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00M-604 IBM Government Industry Solutions Sales(R) Mastery Test v1

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IBM Blockchain World Wire, a new global fee community, to support funds and foreign alternate in additional Than 50 countries | killexams.com Real Questions and Pass4sure dumps

provides precise time settlement the usage of a lot of digital property

SINGAPORE, March 18, 2019 /PRNewswire/ -- cash 20/20: IBM (NYSE: IBM) nowadays announced IBM Blockchain World Wire, a true-time world payments network for regulated financial associations, is officially purchasable in a growing variety of markets.

IBM employer logo. (PRNewsfoto/IBM)

extra

Designed to optimize and accelerate overseas trade, pass border funds and remittances, World Wire is the primary blockchain network of its kind to integrate price messaging, clearing and contract on a single unified network, while allowing members to dynamically make a choice from a variety of digital property for contract.

"now they have created a new classification of fee network designed to speed up remittances and radically change pass-border payments to facilitate the move of funds in nations that want it most," said Marie Wieck, commonplace supervisor, IBM Blockchain. "through making a network the place financial associations help distinctive digital assets, they predict to spur innovation and increase financial inclusion worldwide."

these days World Wire has enabled fee places in 72 nations, with 47 currencies and 44 banking endpoints.  native rules will continue to guide activation, and IBM is actively transforming into the community with further financial institutions globally.

World Wire gives a extra straight-via model for go border funds using the Stellar protocol that makes funds transfers aspect-to-aspect in lieu of the complexities of regular correspondent banking. It reduces intermediaries and enables clients to speed up agreement time often in seconds by means of transmitting monetary cost within the form of digital property, frequently known as cryptocurrencies or "stable coins." This simplified method improves operational effectivity and liquidity management, streamlining charge reconciliation and cutting back normal transaction expenses for fiscal institutions. 

The network already supports contract the usage of Stellar Lumens and a U.S. greenback good coin through IBM's up to now-announced collaboration with Stronghold.  Pending regulatory approvals and other reports, six international banks, together with Banco Bradesco, financial institution Busan, and Rizal commercial Banking agency (RCBC), have signed letters of intent to issue their own strong cash on World Wire, adding Euro, Indonesian Rupiah, Philippine Peso, Korean gained and Brazilian actual good cash to the network. IBM will continue to extend the ecosystem of agreement assets according to customer demand.

"Bradesco invariably adopts innovation that enhances customer event and improves effectivity," noted Luiz Carlos Brandao Cavalcanti Junior, Innovation and Digital Channels govt Director, Banco Bradesco. "the area Wire community addresses both of these aspects, and therefore presents a useful opportunity for Bradesco and its customers in Brazil."

"RCBC is happy to be an early innovator with plans to difficulty their own Peso strong coin on World Wire, pending remaining approval from their regulators," talked about Manny T. Narcisco, First Senior Vice-President, RCBC. "We're concentrated on innovation that adds value for their purchasers, and World Wire items an important probability to seriously change and increase their fee infrastructure."

Story continues

World Wire is now in constrained creation and attainable in a transforming into variety of countries.  interested corporations can gain knowledge of greater at https://www.ibm.com/blockchain/solutions/world-wire.

About IBM

IBM is diagnosed as the leading commercial enterprise blockchain provider. The business's analysis, technical and enterprise experts have broken limitations in transaction processing speeds, developed probably the most advanced cryptography to relaxed transactions, and are contributing tens of millions of traces of open supply code to increase blockchain for companies. IBM is the chief in open-supply blockchain options constructed for the business. on the grounds that 2016, IBM has labored with hundreds of purchasers throughout economic features, give chain, govt, retail, digital rights administration and healthcare to put in force blockchain functions, and operates a few networks operating reside and in construction. The cloud-based mostly IBM Blockchain Platform can provide the end-to-conclusion capabilities that customers should right now activate and successfully develop, operate, govern and comfortable their personal company networks. IBM is an early member of Hyperledger, an open supply collaborative effort created to advance move-trade blockchain technologies. For greater advice about IBM Blockchain, seek advice from https://www.ibm.com/blockchain/or follow us on Twitter at @ibmblockchain.

Media Contact: Leesa DAlto, Leesa.dalto@ibm.com

View common content to down load multimedia:http://www.prnewswire.com/news-releases/ibm-blockchain-world-wire-a-new-global-price-community-to-help-funds-and-overseas-exchange-in-greater-than-50-international locations-300813674.html


Spending In Digital client event and Engagement solutions Market - Investigation & business Evolution till 2026 | killexams.com Real Questions and Pass4sure dumps

← Press Releases

Market analysis experiences Search Engine (MRRSE) has currently up-to-date its large report catalogue through including a clean examine titled “Spending In Digital consumer experience and Engagement solutions Market - Investigation & trade Evolution till 2026”. This enterprise intelligence study encapsulates a must-have particulars in regards to the market existing as well as future repute all through the mentioned forecast period of 2026. The document also pursuits vital sides reminiscent of market drivers, challenges, newest traits, and alternatives associated with a growth of producers within the world marketplace for Spending In Digital customer adventure and Engagement solutions. together with these insights, the record provides the readers with critical insights on the options implemented by leading corporations to remain in the lead of this competitive market.

The market overview portion of the file demonstrates market dynamics reminiscent of drivers, restraints, and alternatives that have an impact on the latest nature and future statusof this market,besides the challengesof the market.The market overview area also contains pricing model, which includes evaluation of pay-per-unit, and tiered pay-per transaction model provided byspending in digital customer journey and engagement options vendors. in addition, market attractiveness evaluation has been offered for every phase within the document, in an effort to present a radical knowing of the average state of affairs in the spending in digital customer event and engagement solutionsmarket. The document additionally offers an outline of quite a few options adopted by key avid gamers present out there.   

To Get pattern copy of file, click right here @ https://www.mrrse.com/sample/18822

The report additionally highlights the competitive panorama of the market, positioning all the foremost players according to their presence in diverse areas of the world, and initiated by them out there. The complete spending in digital client adventure and engagement solutionsmarket estimates are the outcome of their in-depth secondary research, basic interviews, and in-condo expert panel studies. These market estimates have been analyzed via considering the have an impact on of different political, social, economic,and technological factors along with the latest market dynamics affecting the spending in digital client experience and engagement solutionsmarket increase. 

This report provides the entire fundamental assistance required to remember the key tendencies within the spending in digital customer experience and engagement solutionsmarket and boom trends of every section and region. It additionally contains businesses’ innovations, company overview, company portfolio, and financial counsel, below the company profile area. moreover, Porter’s 5 Forces evaluation explains the five forces particularly, patrons bargaining energy, suppliers bargaining energy, possibility of latest entrants, risk of substitutes, and degree of competition in thespending in digital client experience and engagement solutionsmarket.This document also offers a comprehensiveecosystem evaluation ofthe market. It explains the numerous individuals, together with application &platform vendors, equipment integrators, intermediaries, and end-userswithin the ecosystem of the market. 

world Spending in Digital client event and Engagement solutions Market: research Methodology

The analysis methodology is an ideal aggregate of primary analysis, secondary research, and professional panel experiences. Secondary research sources akin to annual reviews, enterprise sites, broker reviews, financial experiences, SEC filings and investor displays, countrywide government documents, internal and external proprietary databases, statistical databases, relevant patent and regulatory databases, market stories, executive publications, statistical databases, World bank database, and industry white papers are referred. 

simple analysis comprises telephonic interviews, e mail interactions, and face-to-face interviews for targeted and unbiased stories on the spending in digital client experience and engagement options market, across geographies. simple interviews are always performed on an ongoing basis with industry consultants and individuals in an effort to get latest market insights and validate the current statistics and evaluation. simple interviews offer firsthand assistance on vital factors similar to market trends, market size, competitive panorama,increase developments, outlook and many others. These factors assist to validate and enhance secondary analysis findings and additionally help to strengthen the evaluation team’s potential and market knowing. in addition, the information amassed and analyzed from secondary and first analysis is once more mentioned and examined via their expert panel. 

Browse finished file with TOC @ https://www.mrrse.com/spending-in-digital-consumer-adventure-and-engagement-solutions-market

The research study contains profiles of main agencies operating in the global spending in digital consumer adventure and engagement options market. Key avid gamers profiled encompass Accenture PLC, Capgemini SE, Cognizant, IBM business enterprise, KOFAX INC., Liferay Inc., MEGA international, NCR enterprise, Orange company functions, SASInstitute Inc., Tata Consultancy features constrained, Tieto company, and Zendesk Inc. 

The world spending in digital customer adventure and engagement options market is segmented as under:

world Spending in Digital customer journey and Engagement solutions Market, by company type

enterprise to company (B2B)

business to buyer (B2C)

enterprise to company to consumer (B2B2C)

international Spending in Digital consumer journey and Engagement options Market, byTouch elements

Social media

Gamification

Digital advertising and marketing

Mobility

international Spending in Digital consumer experience and Engagement options Market, through trade

Banking

assurance

Manufacturing

Public Sector

Telecommunications

Utilities

Retail and wholesale

features & patrons

Transport

world Spending in Digital client journey and Engagement options Market, by business dimension

Small agencies

Medium businesses

gigantic enterprises 

world Spending in Digital customer event and Engagement options Market, with the aid of solutions

consumer focus

customer information administration systems

consumer Analytics

promoting & marketing

e-mail / campaign administration

Social Media Analytics

search engine optimisation/ web Analytics

focused marketing

content advertising

consumer Engagement

Personalization/ content concentrated on

cross selling/ Up selling

UI Design

purchase and Relation

Loyalty programs

Transactions/ sales

digital Trials/ shows

aid features

Chatbot

Self-serve tools

Digital surveys

Case administration 

international Spending in Digital customer event and Engagement options Market, via Geography

North the us

The U.S.

Canada

rest of North america

Europe

The U.okay

Germany

France

relaxation of Europe

Asia Pacific (APAC)

India

China

Japan

relaxation of Asia Pacific

core East & Africa (MEA)

GCC countries

South Africa

relaxation of middle East & Africa

South america

Brazil

rest of South the usa


Quantum Bits: IBM Tackles Noisy Machines; IonQ considerations Benchmarks; D-Wave Expands leap | killexams.com Real Questions and Pass4sure dumps

maintaining with quantum computing announcements is increasingly difficult. today, IBM issued a paper outlining a strategy for error mitigation in these days’s noisy QCs. final week IonQ posted a paper benchmarking its ion entice device and declared, “our equipment outperforms all other at present accessible hardware” while a Microsoft-led community announced formation of the Northwest Quantum Nexus. the day gone by D-Wave methods introduced growth of its net portal start all through its person assembly (Qubits Europe 2019, Milan) which includes trade heavyweights equivalent to BMW, G.E. research, and Volkswagen.

frequent use of useful quantum computing may be years away, however the leading edge is pushing frequently ahead. listed here are bullets for 5 contemporary quantum bulletins with a little more tips on a couple of them under:

  • IBM keeps chipping away at obstacles stalling real-world use of the present crop of noisy intermediate scale quantum computer systems. Its paper (Error mitigation extends the computational attain of a loud quantum processor) claims the protocol IBM developed “will permit giant improvements in the capabilities of near-time period quantum computing hardware.” during this illustration two or extra wrongs can aid equal a right. greater beneath.
  • IonQ edges into early benchmark skirmishes. In its paper (Benchmarking an eleven-qubit quantum computer) the enterprise says its ion entice-based device completed, “regular single-qubit gate fidelities of 99.5%, [and] typical two-qubit-gate fidelities of ninety seven.5%.” IonQ contends the algorithms it used “function stunning benchmarks for any class of quantum hardware.” recall that IBM touted Quantum extent as its appreciated metric of choice just three weeks ago.
  • Microsoft, PNNL, and UWashington be part of Forces. ultimate week, this trio introduced formation of the Northwest Quantum Nexus, “a coalition of research and industrial businesses within the Pacific Northwest and neighboring regions with the purpose of advancing Quantum assistance Sciences (QIS) analysis and establishing a QIS-knowledgeable personnel.”
  • D-Wave systems studies “33 new countries includ[ing] all 28 member states of the eu Union, Japan, Iceland, Liechtenstein, Norway, and Switzerland” now have entry to bounce, which D-Wave characterizes as “the only cloud-primarily based provider to supply real-time access to a live quantum laptop, in addition to open-source development tools, interactive demos, tutorial substances.”
  • authorised requirements Committee X9, long-time tracker and necessities association for the economic industry, issued two experiences, a white paper (X9 document Quantum Computing hazards to the financial features business) analyzing risks posed by using QC and a technical document (X9 Technical report TR-50 – Quantum innovations in Cryptographic Message Syntax).
  • IonQ expenses into Quantum Race

    Let’s start with IonQ, perhaps lesser common than quantum efforts through IBM, Microsoft, and D-Wave. It turned into situated in 2016 with the aid of a pair of uncommon quantum computing researchers – Chris Monroe (university of Maryland and Joint Quantum Institute) and Jungsang Kim (Duke school) – to take ion lure quantum computing from the lab to market. Monroe (CEO) and Kim (CSO) are leveraging know-how they helped developed and have licensed from UM and Duke.

    Most of us are greater universal with semiconductor-based mostly quantum computing know-how which dominates the quantum computing panorama. Ion lure know-how has also been around for a very long time and NIST (countrywide Institute of standards and technology) has long experimented with it, not least to be used in atomic clocks. The ion traps used in quantum computing aren't so diverse from the ion traps used in spectrometry. generally, the know-how comprises trapping ions in an electromagnetic box and the usage of them as qubits. whereas “gate switching” times are slower than semiconductor procedures, memory instances are advanced the use of ions traps.

    right here’s a little bit more on how the IonQ device works: “Our qubit register is produced from a series of trapped 171Yb+ ions, spatially restrained near a microfabricated floor electrode trap. For this work, they load 13 ions, the core 11 of that are used as qubits. the two end ions permit for a more uniform spacing of the primary 11 ions. The ions are laser-cooled close to their motional floor state the usage of a combination of Doppler and resolved sideband cooling. They encode quantum suggestions into the hyperfine sublevels…originally of every computation, each and every qubit is initialized to |0⟩by way of optical pumping with excessive accuracy. After qubit operations (described beneath), they read out the state of all the qubits concurrently via directing laser mild resonant with the 2S1/2 |F = 1⟩to 2P1/2 transition, imaging each and every ion onto a detector and thresholding the photon counts to verify if each and every qubit was within the |1⟩(spin up) or |0⟩(spin down) state.” (See determine on appropriate, click on to amplify.)

    Monroe commented in the announcement, “The real look at various of any computing device is what can it do in a real-world setting. They challenged their desktop with difficult versions of two universal algorithms that display the benefits of quantum computing over accepted contraptions. The IonQ quantum desktop proved it may handle them. purposeful benchmarks like these are what they deserve to see right through the industry.”

    here's excerpted from the abstract on the benchmark efficiency:

    “for instance the capabilities of this normal platform and provide a basis for comparison with in a similar way-sized devices, they assemble the Bernstein-Vazirani (BV) and Hidden Shift (HS) algorithms into their native gates and execute them on the hardware with normal success rates of seventy eight% and 35%, respectively. These algorithms function staggering benchmarks for any classification of quantum hardware, and demonstrate that their system outperforms all different currently attainable hardware.”

    The Bernstein-Vazirani and Hidden Shift algorithms used in this experiment teach a laptop to discover a hidden quantity out of a set of possible numbers. The business suggested, “IonQ has solved for all viable 1024 hidden numbers with their eleven-qubit machine, a extra difficult project than has been attempted before on a quantum laptop. each and every verify is based on a formula that a traditional computing device can best clear up via brute drive…Quantum computer systems, in thought, can locate these solutions in a single calculation by measuring all possible outputs simultaneously.”

    It may be enjoyable to monitor how ion trap quantum computing advances. closing August, NSF launched an formidable software, utility tailor-made architecture for Quantum Design (STAQ), whose purpose is to construct a 64-bit ion trap QC and linked software stack in a position to tackling issues classical computer systems combat with. (For extra suggestions see HPCwire article, STAQ(ing) the Quantum Computing Deck)

    IBM – Two Wrongs Make a right…kind of

    IBM’s fresh work tackles probably the most thorniest issues in quantum computing, error correction, or during this case error mitigation. IBM has come up with a workaround that indicates promise and is introduced in a paper posted nowadays in Nature (Error mitigation extends the computational reach of a noisy quantum processor) and discussed in an IBM blog by Jay Gambetta, IBM Fellow, and Abhinav Kandala, analysis group of workers member, who describe the difficulty very well.

    “Even at the extreme cold temperatures of a dilution fridge the place the quantum processors operate, their actual computing features, superconducting qubits, have coherence instances on the order of a few hundred microseconds at top-quality, which units the timescales over which quantum guidance is lost,” they write. “whereas a big problem to advancing quantum computer systems nowadays comprises increasing these qubit coherence instances, the conclusion intention is to construct a totally fault tolerant quantum laptop able to detecting and correcting blunders. although, these architectures are seemingly a couple of years away.”

    IBM takes a perhaps counterintuitive approach through which two incorrect answers – really many incorrect answers – can act as a book to the appropriate reply. “We display that repeating the computation at various levels of noise lets us estimate what the quantum computer would calculate within the absence of noise. To do this contains just a little of a “stretch” – the microwave pulses used to perform quantum operations on the qubits are stretched in time to be able to controllably expand the noise. The error mitigation technique dubbed “zero-noise extrapolation”, is simply purchasable for latest quantum computers in view that it doesn’t require any additional hardware adjustments,” write Gambetta and Kandala. (See figure from IBM paper under, click to amplify.)

    The strategy, say IBM researchers, may additionally enable tackling longer greater complicated complications in addition to being a generic aim technique.

    “Computations on noisy quantum hardware are limited by means of the competition between decoherence and circuit depth, a measure of the number of sequential operations performed on the processor. expanding circuit depth can help create more complex quantum states, and within the context of chemistry simulation, this may also enable for a higher illustration of the power states of the molecules considered. besides the fact that children, increasing circuit depth on a loud quantum computer customarily implies expanded blunders from decoherence. [W]ith the approach developed during this work, their ability to mitigate the impact of decoherence makes it possible for us to access extra complicated and accurate computations that benefit from expanded circuit depth.”

    while the new protocol enabled computational accuracies that have been otherwise inaccessible to the hardware, the authors warning that it's essential to admire that the advancements don't seem to be indefinite and are ultimately restrained by means of the coherence properties of the processor. “As they march against methods with expanding Quantum quantity, more desirable coherence, quantum control, and circuit compilation will all make contributions to extending the attain to even longer quantum circuits with extra qubits,” they write.

    D-Wave: It’s All about the functions

    D-Wave continues to be the only provider of commercially purchasable quantum computer systems although they continue to be research (now not production) machines. Its know-how – adiabatic annealing – is somewhat diverse from common gate-based mostly fashions. That talked about most QC watchers now agree D-wave’s approach is a solid contender for solving courses of optimization problems. recently, the enterprise unveiled an 18-month roadmap that includes making a 5000-qubit system (see HPCwire article, D-Wave Previews subsequent-Gen Platform; Debuts Pegasus Topology; aims 5000 Qubits).

    The emphasis at this week’s D-Wave’s consumer meeting is on showcasing development in opposition t real-world applications. D-Wave says “customers have built over a hundred and fifty early functions on D-Wave computers up to now” and lists right here highlight issues from the convention:

  • Quantum computing algorithms for optimized planning and scheduling
  • building a hybrid algorithm that should be used as part of a sensible mobility solution
  • Inferring correlation between future stock returns and their aspects
  • applications of quantum annealing for blockchain and allocation of tv 
classified ads
  • Quantum annealing–based optimizations of robotic circulation in manufacturing
  • Optimizing flight gate assignment
  • Capacitated automobile routing
  • Quantum chemistry calculations
  • Quantitative economic reverse stress checking out
  • “The future of useful quantum computing relies on giving extra builders and researchers the access and equipment they should construct quantum functions. increasing leap globally and bringing shoppers from all over the world together to share their work is significantly crucial to realizing that imaginative and prescient,” talked about Vern Brownell, CEO of D-Wave in the legit announcement. “I’ve on no account been extra confident that genuine functional quantum applications are within reach in the close future. The range and robustness of early purposes from their purchasers continues to develop, and shoppers are beginning to see early price in the usage of quantum computing to address actual-world business issues.”

    Northwest Quantum Nexus units Aggressive Agenda

    surely these are early days but the newly-introduced Northwest Quantum Nexus is at once relocating to set up directions. At a two-day summit closing week asserting NQN, the community issued the following observation:

    “in accordance with the goals of the national Quantum Initiative Act, the Northwest Quantum Nexus speeds up Quantum assistance Science (QIS) to boost a quantum economic system and workforce in the more advantageous Pacific Northwest vicinity of the U.S. and Canada. The excessive awareness of quantum endeavor in the Northwest makes it one of the crucial desirable areas globally to address key QIS needs. The intention of the two-day Summit this week is to compile the place’s experts who can define the location’s capabilities to force quantum computing’s future.

    Its goals encompass:

  • Bringing collectively academia, executive, startups, and business to pursue multi-disciplinary QIS analysis to convey scalable quantum computing.
  • Pursuing quantum computing by means of collaborative research and development, centered quantum algorithms and programming, and the construction of quantum materials.
  • Capitalizing on public-inner most partnerships to promote a swift trade of skills and components and power discoveries in quantum applied sciences.
  • applying research outcomes to application areas and testbeds, including clean energy and sustainability.
  • Cultivating the future quantum team of workers via programs that latitude from early to better training and knowledgeable ranges, as well as the corresponding community of associations and outlets providing curriculum and working towards opportunities.”
  • Todd Holmdahl, company VP of Microsoft Quantum, stated “The Northwest Quantum Nexus represents another massive step towards the construction of scalable, solid quantum computer systems. The partnership simply makes lots of experience – we’re already one of the properly areas in the world for quantum research, and the Nexus will help us leverage that talents to construct a quantum-able team of workers and boost the place and nation’s quantum ecosystem.”

    characteristic illustration caption: Single qubit trajectories measured at distinctive noise ranges (crimson, green) are used to estimate the error-mitigated trajectory (blue). supply: IBM

    link to IonQ paper: https://arxiv.org/pdf/1903.08181.pdf

    link to IonQ announcement: https://ionq.co/news/march-21-2019-new-benchmarks

    hyperlink to IBM paper: https://www.nature.com/articles/s41586-019-1040-7

    link to IBM weblog: https://www.ibm.com/blogs/research/2019/03/noise-amplification-quantum-processors

    hyperlink to D-Wave announcements: https://www.dwavesys.com/press-releases/d-wave-expands-jump-quantum-cloud-provider-and-software-environment-europe-and

    link to X9: https://x9.org


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    Timeline: JSF's first 24 months | killexams.com real questions and Pass4sure dumps

    October 2001

    Lockheed Martin team announced as winner of JSF competition 26 October. Receives $18.9 million contract for 126-month system development and demonstration phase. Company says its own firms in central Florida can anticipate work of up to $1 billion on JSF.

    Pentagon begins studies into potential speeding up of JSF service entry to 2008.

    UK announces it will make a decision in 2002 on which JSF variant it will acquire.

    Australia writes to US Department of Defense seeking briefings on JSF participation.

    November 2001

    Boeing acknowledges a direct-lift short take-off and landing system (STOVL) was its core bid weakness. Steps up lobbying for workshare split on JSF programme. Also seeks acceleration of F/A-18E/F procurement by the US Navy.

    JSF programme office confirms it is seeking international investment worth $4 billion.

    Australia issues restricted request for technical data and open market survey for the Royal Australian Air Force's Air 6000 replacement fighter programmes.

    December 2001

    Kaiser Aerospace selected to provide main projection display for F-35 cockpit and, in partnership with Elbit, helmet-mounted display.

    P&W announces plans to widen participation in F135 engine programme, targeting Italy and the Netherlands.

    January 2002

    Lockheed tells Boeing it will not be offered substantial workshare on JSF.

    Lockheed Missiles and Fire Control receives subcontract from BAE Systems to develop JSF electro-optic targeting system.

    Dutch government meets to consider membership of JSF and replacement fighter options for Royal Netherlands Air Force.

    Senior Australian military officials visit JSF programme office in the USA to be briefed on JSF membership options.

    February 2002

    Dutch prime minister Wim Kok says his cabinet has approved JSF partner membership, but parliamentary approval still required. Also says JSF is front runner for RNLAF's next fighter.

    Canada signs as Level 3 partner, with investment totalling $160 million.

    The Australian government says it will decide on JSF membership in April. Restricted request for technical data and open market survey for RAAF's Air 6000 requirement close.

    Northrop Grumman confirms talks are under way with Raytheon on workshare for the JSF AESA radar.

    EDS announces sales of Teamcentre software to Lockheed and Northrop to support establishment of global JSF virtual enterprise architecture.

    SM&A selected to provide engineering, logistics and programme development services to JSF consortium.

    JSF programme manager Tom Burbage wins Flight International's Aerospace Industry Personality of the Year award.

    March 2002

    US Navy confirms review of total numbers of JSFs to be acquired by Navy and Marine Corps under way. The Pentagon says impact on total orders will be minimal before 2012.

    Israel announces it will join programme as Level 3 partner.

    Turkey announces intention to join as Level 3 partner rather than Level 2 as originally planned.

    Stork Aerospace contracted by Lockheed Martin to carry out initial development of JSF external doors and wiring harness.

    Nederlands Centrum voor Laser Research contracted by Pratt & Whitney to drill holes for the F135 engine.

    Dassault and IBM selected by Lockheed to supply computer-aided design and manufacturing software for JSF virtual development environment.

    GKN Aerospace and BAE Systems announce partnership for design and production of JSF airframe components.

    Lockheed Martin appoints Mike Cosentino as director of JSF international programmes.

    April 2002

    Electronic-attack JSF variant offered by Lockheed Martin as a potential Northrop Grumman EA-6 replacement.

    H M Dunn, Progressive and Thayer Aerospace selected by Lockheed Martin to machine aluminium airframe componentsfor JSF.

    Avionics Specialities selected by Lockheed Martin to provide JSF air data system.

    BAE Systems Avionics selected by Lockheed Martin to provide active Inceptor subsystem (pilot side stick and throttle controls) for JSF.

    Lockheed Martin-led industrial team visits Australia to promote programme membership. Australian government defers decision on JSF membership until June, amid cost concerns.

    Dutch government delays formalising JSF programme membership until June to allow for new ratification vote in Dutch parliament after initial vote is tied.

    May 2002

    Denmark signs as Level 3 system development and demonstration (SDD) member, with investment worth $125 million.

    Italian government announces it will join as Level 2 SDD member. Parliamentary approvals are in place by end of month.

    Lockheed-led JSF industrial team visits Australia to brief on programme opportunities. Senior RAAF programme officials tell UK air power conference that no source selection will be made on a replacement fighter until 2006. Senior Australian military officials visit JSF programme office to receive classified brief on programme participation and JSF capabilities.

    USN announces it intends to reduce its JSF order by 400 aircraft from an original base of 1,089. US Air Force says it would reconsider size of its orders if the USN reduction leads to programme cost increases.

    USMC says it wants the JSF STOVL version to enter service earlier than scheduled.

    Telelogic confirms its Doors requirements management software is being used by Pentagon JSF programme office.

    Dynamics Research contracted by Pentagon JSF programme office to supply modelling and simulation services.

    Merant selected by Lockheed Martin to configuration manage JSF software development.

    Precision Castparts selected by Lockheed Martin to supply titanium aircraft forgings for JSF.

    Goodrich receives subcontract from Rolls- Royce to supply lift-fan anti-icing system for JSF STOVL variant.

    Tyco Electronics receives subcontract from Smiths Aerospace to supply JSF high-power electronic distribution units.

    June 2002

    Dutch parliament approves JSF membership. The Netherlands signs as a Level 2 SDD member, with total investment worth $800 million. Flags expectation of work to value of $250 million. Dutch government and industry representatives visit Lockheed Martin JSF programme headquarters at Fort Worth, Texas.

    Italy joins as Level 2 partner, with investment of $1 billion

    Lockheed Martin announces Alenia Aeronautica will be secondary source for JSF wingbox assembly, with Italian production line for full aircraft also possible.

    FiatAvio joins F136 engine development team.

    MBDA announces completion of pre-feasibility integration studies for AIM-139 ASRAAM on to JSF.

    JSF external design frozen on 27 June. Forward fuselage extended by 127mm (5in). Position of vertical tails modified. Bomb-bay size reduced on STOVL version, and lift-fan bay doors redesigned. STOVL F135 engine to have reduced-length aft nozzle, and hollow lift-fan blades to be introduced.

    JSF programme office says it wants F136 engine available from 2009.

    US assistant defence secretary Peter Aldridge announces discussions are under way with Israel and Singapore on alternative forms of programme membership.

    Centric Software receives order from Lockheed Martin for software design toolsets for JSF avionics display development.

    Silicon Graphics receives contract from Lockheed Martin to provide visualisation computers and software for JSF flight simulation laboratory at Fort Worth.

    Norway signs for SDD phase as Level 3 partner, contributing $125 million.

    Australian Defence Industry Council warns the Australian Department of Defence that early downselect of any new fighter type would have adverse impact on the national defence industry.

    Eurofighter offers Australia participation in Typhoon enhancement programme.

    Australia announces plans to join SDD phase. It simultaneously announces downselect of JSF as replacement for its Boeing F/A-18 and General Dynamics F-111 fighter fleets.

    July 2002

    Eurofighter consortium announces plans for restructuring of programme to improve its ability to market Typhoon internationally.

    Lockheed Skunk Works reveals studies are under way for JSF microwave weapons.

    Lockheed Martin says numbers of JSF bought by the USA are likely to fluctuate further, but will not affect overall programme outcomes.

    General Electric and R-R reveal plans for an international F136 joint venture company.

    Northrop Grumman announces JSF centre fuselage will be assembled at Palmdale, California.

    JSF programme head Gen John Hudson says project is "truly a marriage between governments and industry". Confirms plans for creation of a security co-operation participation level to enable Israeli and Singaporean access to the programme.

    Turkey formally joins programme as Level 3 partner, with investment of $175 million.

    BAE Systems announces plans for £40 million investment in new JSF facilities in the UK.

    The UK Ministry of Defence's investment approvals board meets to select a JSF version for future aircraft carrier, but is unable to make a decision.

    Australian defence minister Robert Hill confirms interim fighter may be required by RAAF before JSF introduction.

    August 2002

    Lockheed Martin JSF team stages a series of technical briefings in Australia to support Australia's decision to join the programme.

    TRW Aeronautical Systems (now Goodrich) selected by Northrop Grumman to supply weapons bay door drive system.

    Astronics selected by Lockheed Martin to supply JSF exterior lighting.

    Vought Aircraft Industries selected to supply JSF lower wing skins.

    BAE Systems Controls delivers vehicle management computer development processors. This marks the programme's first avionics system sub-component delivery.

    The UK MoD investment approvals board meets again to select a JSF version for future aircraft carrier.

    September 2002

    Lockheed Martin reveals RAAF is considering requesting development of surveillance and reconnaissance variant.

    The Australian defence minister defends JSF selection as the "most practical solution".

    Israel's defence ministry accuses European JSF partner nations of blocking its attempt to join the programme with partner status.

    General Dynamics selected to supply and integrate 27mm cannon for JSF.

    The UK government announces plans to buy up to 150 JSF STOVL variants for the UK Royal Navy rather than the CV variant. Deal to be worth £10 billion.

    October 2002

    American Institute of Aeronautics and Astronautics honours eight Lockheed Martin engineers for their contribution to JSF design.

    JSF programme completes first year of SDD phase. Tom Burbage says the programme is on schedule and slightly under budget.

    Israel makes last-ditch bid to join the programme with full partner status.

    Norwegian-based Volvo Aero Norge awarded subcontract by P&W to provide low-pressure turbine shafts for F135 engine.

    Lockheed Martin says business model for logistics support between partners will be completed within 12 months. It unveils planning for "follow- the-sun" design and software engineering.

    Lockheed Martin acknowledges likely requirement for integration of IRIS-T missile into JSF for Canadian, Italian and Norwegian partners.

    GE approved by JSF programme office to begin F136 development, but a plan for a joint venture between GE and R-R rejected.

    Three-Five Systems awarded subcontract by Kaiser Electronics to provide micro display systems for JSF panoramic display.

    Moog-Parker Hannifin partnership is awarded contract by Lockheed Martin to supply primary electro-hydrostatic actuator systems for wing and tail control surfaces.

    Qinetiq software selected for JSF STOVL variant flight control system.

    Australia formally signs up as Level 3 programme member, with an investment of $150 million. Nineteen Australia firms receive letters of intent (LoI), enabling them to bid for work packages on programme.

    November 2002

    JSF preliminary design review begins at component system level, targeting completion of full review by March 2003.

    Number of LoIs released by Lockheed Martin to companies in partner nations reaches 120 (Australia - 19, Canada - 10, Italy - 27, the Netherlands - 16, Norway - 21, Turkey - 7 and the UK - 20).

    December 2002

    US assistant defence secretary for acquisition Pete Aldridge says JSF exports are likely to be 1,000-3,000 up to 2020, and have an impact on the market for the Eurofighter Typhoon.

    Silicon Graphics receives a further contract from Lockheed Martin to provide visualisation computers and software for JSF flight simulation laboratory at Fort Worth, Texas.

    Dutch Prognostic Health Management Consortium contracted by Lockheed Martin to supply JSF PHM suite.

    BAE Systems announces production is under way on aluminium components for JSF horizontal tail test article.

    January 2003

    Philips Aerospace awarded subcontract from R-R to supply fan cases for F136 engine.

    GE Aircraft Engines president David Calhoun says JSF role critical to company's long-term outlook.

    Lockheed Martin Information Systems releases V1 of autonomic logistics systems software.

    LM-STAR avionics test equipment installed at QM in the UK and Raytheon in the USA to support avionics systems development.

    Magellan Aerospace selected by R-R to develop liftfan sub-assemblies for JSF STOVL variant.

    Norwegian government expresses official concern about workshare opportunities in the JSF international programme, and rejoins Eurofighter industrial consortium.

    February 2003

    USN and USMC JSF acquisition numbers cut from 1,089 to 680 by presidential budget request for fiscal year 2004.

    P&W complete Phase 1 risk-reduction tests on F135 engine.

    Eaton awarded subcontract by Goodrich to provide nose landing-gear steering motor assembly.

    Lockheed Martin says it will support Italy's bid for a second JSF production line if that nation can develop a sustainable business case.

    UK government commissions Rand to assess viability of JSF production line in the UK.

    The Australian defence minister says no decision on any interim fighter before JSF will be made for two years.

    Israel signs an LoI to join the JSF security co-operation participant programme. It commits to investment of around $150 million.

    Singapore also signs an LoI to join the JSF security co-operation participant programme. Invests around $50 million.

    March 2003

    Concerns emerge that Singapore's A-4SU replacement competition will be undermined by that nation joining JSF.

    Norway defence minister Kristin Krohn Devold criticises Kongsberg for pricing itself out of work on the JSF programme. He says Norwegian firms cannot expect offset-based work.

    Denmark, the Netherlands and Norway reveal plans to co-ordinate a campaign to win more JSF workshare.

    Flightstat Datalink becomes first foreign company to gain fast-track bid approvals under the global project authorisation.

    A draft Australian government aerospace sector blueprint calls for JSF programme to become model for future national exports drive.

    JSF preliminary design review held 24-27 March. Lockheed Martin acknowledges airframe is 30% above target weight and the need for modifications to weapons-bay size to meet ordnance requirements.

    F136 engine targeted by JSF project office for budget cuts.

    Lockheed Martin unveils revised liftfan door configuration for STOVL variant.

    Indigo Systems awarded subcontract by Northrop Grumman to supply infrared integrated detection assemblies for distributed aperture system.

    Lockheed Martin receives subcontract from Harris, itself a subcontractor to Lockheed Martin, to supply fibre-optic transceivers for JSF mission system.

    Lockheed Martin UK Integrated Systems selected to develop JSF programme intranet for European partners.

    April 2003

    Dassault president Charles Edelstenne describes the JSF partnership programme as "a stroke of genius".

    JSF programme office cuts $440 million from F136 engine programme.

    JSF programme office announces AIM-120A/B, AGM-65, AGM-84C/D and AGM-84H missiles will not be integrated into JSF.

    Lockheed announces outstanding weight issues still to be resolved after preliminary design review (PDR). JSF programme office says first flight in late 2005 is achievable if weight problems are solved.

    In response to questions from parliament about whether it can withdraw from the JSF programme, the Dutch government confirms it is seeking to have a European regional support centre established at Woensdrecht air base in the Netherlands to offset lack of SDD phase workshare. It reveals that external consultants have been appointed to study options.

    May 2003

    Ake Svensson, head of Saab Aerospace, says JSF partnering is mainly about subcontracting, and will not sustain Europe's aerospace industry.

    Sweeping "Buy American" legislation introduced into US Congress by Representative Duncan Hunter.

    Canadian firms Applied Courseware Technology and BNH Expert Software selected to provide software tools for development of the JSF training system.

    Canada's Magellan Aerospace selected to provide 24 wing structural components.

    BAE Systems Platform Solutions delivers first production vehicle management computer.

    Marconi Selenia Communications selected by Northrop Grumman to provide back-up radio system.

    June 2003

    GE, R-R and five of the eight JSF partner nations call for $442 million to be restored to F136 engine development.

    Congressional House Armed Services committee votes to restore $56 million to begin system design and development of F136 engine.

    JSF programme office reveals plans for new strategic best-value sourcing to ensure partner nations secure programme work. US DoD internal study finds some JSF partner nations, including Italy and the Netherlands, have been passive in seeking workshare.

    Lockheed Martin says the JSF programme is "extending technical frontiers and establishing new levels of international participation".

    Speaking at the Paris air show, Alenia Aeronautica chairman Giorgio Zappa says his firm is not happy with the rate of JSF workshare being awarded to Italian firms.

    Norway is offered additional JSF work under the strategic best-value initiative in response to a Eurofighter consortium offer of increased workshare.

    JSF airframe PDR segment is closed out three months late. Weight estimates reined in from 35% to 10% over target.

    Honeywell selected to provide ring laser-gyro inertial navigation system.

    Australian DoD partially releases JSF industrial engagement strategy. Value of Australian participation queried by opposition parliamentarians.

    GKN Aerospace Australia selected to design and manufacture centre fuselage components.

    TNO-FEL of the Netherlands is selected to develop signal conditioning algorithms for the JSF electro-optical distributed aperture system.

    July 2003

    The Australian defence minister voices concern that the JSF programme is not a level playing field.

    Hawker de Havilland of Australia selected to provide design engineering support services to Lockheed Martin Palmdale

    Italian undersecretary for industry Mario Valducci visits the USA, and requests establishment of a JSF offset package for Italian industry.

    A US General Accounting Office (GAO) report reveals Lockheed Martin has guaranteed work to an unnamed partner nation to ensure it remains in the programme. The GAO also warns that sensitive technology contracts should only be given to US firms.

    Lockheed Martin Tactical Systems hands over the first integrated core processors for JSF mission system.

    Quantum3D selected to supply image generators for use in JSF advanced concepts simulator system.

    Denmark's Terma teams up with General Dynamics to support design, test and production of the F-35 gun system pod.

    August 2003

    GE and R-R continue lobbying for F136 engine funding to be restored. Phase III critical design review of F136 engine is completed.

    Finmeccanica chief Roberto Testore says JSF is the key to future co-operation with the USA.

    Australian defence minister Hill announces BAE Systems Australia is to spearhead a national bid for regional JSF support centre. Head of Australian JSF project office says Australia hopes for more work through the strategic best-value programme.

    Ferra Engineering of Australia selected by US-based Marvin Engineering to make alternative mission equipment weapon adaptors.

    Calytrix of Australia selected by Lockheed Martin to head Australian industry capability team study of JSF training system simulation technologies

    Production Parts of Australia selected by GE to supply metal subcomponents for F136 engine.

    Marand Precision Engineering of Australia selected by Lockheed to design and build JSF engine removal cradles.

    September 2003

    GKN Aerospace selected to make carbonfibre engine vanes and air inlets for F135.

    Raytheon selected to make digital anti-jam GPS receiver.

    Vision Systems International awarded contract to develop advanced helmet-mounted display for JSF.

    BAE Systems Avionics selected to supply laser system for electro-optical targeting system.

    UK government releases Rand study that says JSF production line in the UK is feasible. The document also reveals quickmate jointing system for JSF major component assembly has been abandoned.

    BAE Systems opens major assembly production facility for JSF components at Samlesbury, UK.

    Lockheed Martin establishes JSF basic and ship suitability integration centre at Fort Worth, Texas.

    US Congress adds $52.8 million to F136 engine programme, but cuts the overall JSF budget by $56 million to $4.4 billion for FY2004.

    Dodd provision in Congressional approvals for US FY2004 defence budget mandates study by Pentagon into the impact of foreign offset requirements on the US defence industrial base. The White House confirms it is negotiating with Congressman Duncan Hunter on an acceptable form of Buy American legislation.

    The US Aerospace Industries Association and the US National Defence Industrial Association write to US Senate Armed Services Committee warn that Buy American provisions will drive up costs of US military hardware and increase time taken to deliver.

    Dutch firms ATS Kleizen and Stork Fokker secure contracts totalling $58 million. Thales Netherlands is nominated as preferred supplier for cryogenic coolers for JSF EOS systems. Burbage says further growth expected in Dutch workshare.

    Magellan Aerospace of Canada selected by GE and R-R to produce outer combustor case diffuser assembly for F136 engine.

    P&W announce completion of first development F135 engine for JSF.

    US president George Bush signs FY2004 defence appropriations. He provides $4.3 billion to continue JSF development.

    October 2003

    Ayesas of Turkey awarded subcontract by Smiths Aerospace to develop mechanical and circuit-card subassemblies for the JSF missile remote interface unit.

    Smiths Aerospace awarded contract by Lockheed Martin to supply JSF high-speed data cable assemblies.

    GE chief executive Jeff Immelt says Buy American law would cost jobs in the US aerospace industry. Congressional negotiators reach agreement to renew US Defence Production Act for one year to enable more debate on the impact of offsets on US industrial base.

    BEI Technologies receives subcontract from Northrop Grumman to build electro-optic components.


    St. Petersburg State University Wins Prestigious IBM-Sponsored "Battle of the Brains" | killexams.com real questions and Pass4sure dumps

    EKATERINBURG, Russia, June 25, 2014 /PRNewswire/ -- Three students from St. Petersburg State University have emerged as World Champions of the 38th Annual World Finals of the ACM International Collegiate Programming Contest (ICPC) sponsored by IBM (NYSE: IBM).  Headquartered at Baylor University and known as the Battle of the Brains, the world's oldest and most prestigious programming competition challenged 122 university teams to solve complex real-world problems under a strict five hour deadline. 

    Hosted by Ural Federal University, the event activities exposed students to key emerging industry trends, such as cognitive computing and IBM's Watson. One of the most significant innovations in IBM's history, Watson is revolutionary in its ability to interact in natural language, process vast and disparate forms of big data and learn from each interaction. Exploring Watson's capabilities was a unique opportunity for the contest participants.

    In a test of teamwork, speed and skill, the contest challenged students to solve the most computer programming problems in the least amount of time. Demonstrating the elite talent of its team members, St. Petersburg State University successfully solved seven problems in five hours. The World Champions return home with "The World's Smartest Trophy," as well as awards and offers of employment or internships with IBM and other leaders of the IT industry.

    "As a leading technology company, IBM recognizes the importance of providing opportunities for students from around the world to discover and embrace the latest technological innovations," said Alain Azagury, Director of IBM Software Group Technical Strategy, Member of IBM Academy of Technology and Sponsorship Executive of the ACM-ICPC. "The ACM-ICPC assembles the world's best computing students and challenges them with scenarios of real world issues. They believe these students are the future leaders of their field and are committed to nurturing their development as they conclude their studies and prepare to enter the global workforce. They hope some of these remarkable problem solvers will contribute to helping us build a smarter, more efficient planet."

    In addition to the contest, participants had the opportunity to explore some of the technologies made in IBM's Research and Development Labs and network with world-leading technology experts. The opportunity for students to discover Ekaterinburg, a vibrant city straddling the European and Asian continents, and interact with peers from around the world completed this once-in-a-lifetime experience. 

    "The ACM-ICPC is a wonderful opportunity for students from around the world to come together, collaborate, and exchange different views and experiences," said Dr. Bill Poucher, ICPC Executive Director and Baylor University Professor. "I am excited to see what these students will do with the mastery they've gained from this contest and from each other as they continue their academic and professional pursuits as ACM members." 

    A live broadcast of the contest, facilitated by SKB Kontur, aired on ICPCLive.com. 

    Moscow State University, Peking University and National Taiwan University finished the competition in second, third and fourth places, all earning the coveted gold medals. The regional champions are New York University (North America Region); St. Petersburg State University (Europe Region); Alexandria University – Faculty of Engineering (Africa and the Middle East Region); Instituto Militar de Engenharia (Latin America Region); Peking University (Asia Region); and University of New South Wales (South Pacific Region).

    This year's top twelve teams that received medals are:

  • St. Petersburg State University (Gold, World Champion)
  • Moscow State University (Gold, 2nd Place)
  • Peking University (Gold, 3rd Place)
  • National Taiwan University (Gold, 4th Place)
  • University of Warsaw (Silver, 5th Place)
  • Shanghai Jiao Tong University (Silver, 6th Place)
  • The University of Tokyo (Silver, 7th Place)
  • University of Zagreb (Silver, 8th Place)
  • St. Petersburg National Research University of IT, Mechanics and Optics (Bronze, 9th Place)
  • National Research University Higher School of Economics (Bronze, 10th Place)
  • Tsinghua University (Bronze, 11th Place)
  • Comenius University (Bronze, 12th Place)
  • The 122 teams that competed in the World Finals emerged from local and regional ICPC competitions held this past fall. Initially, selection took place from a field of more than 300,000 students in computing disciplines worldwide. A record number of students advanced to the regional level, as 32,043 contestants from 2,286 universities in 94 countries on six continents competed at more than 300 sites, all with the goal of earning one of the coveted 122 invitations to Russia.

    About the ACM-ICPC Headquartered at Baylor University, the ACM-ICPC is a global competition among the world's university students, nurturing new generations of talent in the science and art of information technology. For more information about the ACM-ICPC, including downloadable high resolution photographs and videos, the complete World Finals roster and final standings, visit ICPC headquarters and ICPCNews. Additional information can be found via the "Battle of the Brains" podcast series. For IBM's insights, visit the company's University Relations page. Follow the contest on Twitter @BrainBattleICPC and @ICPCNews, #ICPC2014. 

    About IBMIBM is the world's largest information technology and service provider. IBM invests in high business values and strategic markets such as big data analytics, cloud computing and cognitive computing. Made with IBM, these capabilities address the needs of clients and the society. IBM software engineers around the globe work to solve real-world business issues for clients in more than 170 countries. IBM provides industry solutions in areas such as health care, finance, smarter commerce, smarter cities, energy, utility, communications, public service, transportation, manufacturing, and many others.  For more information, visit www.ibm.com/software.

    About ACM ACM, the Association for Computing Machinery, is the world's largest educational and scientific computing society, uniting computing educators, researchers and professionals to inspire dialogue, share resources and address the field's challenges. ACM strengthens the computing profession's collective voice through strong leadership, promotion of the highest standards, and recognition of technical excellence. ACM supports the professional growth of its members by providing opportunities for life-long learning, career development, and professional networking.

    About Ural Federal University  Ural Federal University is one of the leading research institutions in Russia, focusing on economics, social sciences, humanities, natural sciences and mathematics. Since 2008 it bears the name of its former student, Boris Yeltsin, who in 1991 was elected the first president of the Russian Federation. The university has 18 departments which offer over 120 bachelor's and 80 master's programs. The university's enrollment is over 45,000 students, including more than 6,000 students studying information technologies and computer science. As the host of the 2014 ACM-ICPC World Finals, Ural Federal University becomes the second Russian university to host the contest, following St. Petersburg National Research University of Information Technologies, Mechanics and Optics (ITMO), the 2013 host.

    About SKB Kontur SKB Kontur is one of the largest software developers in Russia. The company is a well-known leader in the sphere of software for EDI, technologies for accounting and business administration automation. Founded more than a quarter of a century ago, SKB Kontur continues to grow dynamically. High growth rates are based on innovations developed through its large R&D department. The company's new products are differentiated by original and simple solutions that use unique technologies. Of particular note, 13 ACM-ICPC Ural finalists work at SKB Kontur.

    Media Contact:  Rebecca Masterbone  For the International Collegiate Programming Contest (ICPC) Tierney  (215) 790-4385rmasterbone@tierneyagency.com 

    SOURCE ICPC



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