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	<title>Louisiana &#8211; Jain.com</title>
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	<description>Data centers, connectivity, and security — news and analysis</description>
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		<title>Rapides Parish Lands $3.6B AI Data Center Campus as Gigawatt Demand Moves South</title>
		<link>/rapides-parish-3-6-billion-ai-data-center-campus-cleco-louisiana/</link>
		
		<dc:creator><![CDATA[Deepak Jain]]></dc:creator>
		<pubDate>Mon, 25 May 2026 16:00:00 +0000</pubDate>
				<category><![CDATA[AI Infrastructure]]></category>
		<category><![CDATA[AI data centers]]></category>
		<category><![CDATA[Cleco]]></category>
		<category><![CDATA[economic development]]></category>
		<category><![CDATA[hyperscale]]></category>
		<category><![CDATA[Louisiana]]></category>
		<category><![CDATA[Power Infrastructure]]></category>
		<category><![CDATA[Rapides Parish]]></category>
		<category><![CDATA[utility planning]]></category>
		<guid isPermaLink="false">/rapides-parish-3-6-billion-ai-data-center-campus-cleco-louisiana/</guid>

					<description><![CDATA[A $3.6 billion AI data center campus is planned for Rapides Parish, Louisiana, extending the gigawatt-scale AI buildout into central Louisiana. We examine the reported power arrangement with utility Cleco, what the announcement leaves unanswered, and why hyperscale demand is rewriting Southern utility planning.]]></description>
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<div class="jain-post-main">
<p>A $3.6 billion artificial-intelligence data center campus is planned for Rapides Parish in central Louisiana, according to a May 25, 2026 report by the Louisiana Illuminator. The project would rank among the largest private capital investments in the parish&#8217;s history and, per the reporting, involves a power arrangement with Cleco, the regulated utility serving the region.</p>
<h2>Executive Summary</h2>
<p>The reported plan places a multibillion-dollar AI campus in Rapides Parish, whose seat is Alexandria — a part of Louisiana that has not historically competed for hyperscale data center projects. At $3.6 billion, the investment is on the scale that typically implies hundreds of megawatts of computing load, purpose-built substations, and years of construction, though the report available to us does not specify capacity, acreage, or a construction timeline.</p>
<p>Why it matters: the announcement is another data point in a clear pattern. AI training and inference facilities are landing in the South — Louisiana, Mississippi, Texas, Georgia — where land is available, power can be contracted at scale, and state incentives are aggressive. For a mid-sized regulated utility like Cleco, a single customer of this size can reshape its entire resource plan. That dynamic, more than the campus itself, is the story worth watching.</p>
<h2>Louisiana&#8217;s Second Act in the AI Land Rush</h2>
<p>Louisiana entered the hyperscale conversation in late 2024, when Meta announced a roughly $10 billion AI data center campus in Richland Parish in the state&#8217;s northeast — at the time the largest such announcement in Meta&#8217;s fleet. That project demonstrated that Louisiana could deliver what hyperscalers need: large contiguous sites, a cooperative regulatory environment, and a utility (there, Entergy Louisiana) willing to build generation for a single anchor customer. A $3.6 billion campus in Rapides Parish suggests that playbook is now being run in Cleco territory as well.</p>
<p>For central Louisiana, the economic-development logic is straightforward. Data centers bring outsized capital investment and property-tax base relative to their headcount — construction employs thousands for several years, but steady-state operations typically employ dozens to a few hundred. Communities weighing these projects should therefore evaluate them primarily as tax-base and infrastructure plays rather than as mass employers, a distinction that matters when incentives are negotiated.</p>
<h2>Why the Utility Is the Real Story</h2>
<p>Cleco serves roughly the central third of Louisiana and is small compared with national investor-owned utilities. A data center campus at this investment level would likely represent a load addition measured in hundreds of megawatts — material against a system of Cleco&#8217;s size. In regulated markets, serving that load means new generation, transmission upgrades, or long-term power purchases, all of which flow through integrated resource plans and rate proceedings before the Louisiana Public Service Commission.</p>
<p>The central question in every such deal is cost allocation: does the data center customer pay the full incremental cost of the capacity built to serve it, or do some costs socialize across residential and small-business ratepayers? Utilities and regulators across the South are actively developing large-load tariffs — special rate classes with long contract terms, minimum-take provisions, and exit fees — precisely to answer that question. The report available to us does not disclose the structure of the Cleco arrangement, so the fairest reading is that this is the item most deserving of public scrutiny as the project moves through regulatory review.</p>
<h2>The Economics of Gigawatt-Scale Siting</h2>
<p>The South&#8217;s dominance in recent AI-infrastructure siting comes down to arithmetic. Training-class AI facilities are constrained less by fiber or labor than by time-to-power: how quickly a utility can deliver hundreds of megawatts of firm capacity. States with vertically integrated utilities can compress that timeline by building dedicated generation, something fragmented or capacity-constrained markets struggle to match. Add comparatively cheap land, natural-gas proximity, and sales-tax exemptions on data center equipment, and the region&#8217;s pipeline of announcements becomes easy to explain.</p>
<p>The risk side deserves equal weight. Multibillion-dollar campus announcements are commitments of intent, not completed buildings; across the industry, some announced projects have been resized, phased, or delayed as AI demand forecasts and chip supply evolve. A parish and utility that invest in infrastructure ahead of a project that later shrinks can be left carrying costs. Well-structured agreements put that risk on the developer through take-or-pay terms — which is why the unpublished details matter more than the headline number.</p>
<h2>Background</h2>
<p>Louisiana emerged as an AI-infrastructure destination in late 2024, when Meta selected Richland Parish for a roughly $10 billion data center campus backed by dedicated generation from Entergy Louisiana — at announcement, one of the largest data center commitments in the United States. The state offers hyperscalers large rural sites, abundant natural gas, sales-tax relief on data center equipment, and vertically integrated utilities that can build power for anchor customers.</p>
<p>Cleco, headquartered in Pineville in Rapides Parish itself, is central Louisiana&#8217;s regulated utility. For a utility of its size, a single hyperscale customer represents a step-change in load — the kind of demand shock that utilities across the South are now addressing through integrated resource plans and new large-load rate structures overseen by state regulators.</p>
<p>Source: <a href="https://news.google.com/rss/articles/CBMiaEFVX3lxTE5BWk0zYnlOSGxhYUFVM2ljQUJab3JOaXVFaUdweC14YXI4dU1yczc2Z3RFakJpQU50NXFrZDBYbjdYcnpnSG5pM01xT2ktalRJMGdGLTNvUTRFR05VNEVCX0d4enJNWWl2?oc=5">$3.6 billion AI data center campus planned for Rapides Parish</a> — Louisiana Illuminator report, May 25, 2026, on a planned AI data center campus in central Louisiana.</p>
</div>
<aside class="jain-rail">
<section class="jain-gaps" aria-label="What the release does not say">
<p class="jain-gaps-kicker">⚠ What They Aren’t Saying</p>
<h2>What the Release Doesn&#8217;t Say</h2>
<p>The report leaves significant material questions open. Most notably, the available reporting does not name the developer or end user behind the campus — a key fact, since creditworthiness determines how much risk Cleco and its ratepayers actually bear.</p>
<ul>
<li><strong>Power capacity and source:</strong> How many megawatts, and will Cleco serve the load with new generation, purchased power, or existing capacity?</li>
<li><strong>Cost allocation:</strong> Does the contract insulate other Cleco customers from the cost of new infrastructure, and will its terms be filed publicly with the Louisiana PSC?</li>
<li><strong>Timeline and phasing:</strong> No construction start, energization date, or build-out schedule is specified.</li>
<li><strong>Financing and incentives:</strong> The $3.6 billion figure is not broken down, and any state or parish incentive package is undisclosed.</li>
<li><strong>Jobs, water, and land:</strong> Permanent employment, cooling-water demand, and site acreage — the questions residents ask first — are unaddressed.</li>
</ul>
</section>
<section class="jain-faq">
<h2>Frequently Asked Questions</h2>
<h3>What was announced for Rapides Parish, Louisiana?</h3>
<p>According to a May 25, 2026 Louisiana Illuminator report, a $3.6 billion artificial-intelligence data center campus is planned for Rapides Parish in central Louisiana, with a power arrangement involving Cleco, the region&#8217;s regulated electric utility.</p>
<h3>Who is building the $3.6 billion AI data center campus?</h3>
<p>The reporting available to us does not name the developer or end user. That is a material gap: the identity and creditworthiness of the customer determine how much financial risk the utility and its ratepayers actually carry.</p>
<h3>Where is Rapides Parish and why does the location matter?</h3>
<p>Rapides Parish sits in central Louisiana, with Alexandria as its seat. It has not historically hosted hyperscale projects, so this campus would extend Louisiana&#8217;s AI buildout beyond the Richland Parish corridor into Cleco&#8217;s service territory.</p>
<h3>What is Cleco and what role does it play?</h3>
<p>Cleco is a regulated investor-owned utility serving roughly the central third of Louisiana. As the local provider, it would supply the campus&#8217;s electricity — a load large enough to reshape its generation and transmission planning.</p>
<h3>How much power would a $3.6 billion AI campus need?</h3>
<p>The report does not specify capacity. Industry-wide, investments of this scale typically imply computing loads in the hundreds of megawatts, which is why the utility arrangement is central to whether the project can be served on schedule.</p>
<h3>What is an AI data center campus, in plain terms?</h3>
<p>It is a cluster of large buildings filled with specialized computers — mostly GPU servers — used to train and run artificial-intelligence models. These facilities consume far more electricity per square foot than traditional data centers.</p>
<h3>Why are AI data centers concentrating in the South?</h3>
<p>Time-to-power. Southern states with vertically integrated utilities can commit new generation for a single large customer quickly, and they pair that with available land, natural-gas proximity, and generous tax exemptions on data center equipment.</p>
<h3>How does this compare with Meta&#x27;s Louisiana project?</h3>
<p>Meta announced a roughly $10 billion AI campus in Richland Parish in late 2024, served by Entergy Louisiana. At $3.6 billion, the Rapides Parish plan is smaller but follows the same pattern: a rural Louisiana site anchored by a dedicated utility deal.</p>
<h3>Will the project raise electricity rates for Cleco customers?</h3>
<p>That depends on contract terms not disclosed in the reporting. Well-structured large-load agreements make the data center pay the full incremental cost of new infrastructure; weaker ones can socialize costs across other ratepayers. Louisiana PSC review is the venue to watch.</p>
<h3>How many jobs would the campus create?</h3>
<p>The report does not say. Data center construction typically employs thousands for several years, while permanent operations usually employ dozens to a few hundred. The larger local benefit is usually property-tax base rather than headcount.</p>
<h3>When would construction start and finish?</h3>
<p>No timeline is given in the available reporting. Projects of this scale generally take several years from announcement to full energization, and are often built in phases tied to power availability and customer demand.</p>
<h3>Is a $3.6 billion announcement a firm commitment?</h3>
<p>Not necessarily. Announcements signal intent; across the industry some projects have been resized or delayed as AI demand forecasts shift. Binding milestones — permits, signed power contracts, equipment orders — are the real indicators of momentum.</p>
<h3>What should local residents watch for next?</h3>
<p>Public filings: any Cleco rate or certification filings with the Louisiana Public Service Commission, parish zoning and incentive votes, and disclosures of water use and site plans. Those documents will answer what the announcement did not.</p>
<h3>What does this mean for the data center industry more broadly?</h3>
<p>It reinforces that gigawatt-scale AI demand is now a utility-planning phenomenon, not just a real-estate one. Mid-sized Southern utilities are becoming pivotal gatekeepers, and their large-load contract structures will shape where the next wave of campuses lands.</p>
</section>
</aside>
</div>
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]]></content:encoded>
					
		
		
			</item>
		<item>
		<title>Meta&#8217;s $200 Billion Louisiana Data Center: AI Scale Meets a Rural Grid</title>
		<link>/meta-200-billion-louisiana-data-center-rural-grid-ai-scale/</link>
		
		<dc:creator><![CDATA[Deepak Jain]]></dc:creator>
		<pubDate>Sun, 17 May 2026 16:00:00 +0000</pubDate>
				<category><![CDATA[AI Infrastructure]]></category>
		<category><![CDATA[AI infrastructure]]></category>
		<category><![CDATA[data centers]]></category>
		<category><![CDATA[Entergy]]></category>
		<category><![CDATA[Hyperion]]></category>
		<category><![CDATA[hyperscale]]></category>
		<category><![CDATA[Louisiana]]></category>
		<category><![CDATA[Meta]]></category>
		<category><![CDATA[power grid]]></category>
		<guid isPermaLink="false">/meta-200-billion-louisiana-data-center-rural-grid-ai-scale/</guid>

					<description><![CDATA[Meta's $200 billion data center commitment in rural Louisiana is the largest single-site AI infrastructure investment reported to date. We examine what a build of this scale means for regional power grids, local communities, and the economics of hyperscale AI compute.]]></description>
										<content:encoded><![CDATA[<div class="jain-post-grid">
<div class="jain-post-main">
<p>Bloomberg reports that Meta&#8217;s data center campus in rural Louisiana — the AI supercomputing site the company calls Hyperion — now represents a commitment on the order of $200 billion, a figure that would make it the largest single data-center investment ever reported. The project, located in Richland Parish in northeast Louisiana, began as a $10 billion announcement in December 2024 and has grown alongside Meta&#8217;s escalating artificial-intelligence ambitions.</p>
<p>The May 17 report frames the build as transformative for the surrounding rural region, where a campus designed to scale toward multiple gigawatts of computing power is reshaping the local economy, the electric grid, and the land itself.</p>
<h2>Executive Summary</h2>
<p>The headline number is staggering even by hyperscale standards. When Meta first announced the Richland Parish project, its roughly $10 billion price tag and four-million-square-foot footprint already made it the company&#8217;s largest data center. A $200 billion figure — twenty times the original commitment — reflects how quickly the economics of frontier AI have escalated: the cost of a leading AI campus is no longer set by buildings and land but by the accelerator chips, networking, and power infrastructure packed inside them, refreshed on a fast cycle.</p>
<p>Why it matters: a single company concentrating that much capital at a single rural site is a new phenomenon in American infrastructure. It tests the capacity of a regional utility (Entergy Louisiana is building new gas-fired generation to serve the load), the absorptive capacity of a small rural parish, and the balance sheets of even the world&#8217;s most profitable companies. Meta has already turned to outside capital for this site, including a reported joint-venture financing arrangement with Blue Owl Capital — a sign that AI infrastructure at this scale is becoming its own asset class.</p>
<p>The caveat: the source is a single report, and it does not spell out what the $200 billion covers — committed construction capital, cumulative spending including chips over the site&#8217;s life, or a long-range projection. Those distinctions matter enormously, and we flag them below.</p>
<h2>From $10 Billion to $200 Billion in Eighteen Months</h2>
<p>Meta announced the Richland Parish campus in December 2024 as a $10 billion, four-million-square-foot facility — at the time, the largest in its fleet. By mid-2025, CEO Mark Zuckerberg had rebranded the site as Hyperion and described plans to scale it toward five gigawatts of computing capacity, part of a stated intent to spend hundreds of billions of dollars on AI infrastructure. A $200 billion characterization of the site is therefore less a sudden announcement than the visible endpoint of a steady escalation.</p>
<p>The driver is the changed composition of data-center cost. In a conventional facility, the building and electrical plant dominate. In an AI campus, the servers and GPUs (the specialized chips that train and run AI models) can represent the large majority of total investment — and unlike the building, they are replaced every few years. That is how a single site&#8217;s lifetime cost can plausibly reach twelve figures, and it is also why headline totals for AI campuses should be read carefully: they often blend one-time construction with years of recurring hardware spending.</p>
<h2>What a Gigawatt-Class Campus Asks of a Rural Grid</h2>
<p>Richland Parish is farm country in one of the poorer corners of Louisiana. A campus targeting multiple gigawatts — a gigawatt is roughly the output of a large power plant, enough for hundreds of thousands of homes — cannot draw on spare capacity, because rural grids do not carry spare capacity at that scale. Entergy Louisiana&#8217;s answer has been new natural-gas generation built substantially to serve this one customer, an arrangement approved by state regulators.</p>
<p>That model raises questions every state hosting hyperscale AI now faces. Who bears the cost if the load does not materialize or the customer leaves early — the company, or ratepayers? What happens to local reliability while multi-year grid upgrades catch up to the load? And how does a build dependent on new gas plants square with Meta&#8217;s long-standing renewable-energy commitments? These are not gotcha questions; they are the standard underwriting questions for single-customer generation, and the answers sit in regulatory filings and contract terms that headline coverage rarely reaches.</p>
<h2>The Economics of Concentrating $200 Billion at One Site</h2>
<p>Even for Meta, which generates tens of billions of dollars in annual free cash flow, this scale of spending strains a corporate balance sheet. The company&#8217;s reported use of joint-venture and private-credit financing for Hyperion — bringing in outside investors such as Blue Owl to own and fund data-center assets Meta then uses — signals a broader industry shift: AI infrastructure is being financed like power plants and pipelines, with long-lived structures and external capital, rather than expensed casually from operating profits.</p>
<p>Concentration is the risk that comes with it. A single-site bet of this magnitude assumes AI demand keeps compounding, that the chips installed are not stranded by faster successors, and that power arrives on schedule. The winners if it works: Meta, which gets training capacity rivals must match; Louisiana, which collects taxes and jobs; and the contractors, utilities, and lenders in the build chain. The losers if it doesn&#8217;t are harder to name in advance — which is precisely why the financing structures, and who holds which risk, deserve as much attention as the square footage.</p>
<h2>Rural Transformation Cuts Both Ways</h2>
<p>For Richland Parish, the project brings thousands of construction workers, a permanent operational workforce Meta originally described in the hundreds of jobs, and a tax base transformation few rural counties ever see. It also brings housing pressure, road and water demands, and a local economy newly tethered to one company&#8217;s AI strategy — a dependency small communities historically know from mills and plants, with mixed long-term results.</p>
<p>The fair reading is that both the boosters and the skeptics have real evidence. The investment, employment, and utility upgrades are concrete. So are the open questions about what the region retains if AI economics shift. Communities negotiating with hyperscalers elsewhere will study Louisiana&#8217;s terms closely — which makes transparency about those terms a matter of more than local interest.</p>
<h2>Background</h2>
<p>Meta operates one of the world&#8217;s largest data-center fleets, built over two decades to serve Facebook, Instagram, and WhatsApp. The generative-AI race changed the shape of that fleet: training frontier AI models requires enormous clusters of GPU chips concentrated at single sites with gigawatt-scale power. In 2025 Meta reorganized its AI efforts around &#8216;superintelligence&#8217; and announced titan-scale campuses — Hyperion in Louisiana and Prometheus in Ohio — while raising capital spending to historic levels and signaling that hundreds of billions of dollars would follow.</p>
<p>The December 2024 Louisiana announcement landed in Richland Parish, a rural farming area, accompanied by state incentives and an Entergy plan for new gas-fired generation. The project has since become a national reference case for how AI infrastructure interacts with rural grids, utility regulation, and small-town economies.</p>
<p>Source: <a href="https://news.google.com/rss/articles/CBMihgFBVV95cUxPRFBfZktZYmFuZWJkNV9pcTM5b004dllfaUNTel9aakZ5NVhUYkRIZnF0eXJKVEpEcFNvNmM0WTVvNll5c2o1elZURmdHdXkwaTVSUEh1Wm9peGVyRkdUbi03T3cxY3NKXzFEeEFWNWtORnAtOGhjRnlwV1ZreFUxVjczQ2FZQQ?oc=5">Meta Is Transforming Rural Louisiana With a $200 Billion Data Center</a> — Bloomberg report, May 17, 2026, on the scale and local impact of Meta&#8217;s Hyperion data-center campus in Richland Parish, Louisiana.</p>
</div>
<aside class="jain-rail">
<section class="jain-gaps" aria-label="What the release does not say">
<p class="jain-gaps-kicker">⚠ What They Aren’t Saying</p>
<h2>What the Release Doesn&#8217;t Say</h2>
<ul>
<li><strong>What the $200 billion covers:</strong> The report does not break down whether the figure is committed construction capital, cumulative lifetime spending including recurring chip refreshes, or a projection — distinctions that change the story materially.</li>
<li><strong>Timeline:</strong> No phased schedule is given for when capacity comes online or when spending peaks.</li>
<li><strong>Power and ratepayer terms:</strong> The specific contractual protections around Entergy&#8217;s new generation — cost allocation, exit provisions, and clean-energy offsets — are not detailed.</li>
<li><strong>Financing split:</strong> How much is on Meta&#8217;s balance sheet versus joint-venture partners and private credit is not specified.</li>
<li><strong>Local commitments:</strong> Permanent job counts, water usage, and community-benefit terms at the expanded scale are not enumerated in the source.</li>
</ul>
</section>
<section class="jain-faq">
<h2>Frequently Asked Questions</h2>
<h3>What is Meta building in Louisiana?</h3>
<p>A hyperscale AI data center campus in Richland Parish, in northeast Louisiana, which Meta calls Hyperion. Bloomberg reports the commitment has reached roughly $200 billion, which would make it the largest single-site data-center investment ever reported.</p>
<h3>How big was the project when it was first announced?</h3>
<p>Meta announced it in December 2024 as a roughly $10 billion, four-million-square-foot facility — already the largest data center in the company&#8217;s fleet at the time. The reported scale has grown dramatically since as Meta&#8217;s AI ambitions escalated.</p>
<h3>What is Hyperion?</h3>
<p>Hyperion is Meta&#8217;s name for the Louisiana campus. In 2025, CEO Mark Zuckerberg described plans to scale it toward five gigawatts of computing capacity, making it one of the flagship sites in Meta&#8217;s AI infrastructure buildout.</p>
<h3>Why is the cost so much higher than a normal data center?</h3>
<p>In an AI campus, most of the money goes into GPUs — the specialized chips that train and run AI models — plus networking and power gear, not the building itself. Those chips are replaced every few years, so a site&#8217;s cumulative cost can vastly exceed its construction budget.</p>
<h3>Does the $200 billion figure mean Meta has committed that money today?</h3>
<p>The source does not say. The figure could represent committed capital, projected lifetime spending including hardware refreshes, or a long-range plan. That distinction is one of the most important unanswered questions in the report.</p>
<h3>Where will the electricity come from?</h3>
<p>Entergy Louisiana is building new natural-gas-fired generation substantially to serve the campus, under arrangements approved by Louisiana regulators. A multi-gigawatt load far exceeds what a rural grid can supply from existing capacity.</p>
<h3>Who pays if the data center&#x27;s power demand doesn&#x27;t materialize?</h3>
<p>That depends on contract terms between Meta and Entergy that the source does not detail. Cost allocation between the company and ordinary ratepayers is the central regulatory question in every single-customer generation deal of this kind.</p>
<h3>How many jobs will the project create?</h3>
<p>At the original announcement, Meta described thousands of construction jobs at peak and a permanent operational workforce in the hundreds. The source does not update those figures for the expanded scale of the project.</p>
<h3>Why did Meta choose rural Louisiana?</h3>
<p>Large hyperscale sites favor abundant cheap land, available water, state incentives, and a utility willing to build dedicated generation. Rural northeast Louisiana offered all of these at a scale that dense metro areas cannot match.</p>
<h3>How does this compare to other AI infrastructure projects?</h3>
<p>Rival programs like the OpenAI-backed Stargate effort have announced larger multi-site totals, but those spread spending across many campuses. Meta&#8217;s Louisiana project stands out as the largest commitment concentrated at a single site.</p>
<h3>How is Meta financing a project this large?</h3>
<p>Partly with outside capital. Meta has reportedly used joint-venture structures with private-credit investors, including Blue Owl Capital, to fund Hyperion — treating AI data centers like long-lived infrastructure assets rather than ordinary corporate capital spending.</p>
<h3>What does this mean for the local community?</h3>
<p>Richland Parish gains construction employment, permanent jobs, and a transformed tax base, but also housing pressure, infrastructure strain, and economic dependence on one company&#8217;s AI strategy — a familiar trade-off for small towns anchored to a single large employer.</p>
<h3>What are the environmental concerns?</h3>
<p>The build relies on new natural-gas generation, which sits in tension with Meta&#8217;s renewable-energy commitments, and hyperscale campuses consume significant water for cooling. The source does not detail offsets or usage figures at the expanded scale.</p>
<h3>What should investors watch next?</h3>
<p>Meta&#8217;s capital-expenditure guidance, the split between on-balance-sheet and joint-venture financing, regulatory filings on the Entergy generation deal, and evidence that AI revenue is growing fast enough to justify concentrating this much capital in one location.</p>
</section>
</aside>
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