtual servers to distribute resources and handle traffic spikes more effectively. This allows for better scalability, reliability, and security, as resources are not shared among websites and can be easily adjusted based on demand.
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How do free hosting services work?
Free hosting services work by providing individuals or businesses with server space to store their website files at no cost. These services typically generate revenue through advertisements displayed on the hosted websites. Users can sign up for a free hosting account, upload their website files, and the hosting service will make the website accessible on the internet. While free hosting services can be a cost-effective option for those looking to establish an online presence, they may come with limitations such as storage space, bandwidth, and customer support.
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Windows Server 2012 R2 Inside Out : Services, Security, & Infrastructure, Volume 2
This supremely organized reference packs hundreds of timesaving solutions, troubleshooting tips, and workarounds for Windows Server 2012 R2 - with a focus on infrastructure, core services, and security features. Coverage includes: TCP/IP networkingManaging DHCP DNS infrastructure and managementImplementing and managing DNS and WINSActive Directory architecture, sites, replication, domain servicesRead-only domain controllers Managing users, groups, and computers Managing Group Policy Active Directory site administration Deploying and managing print services
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What type of web server hosting is suitable for hosting personal web services?
For hosting personal web services, a shared web server hosting plan would be suitable. Shared hosting is cost-effective and easy to manage, making it ideal for individuals who want to host personal websites, blogs, or small online projects. With shared hosting, multiple websites are hosted on the same server, allowing users to share the server's resources and costs. This type of hosting is a good option for those who are just starting out and don't require a large amount of server resources.
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What is Steam Cloud storage?
Steam Cloud storage is a feature provided by the Steam platform that allows users to store their game saves, settings, and other data on the cloud. This means that the data is not only stored locally on the user's computer, but also on Steam's servers, allowing for easy access and synchronization across multiple devices. This feature helps to ensure that game progress and settings are not lost in the event of a computer failure or when switching to a different device.
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How can security be ensured in server hosting?
Security in server hosting can be ensured through a combination of measures such as implementing strong access controls, regularly updating and patching software, using firewalls and intrusion detection systems, encrypting data, and conducting regular security audits and vulnerability assessments. Additionally, using secure network protocols, implementing multi-factor authentication, and having a disaster recovery plan in place can also help enhance security in server hosting. It is important for hosting providers to stay updated on the latest security threats and best practices to continuously improve the security of their server hosting services.
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Do cloud services save my internet history?
Cloud services do not typically save your internet browsing history unless you specifically choose to store that information in the cloud. Cloud services are more commonly used for storing files, photos, and other data that you choose to upload or sync to the cloud. Your internet browsing history is usually stored locally on your device or by your internet service provider.
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