S10-200 exam Dumps Source : Storage Networking Management/Administration
Test Code : S10-200
Test appellation : Storage Networking Management/Administration
Vendor appellation : Snia
: 102 true Questions
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Pavilion statistics methods, an industry chief in NVMe-oF storage technologies, introduced today that it has joined the Storage Networking traffic association (SNIA) as a artery to create requirements around NVMe-oF for facts administration and protection, adding to its ongoing efforts as a contributor to NVM specific. The enterprise is additionally asserting its altenative as a finalist within the Storage journal and SearchStorage 2018 products of the yr awards within the commercial enterprise Storage Arrays class. The entries acquire been judged on the following criteria: innovation, performance, ease of integration, ease of consume and manageability, performance and price.
“The commercial enterprise storage arrays considered for their 2018 Storage magazine and SearchStorage products of the year awards verify analysts' predictions: facts centers this year started to undertake nonvolatile reminiscence specific (NVMe) twinkle storage,” states the article. “The subsequent fraction is anticipated to usher in specifications-based NVMe over fabrics, presenting a connective tissue to absolutely allow the NVMe interface.”
Pavilion turned into identified for its ingenious approach, which “eschews the customary two-controller design for a modular design that allows for racks of storage to be custom-made for different types of applications.” The creator also notes that “multiple types of NVMe SSDs could be deployed in the identical device, with committed storage for diverse applications.”
“in the past, Direct connected Storage (DAS) became the simplest altenative that met their efficiency necessities, however it had big flaws in scalability and in management,” stated John legislations, network manager at Holley performance products. “Our current Pavilion equipment promises the equal efficiency degree as their previous PCI-E twinkle storage, however gives us lower back the administration, flexibility, and particularly the scalability of a staunch enterprise-stage storage array.As an early adopter of NVMe-oF, i am blissful to search for Pavilion facts sharing its talents and participating in industry requirements drudgery to aid the neighborhood carry the next wave of NVMe expertise to the market.”
“At SNIA, they dwell on accurate of the latest storage tendencies, making bound that along with industry experts and companies they create, guide and promote standards benefiting customers in sum places the area,” mentioned Michael Oros, SNIA government director. “NVMe-oF is now one of the crucial most well-liked and most wonderful storage interconnect applied sciences out there and they welcome carriers equivalent to Pavilion facts to collaborate with their neighborhood, demonstrating the genuine merits of this know-how through interoperability and enterprise workloads.”
“we are honored to be recognized by using the TechTarget storage editorial team within the 17 [th] annual storage award software and they are cozy to guide the NVMe-oF innovation and adoption happening nowadays within the storage market,” referred to Gurpreet Singh, CEO of Pavilion data. “Our NVMe-oF Storage Platform is being hastily adopted by main brands, thanks to Direct-attached Storage (DAS)-like efficiency of NVMe combined with the points you acquire approach to are expecting from commercial enterprise SAN arrays.”
About Pavilion data programs
Pavilion statistics systems empowers organizations to compose enhanced choices, faster. Pavilion’s ultra-speedy, rack-scale NVMe-over-textile Storage Platform ingests, methods, retailers and serves an order of magnitude more statistics for hugely-parallel, modern functions. Pavilion’s options allow web and SaaS groups, cloud carrier suppliers and companies to convey enterprise-vital purposes on the hurry of direct-connected storage, yet with the economics, reliability, manageability and statistics features of shared storage. To learn greater, talk over with www.paviliondata.com or keep the enterprise on Twitter at www.twitter.com/paviliondata.
View supply version on businesswire.com: https://www.businesswire.com/news/domestic/20190129005375/en/
source: Pavilion statistics techniques"> <Property FormalName="PrimaryTwitterHandle" value="@paviliondata
Pavilion data SystemsBrandon Graff408firstname.lastname@example.org Silicon Valley PRGeorgiana Comsa650email@example.com
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The SNIA Storage Networking management & Administration (S10-201) exam will certify that the successful candidate has vendor-impartial capabilities of prevalent storage networking administration and administration. Validation of the basic capacity to configure storagenetworks, video parade accessories of storage networks, restoration and backup info, and makes consume of trade established protocols, specifications and techniques.
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COLORADO SPRINGS, CO--(Marketwired - Apr 1, 2014) - The Storage Networking traffic affiliation (SNIA), these days introduced the addition of Dell storage certifications to the Storage Networking Certification application (SNCP) knowledgeable degree credential. The expert degree credential is cognizance of a person's storage networking talents at each a supplier-impartial and product-specific stage, and will station the storage expert to drudgery in a multi-vendor atmosphere, in a managed storage-service ambiance, or a associate or reseller delivery atmosphere.
"SNIA is delighted to welcome Dell into the professional degree software," commented David Dale, SNIA's Chairman of the Board. "we're dedicated to partnering with the vendor group to provide a robust unbiased validation of storage knowledge, aligned with the product specific talents that their vendors provide. individuals achieving the expert degree credential will be valued within the traffic as having confirmed credentials that determine them as professional storage practitioners."
The SNCP provides a tenacious foundation of supplier-neutral, foundations-level credentials that integrate with and complement particular person seller certifications. The knowledgeable plane credential is an further certificates awarded to people who efficaciously finished sum three SNIA certifications and any two of the qualifying supplier certifications.
The addition of Dell storage certifications gives Dell qualified storage authorities the possibility to validate their technical handicap and point to proficiency with storage and information management traffic requisites. Dell presents Compellent and EqualLogic management lessons that supply Storage directors with the expertise and arms-on probability to learn to without problems manage and hold their Dell Storage array. These lessons qualify as meeting the supplier requirement for SNIA skilled degree certification.
To qualify, candidates need to correctly complete sum three SNIA tests and additionally two qualifying SNIA partner courses. perquisite here Dell education services classes meet the partnership requirement:
who is Dell training functions? Dell training features has been a identified accurate 20 IT practising firm, 5 years in a row*, and presents courses ranging from Dell Storage, Networking and Server items to Virtualization and Microsoft migration classes. Dell's working towards company is worldwide, with places of drudgery in Europe, the middle East, Asia-Pacific, North and South america. Partnering with the SNIA corporation is a analytic progression of Dell's "vigour to conclude greater" philosophy, and provides Dell purchasers one source for his or her hardware, services, consulting, training, and now certification needs.
"Dell is joyous to present their Compellent and EqualLogic practising purchasers and channel companions a current opportunity to further raise their career construction. SNIA's management within the storage certification region affords improved focus for Dell Storage specialists in a competitive, global industry." Allyson McBreen, global Director, Dell schooling capabilities
To gain scholarship of extra about Dell education services, talk over with Dell.com/practicing.
what is SNIA certification? The SNIA Storage Networking Certification application (SNCP) offers a powerful groundwork of supplier-neutral, programs-degree credentials that integrate with and complement the product-concentrated supplier certifications. The constitution of the SNCP has been more suitable to mirror the progress and increase of storage networking applied sciences during the last few years, and to deliver for accelerated choices sooner or later. via evolving and enhancing the SNCP, the SNIA is organising a uniform middling by which individual expertise and capacity sets may also be judged. These checks are focused at IT professionals looking a specialization in storage networking, such as storage managers or administrators, managed services providers, multi-vendor provider delivery engineers and storage and reply architects.
about the SNIA The Storage Networking trade affiliation (SNIA) is a no longer-for-profit global company, made from member corporations spanning the world storage market. SNIA's mission is to lead the storage trade international in establishing and merchandising standards, technologies, and educational features to empower corporations in the administration of tips. To this end, the SNIA is uniquely committed to providing standards, schooling, and services so as to propel open storage networking solutions into the broader market. For extra assistance about the credentials, classes and e-lessons, delight seek advice from www.snia.org/schooling/certification
observe SNIA at:
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A recent Department of Homeland Security Privacy impact Assessment on FEMA’s Federal Insurance and Mitigation Administration’s (FIMA) Electronic Document and Records Management System (EDRMS) identified privacy risks DHS’s privacy office assured are being mitigated, but which the PIA said are only as helpful as policies and practices are obeyed.
Nevertheless, in accordance with Office and Management (OMB) Memorandum M-12-18 (OMB M-12-18) – documents and records must be managed in an electronic format, DHS assured FIMA’s conversion of paper documents for storage in EDRMS complies with OMB’s requirements.
EDRMS collects, disseminates, retrieves, and maintains a numerous variety of FIMA documents and copies of records with personally identifiable information (PII) – including a variety of biometric information — from FIMA organizations.
Many of the documents in EDRMS originate from federal directorates and offices, and contain highly sensitive PII. EDRMS also includes PII such as FEMA users’ username in the record’s metadata and its audit logs.
DHS 4300A Sensitive Systems Handbook provides specific techniques and procedures – including biometric solutions — for implementing the requirements of the DHS Information Security Program for DHS sensitive systems and systems that process sensitive information for DHS.
As the publication notes, Sensitive Personally Identifiable Information (SPII) includes, but is not limited to biometric identifiers such as fingerprint, voiceprint, iris scan, and photographic facial images. “PII also includes any other unique identifying number or characteristic, and any information where it is reasonably foreseeable that the information will be linked with other information to identify the individual,” the document states.
Documents are submitted to EDRMS for storage by the following FIMA directorates and offices: the Risk Management Directorate, Mitigation Directorate, Fund Management Directorate, Federal Insurance Directorate, the Office of Environmental Planning and Historic Preservation, FIMA Legal Division, FIMA Flood Insurance Advocate, and FIMA Office of the Associate Administrator.”
FIMA also uses EDRMS for document management and record management, and for conversion of paper documents to an electronic format in compliance with the National Archives and Records Administration (NARA) requirements, OMB management of federal records guidance and regulations, and executive directives. EDRMS is used as central storage of FIMA documents that are electronically scanned and that are not stored in other FIMA information technology (IT) systems.
FIMA’s “mission is to increase the capabilities necessary to reduce loss of life and property by lessening the impact of disasters. These capabilities include, but are not limited to, community-wide risk reduction projects; the transfer of flood risk through insurance; efforts to improve the resilience of critical infrastructure and key resource lifelines; risk reduction for specific vulnerabilities from natural hazards or acts of terrorism; and initiatives to reduce future risks after a disaster has occurred.”
PII contained in the system include:
• Bank routing numbers;• Bank account numbers;• Unique Identifier (e.g., employer identification number (EIN), recipient account numbers, or Data Universal Numbering System (DUNS) Number);• Finance Unique Identification (number, employer/federal ID, etc.);• Mailing address;• Office phone number and extension;• Office cellphone number;• Office fax number; and• drudgery email address;
Among the risks involve EDRMS users inputting incorrect records classification or metadata information which can cause an EDRMS user to inadvertently access records without an usurp need to know. But, “FEMA cannot fully mitigate this risk due to practicable human errors inherent with entering information into a system,” the PIA revealed.
In addition, FIMA is over-collecting information with information being stored in paper files and digitally in EDRMS or other FIMA-related systems. But, “FEMA does not fully mitigate this risk. EDRMS is not a requirement for sum of FIMA to use. Some offices, therefore, may continue to consume paper records while some are able to profit from the consume of EDRMS. EDRMS does not connect to any other FEMA system with the exception of the FEN and the FEIMS for security and access control.
FEMA may also maintain inaccurate or outdated data within EDRMS. This risk is also not mitigated.
There is also a privacy risk by the originating FIMA offices which conclude not provide notice through their own PIA documentation. This privacy risk is only partially mitigated so far.
There is also the risk that data within EDRMS may be used for an unintended or unauthorized purpose.
The PIA states, “Only authorized EDRMS users acquire access to documents and records stored in EDRMS. The authorization to create an EDRMS user account is the responsibility of the EDRMS program managers, the EDRMS system owner, and the originating FIMA office. It is the responsibility of the originating FIMA office to ensure its EDRMS users consume retrieved EDRMS documents in accordance with its PIA and its SORN. Users’ access to data and functionality is based on the users’ location, position description, projects, and EDRMS user role assignment. EDRMS users are required to annually symptom Rules of Behavior.”
There is a risk that PII and other personal information within EDRMS may be erroneously disclosed outside of DHS. The PIA stated, “Access to EDRMS is extremely limited based on various EDRMS parameters, including location and role-based access granted only for those individuals who need to know the information to effect their jobs. Sharing of information … is tracked by FEMA’s Information Management Division and the EDRMS system.”
According to DHS, “EDRMS is accessible only by FIMA employees and contractors within FEMA’s Enterprise Network (FEN), and is not accessible by the public. The EDRMS Regional Administrator and the System Owner license access to EDRMS records and documents based on the EDRMS user’s position and region.
“Authorized FIMA users access EDRMS after successful authentication by the FEMA Enterprise Identity Management System (FEIMS) separate Sign-On (SSO) process using their Personal Identity Verification (PIV) cards,” according to FEMA, saying, “EDRMS includes functionality that restricts access to documents and data based on the user’s position and region. sum user activity is logged and reviewed by the operating system administrator and the Information System Security Officer (ISSO).”
DHS said, “EDRMS institutes technical security controls, rules of behavior policies, security awareness communications, and other security processes, such as fitful audits and log reviews,” and that “only a relatively minuscule group of authorized users acquire access to EDRMS, based upon specific, established responsibilities and permissions set within the system. Users involve FEMA employees and contractors only. Individuals that engage in unauthorized access to EDRMS are theme to disciplinary action that can result in account termination or suspension. Additionally, FEMA ensures that the practices stated in this PIA are followed by leveraging yardstick operating procedures, which are updated annually.”
Additionally, the department stated, “EDRMS only allows authorized FEMA personnel access within the FEMA firewall and no public access is possible. EDRMS users gain access to the system through the FEIMS SSO using their PIV card. sum EDRMS activity is logged and reviewed on a daily basis. Auditable events are retained for one year when there are no security incidents. If a security incident is reported, the audit logs are retained for three years after the End of the security event investigation. EDRMS security mechanisms (i.e., technical, operational, and managerial) are assessed based on DHS 4300A and National Institutes of Standards and Technology SP 800-53A. EDRMS is approved by FEMA and is included in the DHS Technical Reference Model.”
DHS’s 4300A Sensitive Systems Handbook incorporates NIST SP 800-53A.
NIST SP 800-53A states that in regards to Identifier Management and Multiple Forms of Certification, it should be “determine[ed] if the organization requires multiple forms of certification of individual identification such as documentary evidence or a combination of documents and biometrics be presented to the registration authority.”
Regarding Authenticator Management and Biometric Authentication, NIST’s assessment objective is for federal agencies to determine if, for biometric-based authentication, the organization defines biometric trait requirements to be satisfied, and whether the information system employs mechanisms that fullfil organization-defined biometric trait requirements.
access management | biometrics | data protection | identity verification | privacy | U.S. Government
The SNIA Storage Networking Management & Administration (S10-201) exam will certify that the successful candidate has vendor-neutral scholarship of universal storage networking management and administration. Validation of the basic capacity to configure storagenetworks, monitor components of storage networks, restore and backup files, and uses industry established protocols, standards and processes.
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Storage virtualization is an emerging technology that creates analytic abstractions of physical storage systems. Storage virtualization has tremendous potential for simplifying storage administration and reducing costs for managing diverse storage assets. Find out sum about this current technology in this sample chapter.This chapter is from the engage
The data storage industry is one of the most dynamic sectors in information technology today. Due largely to the introduction of high-performance networking between servers and storage assets, storage technology has undergone a rapid transformation as one innovation after another has pushed storage solutions forward. At the very time, the viability of current storage technologies is repeatedly affirmed by the rapid adoption of networked storage by virtually every big enterprise and institution. Businesses, governments, and institutions today depend on information, and information in its unrefined profile as data ultimately resides somewhere on storage media. Applying current technologies to safeguard this essential data, facilitate its access, and simplify its management has readily understandable value.
Since the early 1990s, storage innovation has produced a steady stream of current technology solutions, including Fibre Channel, network-attached storage (NAS), server clustering, serverless backup, high-availability dual-pathing, point-in-time data copy (snapshots), shared tape access, storage over distance, iSCSI, CIM (common information model)-based management of storage assets and transports, and storage virtualization. Each of these successive waves of technical advance has been accompanied by disruption to previous practices, vendor contention, over-hyping of what the current solution could actually do, and confusion among customers. Ultimately, however, each step in technical progress eventually settles on some useful application, and sum the marketing dust finally settles back into place.
No storage networking innovation has caused more confusion in today's market, however, than storage virtualization. In brief, storage virtualization is the analytic abstraction of physical storage systems and thus, when well implemented, hides the complexity of physical storage devices and their specific requirements from management view. Storage virtualization has tremendous potential for simplifying storage administration and reducing costs for managing diverse storage assets.
Unlike previous current protocols or architectures, however, storage virtualization has no yardstick measure defined by a reputable organization such as INCITS (InterNational Committee for Information Technology Standards) or the IETF (Internet Engineering task Force). The closest vendor-neutral attempt to compose storage virtualization concepts comprehensible has been the drudgery of the Storage Networking Industry Association (SNIA), which has produced useful tutorial content on the various flavors of virtualization technology. Still, storage virtualization continues to play the role of elephant to the long lines of vendors and customers who, having been blinded by exaggerated marketing claims, attempt to lay hands on it in total darkness. Everyone walks away with a different impression. It is often difficult, therefore, to discourse exactly what the technology is or should be expected to do.
As might be expected, some of the confusion over storage virtualization is vendor-induced. Storage virtualization products vary considerably, as conclude their implementation methods. Vendors of storage arrays may host virtualization directly on the storage controller, while software vendors may port virtualization applications to servers or SAN appliances. Fabric switch manufacturers may implement virtualization services within the fabric in the profile of smart switch technology. Some vendors implement storage virtualization commands and data along the very path between server and storage, while others split the control path and data path apart. Advocates of one or the other virtualization method typically acquire sound reasons why their individual approach is best, while their competitors are ever willing to define in even greater detail why it is not. The diversity of storage virtualization approaches lonely forces customers into a much longer determination and acquisition cycle as they attempt to sort out the benefits and demerits of the various offerings and try to sever marketing hype from useful fact.
In addition, it is difficult to read data sheets or marketing collateral on virtualization products without encountering extended discussions about point-in-time data copying via snapshots, data replication, mirroring, remote extension over IP, and other utilities. Although storage virtualization facilitates these services, not anyone are fundamentally theme on storage virtualization technologies. The admixture of core storage virtualization concepts such as storage pooling with ancillary concepts such as snapshots contributes to the confusion over what the technology really does.
Although storage virtualization technology has spawned current companies and products, virtualizing storage is not new. Even in open systems environments, atomic forms of virtual storage acquire been around for years. In 1987, for example, researchers Patterson, Gibson, and Katz at the University of California Berkeley published a document entitled "A Case for Redundant Arrays of Inexpensive Disks (RAID)," which described means to combine multiple disks and virtualize them to the operating system as a separate big disk. Although RAID technology was intended to enhance storage performance and provide data recoverability against disk failure, it also streamlined storage management by reducing disk administration from many physical objects to a separate virtual one. Today, storage virtualization technologies leverage lower-level virtualizing techniques such as RAID, but primarily focus on virtualizing higher-level storage systems and storage processes instead of discrete disk components.
The economic drivers for storage virtualization are very straightforward: reduce costs without sacrificing data integrity or performance. Computer systems in universal are highly complex, too complex, in fact, to be administered at a discrete physical level. As computer technology has evolved, a higher balance of CPU cycle time has been dedicated to abstracting the underlying hardware, remembrance management, input/output, and processor requirements from the user interface. Today, a computer user does not acquire to be conversant in assembly language programming to compose a change in a spreadsheet. The interface and management of the underlying technology has been heavily virtualized.
Storage administration, by contrast, is quiet tedious, manual-intensive, and seemingly never-ending. The introduction of storage networking has centralized storage administrative tasks by consolidating dispersed direct-attached storage assets into larger, shared resources on a SAN. Fewer administrators can now manage more disk capacity and uphold more servers, but capacity for each server must quiet be monitored, analytic units manually created and assigned, zones established and exported, and current storage assets manually brought online to service current application requirements. In addition, although shared storage represents a major technological advance over direct-attached storage, it has introduced its own complexity in terms of implementation and support. Complexity equates to cost. Finding ways to camouflage complexity, automate tedious tasks, streamline administration, and quiet fullfil the requirements of towering performance and data availability saves money, and that is always the bottom line. That is the swear of storage virtualization, although many solutions today are quiet far short of this goal.
Another highly advertised objective for storage virtualization is to overcome vendor interoperability issues. Storage array manufacturers comply with the usurp SCSI and Fibre Channel standards for basic connectivity to their products. Each, however, also implements proprietary value-added utilities and features to differentiate their offerings to the market and these, in turn, pose interoperability problems for customers with heterogeneous storage environments. Disk-to-disk data replication solutions, for example, are vendor-specific: EMC's version only works with EMC; IBM's only with IBM. By virtualizing vendor-specific storage into its vanilla flavor, storage virtualization products can be used to provide data replication across vendor lines. In addition, it becomes practicable to replicate data from higher-end storage arrays with much cheaper disk assets such as JBODs (just a bunch of disks), thus addressing both interoperability and economic issues.
The concept of a system plane storage virtualization strategy occurs repeatedly in vendor collateral. One of the early articles was Compaq's Enterprise Network Storage Architecture and its description of a storage utility. According to the ENSA document, this technology would transform storage ". . . into a utility service that is accessed reliably and transparently by users, and is professionally managed with tools and technology behind the scenes. This is achieved by incorporating physical disks into a big consolidated pool, and then virtualizing application disks from the pool."
The operative words here are reliably and transparently. Technical remedies, relish doctors, must first conclude no harm. Reliability implies that storage data is highly accessible, protected, and at expected performance of delivery. Transparency implies that the complexity of storage systems has been successfully masked from view and that tedious administrative tasks acquire been automated on the back end. The abstraction layer of storage virtualization therefore bears the ponderous cross of preserving the performance and data integrity requirements of physical storage while reducing the intricate associations between physical systems to a simple utility outlet into which applications can be plugged. fraction of the challenge is to acquire the abstraction apparition conjured into place; a greater challenge is to ensure that the mirage does not dissolve when unexpected events or failures occur in the physical world. Utilities, after all, are expected to provide continuous service regardless of demand. You shouldn't acquire to phone the power company every time you wish to turn on a light.
The notion of utility applied to storage and compute resources conveys not only reliability and transparency, but also ubiquity. The simpler a technology becomes, the more widely it may be deployed. Storage networking is quiet an esoteric technology and requires expertise to design, implement and support. The substantial research, standards requirement definition, product development, testing, certification, and interoperability required to create operational SANs was in result funded by big enterprise customers who had the most pressing need and budget to uphold current and knotty storage solutions. Once a storage networking industry was established, however, shared storage expanded beyond the top tier enterprises into mainstream businesses. Leveraging storage virtualization to create a storage utility model will accelerate the market penetration of SANs and, in combination with other technologies such as iSCSI, spread shared storage solutions to minuscule and medium businesses as well.
Currently, sum major storage providers acquire some sort of storage virtualization strategy in place, with varying degrees of implementation in products. Upon acquiring Compaq, Hewlett-Packard (HP) inherited the ENSA (and ENSA-2) storage utility white paper and has supplemented it with its Storage Grid and other initiatives. IBM has TotalStorage with SAN Volume Controller. EMC's Information Lifecycle Management (ILM) extends storage virtualization's gain throughout the creation and eventual demise of data. Hitachi Data Systems supports array-based storage virtualization on its 9000 chain systems. Even Sun Microsystems has a component for pooling of storage resources within its N1 system virtualization architecture. These vendor-driven storage virtualization initiatives reflect both proactive and reactive responses to the customers' wish for simplified storage management and are being executed through both in-house progress and acquisition of innovative startups.
In addition, multilateral partnerships are being forged between vendors of virtualization software, storage providers, SAN switch manufacturers, and even nonstorage vendors such as Microsoft to bring current storage virtualization solutions to market. Despite the towering confusion factor (and often contributing to it), storage virtualization progress has considerable momentum and continues to spawn a diversity of product offerings. This is typical of an evolutionary process, with initial variation of attributes, cross-pollination, inheritance of successful features, and ultimately a natural selection for the most viable within specific environments. Because storage virtualization is quiet evolving, it is premature to discourse which method will ultimately prevail. It is likely that storage virtualization will continue to conform to a diversity of customer environments and issue in a number of different forms in the storage ecosystem.
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