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IBM and Oracle (ORCL) Work to Bring watsonx AI Tools to Oracle Cloud Infrastructure

IBM and Oracle (ORCL) Work to Bring watsonx AI Tools to Oracle Cloud Infrastructure

Tech company IBM (IBM) is working with Oracle (ORCL) to bring its watsonx AI tools to Oracle Cloud Infrastructure (OCI). This move strengthens their long-standing partnership and aims to improve how businesses use AI across their entire operations. Starting in July, IBM's watsonx Orchestrate AI agents will be available on OCI. These agents are designed to help businesses manage complex workflows that involve both Oracle and non-Oracle apps and data sources by making everything work together more smoothly.
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The AI agents from IBM will work with Oracle's existing AI tools, like the Oracle AI Agent Studio and OCI Generative AI Agents. This expands what companies can do with Oracle Fusion Applications by adding more ways to use AI in different apps and systems. The first tasks these AI agents will focus on are in human resources. The agents will run on OCI using Red Hat OpenShift and will be available in public, government, sovereign, and Oracle Alloy cloud regions. They can also run on-premises or in other cloud setups to meet privacy and regulatory needs.
Oracle also plans to offer IBM's Granite AI models through OCI Data Science later this year. These open-source models will be easier to access through OCI's AI Quick Actions and will be available as cached models. Additionally, IBM will launch its Envizi ESG Suite—a tool for tracking environmental and social data—on OCI in Saudi Arabia within the next 12 months. As a result, IBM's watsonx.ai is now certified to run on OCI, which gives businesses a reliable platform to build, run, and manage AI apps using tools, APIs, models, and runtimes.
What Is the Target Price for IBM?
Turning to Wall Street, analysts have a Moderate Buy consensus rating on IBM stock based on eight Buys, five Holds, and two Sells assigned in the past three months, as indicated by the graphic below. Furthermore, the average IBM price target of $260.62 per share implies 2.9% downside risk.
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Global Quantum Computing in Energy and Utility Market Size/Share Worth USD 23.72 Billion by 2034 at 4.40% CAGR: Custom Market Insights (Analysis, Outlook, Leaders, Report, Trends, Forecast, Segmentation, Growth Rate, Value, SWOT Analysis)
Global Quantum Computing in Energy and Utility Market Size/Share Worth USD 23.72 Billion by 2034 at 4.40% CAGR: Custom Market Insights (Analysis, Outlook, Leaders, Report, Trends, Forecast, Segmentation, Growth Rate, Value, SWOT Analysis)

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Global Quantum Computing in Energy and Utility Market Size/Share Worth USD 23.72 Billion by 2034 at 4.40% CAGR: Custom Market Insights (Analysis, Outlook, Leaders, Report, Trends, Forecast, Segmentation, Growth Rate, Value, SWOT Analysis)

[220+ Pages Latest Report] According to a market research study published by Custom Market Insights, the demand analysis of Global Quantum Computing in Energy and Utility Market size & share revenue was valued at approximately USD 15.42 Billion in 2024 and is expected to reach USD 16.10 Billion in 2025 and is expected to reach around USD 23.72 Billion by 2034, at a CAGR of 4.40% between 2025 and 2034. The key market players listed in the report with their sales, revenues and strategies are IBM, Google, Microsoft, Rigetti Computing, D-Wave Systems, Honeywell Quantum Solutions, Intel, IonQ, Xanadu Quantum Technologies, Alibaba Quantum Laboratory, Cambridge Quantum Computing, Zapata Computing, Quantum Circuits Inc., Toshiba Corporation, Fujitsu, Accenture, AWS (Amazon Web Services) Quantum Computing, Microsoft Azure Quantum, Baidu Quantum Computing, QCI (Quantum Computing Inc.) and others. Austin, TX, USA, July 03, 2025 (GLOBE NEWSWIRE) -- Custom Market Insights has published a new research report titled 'Quantum Computing in Energy and Utility Market Size, Trends and Insights By Technology (Quantum Hardware, Quantum Software, Quantum Services), By Application (Grid Optimization, Energy Storage Systems, Renewable Energy Forecasting, Predictive Maintenance, Supply Chain Optimization), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025–2034' in its research database. 'According to the latest research study, the demand of global Quantum Computing in Energy and Utility Market size & share was valued at approximately USD 15.42 Billion in 2024 and is expected to reach USD 16.10 Billion in 2025 and is expected to reach a value of around USD 23.72 Billion by 2034, at a compound annual growth rate (CAGR) of about 4.40% during the forecast period 2025 to 2034.' Click Here to Access a Free Sample Report of the Global Quantum Computing in Energy and Utility Market @ Overview As per the industry experts at CMI, the main positioning factor for quantum computing applications in the energy and utilities industry is the increase in efficiency to operate complex and data-rich processes. As renewable energy sources continue to grow, quantum computing is allowing for better utility forecasting and optimization of renewable energy, such as wind and solar. These capabilities can also improve responsiveness in grid management, predictive maintenance, and energy storage systems. Convenience and allowing utility companies to solve complex optimization problems faster than they could do with classical computing ensures more reliable and cost-effective solutions and ultimately will lead to more widespread adoption of quantum technologies in the energy sector. Key Trends & Drivers Better Energy Efficiency: Quantum computing can process large datasets considerably faster than classical computers. This enables significant improvements in predictions and optimizations for energy systems, which improves energy distribution, grids, and storage and increases energy efficiency. Quantum algorithms can quickly identify consumptive behavior patterns or consumption to optimize resources and reduce waste, which is a growing need, particularly in renewable energy management. Aside from the energy efficiency impact, it is one of the main systems driving quantum computing in energy and utilities. Better Inclusion of Alternative Energy Sources: The growing demand for renewable energy generation requires systems at times that require optimization, from solar, wind, hydroelectricity, etc. Quantum computing optimizes how we forecast the next day's and next hour's weather and provides more accurate renewable energy production models. Quantum computing improves the incorporation of renewable energy into existing grids and helps improve the balancing of supply and demand, and in doing so, reduces the need for non-renewable resources. The emphasis on cleaner energy systems and climate sustainability will significantly influence the adoption of quantum computing in the energy and utilities sector. Cost Optimization and Reduction: Energy systems are complex, including grid systems, generation production, and regulations to consider. Energy systems require constantly optimized integrations of a vast number of systems to reduce costs and ultimately help provide better services to consumers. In theory, quantum computing should help accomplish large-scale optimization processes to improve energy systems across the electricity supply chain in the future. Request a Customized Copy of the Quantum Computing in Energy and Utility Market Report @ Enhanced Decision-Making and Predictive Analytics: Quantum computing can help to improve predictive analytics by allowing users to analyze vast amounts of data quickly and with the highest degree of accuracy. The energy and utility sectors can leverage quantum predictive analytics to more accurately forecast energy demands, grid stability, and maintenance. Quantum algorithms are also capable of forecasting potential system failures or energy shortages before they happen, allowing them to remedy inefficiencies proactively and mitigate unexpected inhibitors to energy availability. The real-time analytics of quantum computing provide energy and utility operators with increased operational efficiencies, which is essential to the maintenance of reliability in the energy supply chain. Support for Smart Grid and IoT Integration: The transition to smart grids, in combination with the increased utility of the Internet of Things (IoT) with energy systems, is creating a powerful need for advanced computational solutions. Quantum computing can facilitate the computational power needed to assist in the integration of IoT devices by analyzing real-time and near-real-time data produced by the IoT devices. Quantum computing can help utilities optimize data from IoT devices to make smart grids responsive and adaptive to even further changing energy demands. As utilities continue to modernize their assets and infrastructure, quantum computing assists with the coordinated operation and scalability of smart grids and IoT systems. Report Scope Feature of the Report Details Market Size in 2025 USD 16.10 Billion Projected Market Size in 2034 USD 23.72 Billion Market Size in 2024 USD 15.42 Billion CAGR Growth Rate 4.40% CAGR Base Year 2024 Forecast Period 2025-2034 Key Segment By Technology, Application and Region Report Coverage Revenue Estimation and Forecast, Company Profile, Competitive Landscape, Growth Factors and Recent Trends Regional Scope North America, Europe, Asia Pacific, Middle East & Africa, and South & Central America Buying Options Request tailored purchasing options to fulfil your requirements for research. (A free sample of the Quantum Computing in Energy and Utility report is available upon request; please contact us for more information.) Our Free Sample Report Consists of the following: Introduction, Overview, and in-depth industry analysis are all included in the 2024 updated report. The COVID-19 Pandemic Outbreak Impact Analysis is included in the package. About 220+ Pages Research Report (Including Recent Research) Provide detailed chapter-by-chapter guidance on the Request. Updated Regional Analysis with a Graphical Representation of Size, Share, and Trends for the Year 2025 Includes Tables and figures have been updated. The most recent version of the report includes the Top Market Players, their Business Strategies, Sales Volume, and Revenue Analysis Custom Market Insights (CMI) research methodology (Please note that the sample of the Quantum Computing in Energy and Utility report has been modified to include the COVID-19 impact study prior to delivery.) Request a Customized Copy of the Quantum Computing in Energy and Utility Market Report @ SWOT Analysis Strengths: Quantum computing allows for an unprecedented level of computational ability, providing energy and utility companies with rapid solutions to complex optimization problems. With its unique ability to analyze large sets of data simultaneously, quantum computing has the potential to improve grid management, predictive maintenance, and energy efficiency. Furthermore, quantum computing's abilities would enable energy companies to facilitate renewable energy sources to be integrated into the energy grid, optimize energy storage capabilities, and reduce operational costs. No other technology has the same ability to support the implementation of sustainability programs. These strengths are unique to quantum computing and are why it's a very promising technology for the energy sector; it will help companies operate more efficiently and sustainably and help provide a competitive advantage. Weaknesses: Quantum computing still has many challenges to overcome within the energy and utility sectors. While quantum computing has much potential, it is still in its early stages for the energy sector and has little in the way of actual, realizable applications that can be scaled. Quantum hardware is also very expensive to build and operate, which will deter some companies from pursuing the technology. The skilled labor shortage is about to emerge with quantum computing; it's very difficult to find a quantum physicist who also understands the application of quantum algorithms to energy and utility optimization. In other words, for energy to realize the value of quantum computing, there are still significant hurdles to overcome. Opportunities: With the rise of renewable energy, the need for more intelligent, more efficient energy systems presents major opportunities for quantum computing. The technology can provide the needed solutions for energy forecasting, optimization of the grid system, and energy storage, helping to leverage a transformation away from carbon-based energy sources. In addition, as it matures, the demand for quantum-based solutions in areas such as smart grids, energy storage, and predictive maintenance will increase, allowing firms to invest in an emerging and rapidly changing market where they can differentiate themselves with cutting-edge technology. Threats: Quantum computing certainly faces threats in the energy space, mainly because of competition with different classical computing technologies. Classical supercomputing continues to improve its performance in specific energy applications, and in some circumstances, it may provide similar or equivalent levels of performance to quantum in a short-term perspective. Furthermore, regulatory issues and the costs of implementing quantum computing systems can delay or limit the adoption possibilities. Despite the potential benefits, complex and variable information surrounding critical reasons to adopt products and services based on quantum technologies can deter investor confidence, leading to delayed adoptions from the utility and energy sector. Request a Customized Copy of the Quantum Computing in Energy and Utility Market Report @ Key questions answered in this report: What is the size of the Quantum Computing in Energy and Utility market and what is its expected growth rate? What are the primary driving factors that push the Quantum Computing in Energy and Utility market forward? What are the Quantum Computing in Energy and Utility Industry's top companies? What are the different categories that the Quantum Computing in Energy and Utility Market caters to? What will be the fastest-growing segment or region? In the value chain, what role do essential players play? What is the procedure for getting a free copy of the Quantum Computing in Energy and Utility market sample report and company profiles? Key Offerings: Market Share, Size & Forecast by Revenue | 2025−2034 Market Dynamics – Growth Drivers, Restraints, Investment Opportunities, and Leading Trends Market Segmentation – A detailed analysis by Types of Services, by End-User Services, and by regions Competitive Landscape – Top Key Vendors and Other Prominent Vendors Buy this Premium Quantum Computing in Energy and Utility Research Report | Fast Delivery Available - [220+ Pages] @ Regional Analysis The Quantum computing in energy and utility market is segmented into various regions, including North America, Europe, Asia-Pacific, and LAMEA. Here is a brief overview of each region: North America: North America is at the forefront of the quantum computing market, receiving extensive investment from the U.S. and Canada. Innovative energy ideas and a commitment to sustainability are even greater drivers for the adoption of quantum technology within the energy industry. Furthermore, major players such as IBM, Google, and Microsoft have established robust footprints in the region by providing quantum hardware, software, and services. The U.S. Federal Government recently launched the National Quantum Initiative, which promotes investments in research into quantum technologies, among many others, which is already driving additional developments and investments into the sector. With a mature infrastructure, substantial technology ecosystem, and investment from government agencies, North America is poised to continue developing quantum solutions to optimize and manage energy consumption. Europe: Meanwhile, Europe is ramping up their investment in quantum computing, and several countries are driving innovation in this space in the energy sector across the continent. The European Union has funded the Quantum Flagship initiative, which provides a platform for deploying systematic initiatives to accelerate quantum research and development. Countries such as Germany, France, and the UK, among others, are currently funding projects to integrate quantum computing within grid optimization, renewable energy forecasting, and energy storage solutions. Given that the European Union has these green energy as sustainability goals, most of which involve reducing energy consumption while increasing the use of renewable energy sources, advances in quantum computing are positioning themselves at a timely time to help the government and private sector achieve these ambitious goals. Asia-Pacific: This region of the world appears to be rapidly growing for quantum computing with the likes of China, Japan, and India at the forefront of developments in quantum technology. China's investment in quantum research and technology means that they are a major player in the sector, and the energy sector is no exception. Likewise, Japan and India are hoping to understand how quantum computing can aid in optimizing energy management and supporting the integration of renewables. Asia-Pacific is likely to be a strong market for quantum computing in energy as demand for sustainable energy practices increases and both the public and private sectors invest in quantum technologies. LAMEA: Latin America, the Middle East, and Africa (LAMEA) may be considered emerging markets for quantum computing, with the technology being increasingly considered for projects relating to the energy sector. In Latin America, some countries, such as Brazil and Mexico, are investigating quantum-based solutions for energy efficiency, integrating renewables, and managing a smart grid. The Middle East continues to make substantial investments in smart grid technology. In Africa, while challenges remain, particularly regarding the wider economic context, clean energy solutions are slowly becoming a part of the energy landscape. The LAMEA region may present challenges for quantum computing adoption due to both economic and infrastructural issues; however, the increasing focus on sustainable development in these areas could provide opportunities for quantum computing to help address issues in the energy sector. Request a Customized Copy of the Quantum Computing in Energy and Utility Market Report @ (We customized your report to meet your specific research requirements. Inquire with our sales team about customizing your report.) Still, Looking for More Information? Do OR Want Data for Inclusion in magazines, case studies, research papers, or Media? Email Directly Here with Detail Information: support@ Browse the full 'Quantum Computing in Energy and Utility Market Size, Trends and Insights By Technology (Quantum Hardware, Quantum Software, Quantum Services), By Application (Grid Optimization, Energy Storage Systems, Renewable Energy Forecasting, Predictive Maintenance, Supply Chain Optimization), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025–2034' Report at List of the prominent players in the Quantum Computing in Energy and Utility Market: IBM Google Microsoft Rigetti Computing D-Wave Systems Honeywell Quantum Solutions Intel IonQ Xanadu Quantum Technologies Alibaba Quantum Laboratory Cambridge Quantum Computing Zapata Computing Quantum Circuits Inc. Toshiba Corporation Fujitsu Accenture AWS (Amazon Web Services) Quantum Computing Microsoft Azure Quantum Baidu Quantum Computing QCI (Quantum Computing Inc.) Others Click Here to Access a Free Sample Report of the Global Quantum Computing in Energy and Utility Market @ Spectacular Deals Comprehensive coverage Maximum number of market tables and figures The subscription-based option is offered. Best price guarantee Free 35% or 60 hours of customization. Free post-sale service assistance. 25% discount on your next purchase. Service guarantees are available. Personalized market brief by author. Browse More Related Reports: Europe Green Steel Market: Europe Green Steel Market Size, Trends and Insights By Product Type (Flat Steel Products, Long Steel Products, Others), By Application (Automotive, Construction, Energy, Appliances, Others), and By Region - Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025–2034 US Wire and Cable Market: US Wire and Cable Market Size, Trends and Insights By Cable Type (Copper Cables, Fiber Optic Cables, Others), By Application (Telecom, Industrial, Building & Construction, Power Utilities, Military, Commercial, Space), and By Region - Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025–2034 Singapore Bunker Fuel Market: Singapore Bunker Fuel Market Size, Trends and Insights By Type (High sulfur fuel oil (HSFO), Low sulfur fuel oil (LSFO), Marine gasoil (MGO), Others), By Application (Container, Bulk Carrier, Oil Tanker, General Cargo, Chemical Tanker, Fishing Vessels, Gas Tanker, Others), and By Region - Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 Slickline Services Market: Slickline Services Market Size, Trends and Insights By Slickline Tools (Pulling Tools, Gauge Cutter, Downhole Bailer, Bridge Plug, Others), By Application (Onshore, Offshore), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 Transformer Core Market: Transformer Core Market Size, Trends and Insights By Product (Distribution Transformer, Power Transformer, Instrument Transformer), By Winding (Two Winding, Auto-transformer), By Cooling (Dry Type, Self-Cooled), By Insulation (Gas, Oil, Solid, Air), By Application (Residential & Commercial, Utility, Industrial), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 Pipeline Safety Market: Pipeline Safety Market Size, Trends and Insights By Component (Solutions, Services), By Solution (Perimeter Intrusion Detection, Secure Communication, SCADA for Pipelines, Pipeline Monitoring System, Industrial Control System (ICS) Security), By Vertical (Natural Gas, Crude Oil, Refined Products, Others), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 Pipeline Monitoring System Market: Pipeline Monitoring System Market Size, Trends and Insights By Type (Metallic, Non-Metallic), By End User (Crude & Refined Petroleum, Water & Wastewater, Fiber Optic Technology), By Technology (Pig's, Smart Ball, Ultrasonic, Magnetic Flux Leakage Technology, Fiber Optic Technology, Others), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 Green Gas Market: Green Gas Market Size, Trends and Insights By Type (Biomethane, Biopropane, Hydrogen), By End User (Transportation, Power, Buildings), By Source (Industrial Waste, Agricultural Waste, Sewage Sludge, Energy Crops, Others), and By Region - Global Industry Overview, Statistical Data, Competitive Analysis, Share, Outlook, and Forecast 2025 – 2034 The Quantum Computing in Energy and Utility Market is segmented as follows: By Technology Quantum Hardware Quantum Software Quantum Services By Application Grid Optimization Energy Storage Systems Renewable Energy Forecasting Predictive Maintenance Supply Chain Optimization Click Here to Get a Free Sample Report of the Global Quantum Computing in Energy and Utility Market @ Regional Coverage: North America U.S. Canada Mexico Rest of North America Europe Germany France U.K. Russia Italy Spain Netherlands Rest of Europe Asia Pacific China Japan India New Zealand Australia South Korea Taiwan Rest of Asia Pacific The Middle East & Africa Saudi Arabia UAE Egypt Kuwait South Africa Rest of the Middle East & Africa Latin America Brazil Argentina Rest of Latin America This Quantum Computing in Energy and Utility Market Research/Analysis Report Contains Answers to the following Questions. Which Trends Are Causing These Developments? Who Are the Global Key Players in This Quantum Computing in Energy and Utility Market? What are Their Company Profile, Product Information, and Contact Information? What Was the Global Market Status of the Quantum Computing in Energy and Utility Market? What Was the Capacity, Production Value, Cost and PROFIT of the Quantum Computing in Energy and Utility Market? What Is the Current Market Status of Quantum Computing in the Energy and Utility Industry? What's Market Competition in This Industry, Both Company and Country Wise? What's Market Analysis of Quantum Computing in the Energy and Utility Market by Considering Applications and Types? What Are Projections of the Global Quantum Computing in the Energy and Utility Industry Considering Capacity, Production, and Production Value? What Will Be the Estimation of Cost and Profit? What Will Be Market Share, Supply, and Consumption? What about imports and exports? What Is Quantum Computing in Energy and Utility Market Chain Analysis by Upstream Raw Materials and Downstream Industry? What Is the Economic Impact of Quantum Computing in the Energy and Utility Industry? What are Global Macroeconomic Environment Analysis Results? What Are Global Macroeconomic Environment Development Trends? What Are the Market Dynamics of Quantum Computing in the Energy and Utility Market? What Are Challenges and Opportunities? What Should Be Entry Strategies, Countermeasures to Economic Impact, and Marketing Channels for Quantum Computing in Energy and Utility Industry? Click Here to Access a Free Sample Report of the Global Quantum Computing in Energy and Utility Market @ Reasons to Purchase Quantum Computing in Energy and Utility Market Report Quantum Computing in Energy and Utility Market Report provides qualitative and quantitative analysis of the market based on segmentation involving economic and non-economic factors. Quantum Computing in Energy and Utility Market report outlines market value (USD) data for each segment and sub-segment. This report indicates the region and segment expected to witness the fastest growth and dominate the market. Quantum Computing in Energy and Utility Market Analysis by geography highlights the consumption of the product/service in the region and indicates the factors affecting the market within each region. The competitive landscape incorporates the market ranking of the major players, along with new service/product launches, partnerships, business expansions, and acquisitions in the past five years of companies profiled. Extensive company profiles comprising company overview, company insights, product benchmarking, and SWOT analysis for the major market players. The Industry's current and future market outlook concerning recent developments (which involve growth opportunities and drivers as well as challenges and restraints of both emerging and developed regions. Quantum Computing in Energy and Utility Market Includes in-depth market analysis from various perspectives through Porter's five forces analysis and provides insight into the market through Value Chain. Reasons for the Research Report The study provides a thorough overview of the global Quantum Computing in Energy and Utility market. Compare your performance to that of the market as a whole. Aim to maintain competitiveness while innovations from established key players fuel market growth. Buy this Premium Quantum Computing in Energy and Utility Research Report | Fast Delivery Available - [220+ Pages] @ What does the report include? Drivers, restrictions, and opportunities are among the qualitative elements covered in the worldwide Quantum Computing in Energy and Utility market analysis. The competitive environment of current and potential participants in the Quantum Computing in Energy and Utility market is covered in the report, as well as those companies' strategic product development ambitions. According to the component, application, and industry vertical, this study analyzes the market qualitatively and quantitatively. Additionally, the report offers comparable data for the important regions. We have provided actual market sizes and forecasts for each of the aforementioned segments. Who should buy this report? Participants and stakeholders in the worldwide Quantum Computing in Energy and Utility market should find this report useful. The research will be useful to all market participants in quantum computing in the energy and utility industries. Managers in the Quantum Computing in Energy and Utility sector are interested in publishing up-to-date and projected data about the worldwide Quantum Computing in Energy and Utility market. Governmental agencies, regulatory bodies, decision-makers, and organizations want to invest in Quantum Computing's energy and utility products' market trends. Market insights are sought for by analysts, researchers, educators, strategy managers, and government organizations to develop plans. Request a Customized Copy of the Quantum Computing in Energy and Utility Market Report @ About Custom Market Insights: Custom Market Insights is a market research and advisory company delivering business insights and market research reports to large, small, and medium-scale enterprises. We assist clients with strategies and business policies and regularly work toward achieving sustainable growth in their respective domains. CMI offers a comprehensive solution, from data collection to investment advice. Our company's expert analysis digs out essential factors that help us understand the significance and impact of market dynamics. The professional experts apply clients inside on the aspects such as strategies for future estimation fall, forecasting or opportunity to grow, and consumer survey. Follow Us: LinkedIn | Twitter | Facebook | YouTube Contact Us: Joel John CMI Consulting LLC 1333, 701 Tillery Street Unit 12, Austin, TX, Travis, US, 78702 USA: +1 737-734-2707 India: +91 20 46022736 Email: support@ Web: Blog: Blog: Blog: Blog: Buy this Premium Quantum Computing in Energy and Utility Research Report | Fast Delivery Available - [220+ Pages] @ in retrieving data Sign in to access your portfolio Error in retrieving data Error in retrieving data Error in retrieving data Error in retrieving data

Oracle, OpenAI Expand Stargate Deal for More US Data Centers
Oracle, OpenAI Expand Stargate Deal for More US Data Centers

Yahoo

time30 minutes ago

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Oracle, OpenAI Expand Stargate Deal for More US Data Centers

(Bloomberg) -- OpenAI has agreed to rent a massive amount of computing power from Oracle Corp. data centers as part of its Stargate initiative, underscoring the intense requirements for cutting-edge artificial intelligence products. Struggling Downtowns Are Looking to Lure New Crowds NYC Commutes Resume After Midtown Bus Terminal Crash Chaos What Gothenburg Got Out of Congestion Pricing California Exempts Building Projects From Environmental Law Massachusetts to Follow NYC in Making Landlords Pay Broker Fees The AI company will rent additional capacity from Oracle totaling about 4.5 gigawatts of data center power in the US, according to people familiar with the work who asked not to be named discussing private information. That is an unprecedented sum of energy that could power millions of American homes. A gigawatt is akin to the capacity from one nuclear reactor and can provide electricity to roughly 750,000 houses. Stargate — OpenAI's project to buy computing power from Oracle for AI products — was first announced in January at the White House. So far, Oracle has developed a massive data center in Abilene, Texas, for OpenAI alongside development partner Crusoe. To meet the additional demand from OpenAI, Oracle will develop multiple data centers across the US with partners, the people said. Sites in states including Texas, Michigan, Wisconsin and Wyoming are under consideration, in addition to expanding the Abilene site from a current power capacity of 1.2 gigawatts to about 2 gigawatts, they said. OpenAI is also considering sites in New Mexico, Georgia, Ohio and Pennsylvania, one of the people said. These new projects will be part of Stargate, and details of the plans may still change, according to a person familiar with the plans. OpenAI and Crusoe declined to comment on the plans. Oracle didn't return a request for comment. Oracle shares gained as much as 3.9% to $227.46, a record high, following the news. The stock has jumped 36% this year, fueled by investor enthusiasm in its cloud business. Earlier this week, Oracle announced that it had signed a single cloud deal worth $30 billion in annual revenue beginning in fiscal 2028 without naming the customer. This Stargate agreement makes up at least part of that disclosed contract, according to one of the people. Oracle, known for its database software, has gained traction in the market for renting out computing power and storage over the internet, in part by targeting clients focused on AI work. This has led to a jump in revenue and expenses. The $30 billion deal is more than the current size of its entire cloud infrastructure business. Credit ratings firm S&P wrote Wednesday that Oracle's cloud infrastructure building spree was straining cash flow and that the current spending pace is higher than anticipated. Still, it viewed Oracle's cloud strategy favorably over the long term. OpenAI said in May it was helping develop a Stargate project in the United Arab Emirates with Oracle, Crusoe, AI chipmaker Nvidia Corp, Cisco Systems Inc. and G42, an AI company backed by the country's sovereign wealth fund. --With assistance from Josh Saul, Min Jeong Lee and Naureen S. Malik. (Updates with share price in the seventh paragraph.) SNAP Cuts in Big Tax Bill Will Hit a Lot of Trump Voters Too America's Top Consumer-Sentiment Economist Is Worried How to Steal a House China's Homegrown Jewelry Superstar Pistachios Are Everywhere Right Now, Not Just in Dubai Chocolate ©2025 Bloomberg L.P.

Trump's deportations are hurting Constellation Brands' beer sales
Trump's deportations are hurting Constellation Brands' beer sales

CNBC

timean hour ago

  • CNBC

Trump's deportations are hurting Constellation Brands' beer sales

Constellation Brands' beer sales fell 2% in its latest quarter as President Donald Trump's deportations and consumers' broader economic fears weighed on demand. In April, Constellation CEO Bill Newlands said that Hispanic consumers are spending less due to their concerns about Trump's hardline immigration policy and possible job losses in industries with high Latino employment bases. During Wednesday's earnings conference call, Newlands acknowledged that raids by U.S. Immigration and Customs Enforcement were making it difficult to predict consumer behavior moving forward, although he demurred about tying the beer division's slowdown to Hispanic shoppers specifically this quarter. "When you see a fair amount of change, both Hispanic and non-Hispanic consumers are concerned about inflation and about cost structure," Newlands told analysts. Hispanic consumers are a core part of Constellation's customer base. The brewer, which owns Modelo, Corona and Pacifico, says that roughly half of its beer sales come from Latinos in the U.S. Constellation's earnings and revenue for the quarter ended May 31 fell short of Wall Street's estimates, hurt by weaker beer demand and higher aluminum costs from Trump's tariffs. Still, the company reiterated its full-year outlook, signaling confidence that it can achieve its financial targets despite economic uncertainty. Constellation isn't the only packaged food and beverage company to report weaker demand from Hispanic consumers. Last quarter, Coca-Cola and Colgate-Palmolive were also among the companies that tied a slowdown in U.S. sales to a pullback from Hispanic shoppers.

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