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The case for more state spending on RD

Economist Staff The Economist
Date Posted:
January 19, 2021
Is Database:
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Government R&D spending has historically coincided with productivity & GDP growth, but direct impact on economic growth remains unclear.

While increased government R&D spending has historically coincided with productivity and GDP growth, the direct impact on economic growth remains unclear. Rich-world governments currently allocate over 0.5% of GDP to R&D, and even a slight increase could be significant. However, the link between scientific research and economic improvements is weakening, as more resources are needed to achieve the same output gains. Strategic government programs, like those in aerospace and electronics during the Cold War, have made winners but don't always require groundbreaking R&D. The focus should be on technologies that improve everyday life and generate economic activity, rather than solely on cutting-edge innovations. In a globalized world, domestic R&D investments benefit other countries too, complicating the capture of economic returns. Despite these challenges, boosting innovation through government spending is crucial, though it may not always lead to the most significant economic growth.

Economist Staff, "The case for more state spending on R&D,"The Economist, January 16, 2021, https://www.economist.com/briefing/2021/01/16/the-case-for-more-state-spending-on-r-and-d
The case for more state spending on R&D

There is nothing new about economists arguing for more government spending on research and development (r&d). Theoretical work done by Kenneth Arrow in the 1960s convinced his colleagues that the private sector would not on its own provide the amount of innovation that economies need to maximise their growth. Empirically the coincidence, in the 1950s, of increased government r&d spending and excellent rates of productivity and gdp growth strengthened the case further.

It is true that the hard evidence for a positive impact of such r&d spending on overall growth is both fairly weak and suggests that it lags the outlay by quite a while. But few doubt that the return is, in practice, significant. Rich-world governments currently spend, on average, a bit over 0.5% of gdp on r&d a couple more tenths of a percentage point could make a big difference.

The economists have the advantage, here, of pushing at a door that others are in the process of pulling open. Government r&d spending as a fraction of gdp has spent most of the past 40 years shrinking (see chart 1). In 2018, though, the most recent year for which data are available, figures from 24 oecd countries showed government spending on r&d rising by a healthy 3% in real terms following a particularly lean period after the financial crisis. In 2020 the French government promised to increase its research budget by 30% over ten years as part of a Research strategy. The Japanese government has also been increasing funding, and setting up a new provision for “moonshots”. In America, having resisted Donald Trump’s attempts to cut research budgets, Congress may well look favourably on President-elect Joe Biden’s promise to pump them up.

This enthusiasm is not simply driven by a belief that such spending will increase growth. It is also about a fear of China. A research backwater when its economy took off in the 1980s, China has since spent heavily on r&d to obvious effect. A study published by Elsevier, a scientific publisher, and Nikkei, a news business, in 2019 found that China published more high-impact research papers than America did in 23 out of 30 “hot” research fields. Many in Europe and America think that competing with, or outcompeting, China means following its lead. The incoming Biden administration promises “breakthrough technology r&d programmes” which will “direct investments to key technologies in support of us competitiveness”.

The case for more state spending on RD: Extended Excerpt Image 1


And a third factor unites governments inside and outside China: they have strategic goals they can only meet through the development of new technologies and the deployment of existing ones. The government support for vaccines against sars-cov-2 is a case in point. The increasing need for deep decarbonisation is another.

Rise and fall and rise?

There are voices which would temper this enthusiasm. In “The Rise and Fall of American Growth”, a highly influential book published in 2016, Robert Gordon of Northwestern University argued that, although the century of exceptional American productivity growth from 1870 to 1970 was caused by technological change, such change will not come again (see chart 2). There is no future equivalent to the “great inventions”—internal-combustion engines, electrification, plumbing and the like—which allowed a one-off shift from an agrarian society to an industrialised consumer one over that singular period; they catered to the needs of the human condition in a primary and unrepeatable way. Moving from the internal-combustion engine to electric motors in order to move vehicles is both impressive and necessary, but it is not in the same league as moving from the horse to the car.

The case for more state spending on RD: Extended Excerpt Image 2


Another concern is that emphasising government r&d oversimplifies innovation. What matters to the economy are not scientific discoveries or the innovations at technology’s cutting edge, but the technology people and firms make widespread use of—not papers in peer-reviewed journals or even cool lab creations, but things which pervasively improve the everyday and generate economic activity in doing so. And there is no simple production line which, fed with new scientific understandings, produces such technological change.

A recent paper by Ashish Arora of Duke University and colleagues, which focuses on the large corporate lab of post-war America, shows how important that distinction can be. The post-second-world-war years were not only marked by a growth in government r&d spending, but also by the scientific excellence of in-house laboratories at companies such as at&t and ibm. In the 1960s researchers at DuPont published more articles in the Journal of the American Chemical Society, the field’s leading journal, than mit and Caltech combined. The production of scientific knowledge and the desire to solve real-world commercial problems were closely entwined. Science was being pulled into the economy, not just pushed; this was the environment in which, in the 1960s, the term r&d was invented.

What is more, the link between scientific publication—whether publicly or privately funded—and economic improvements is weakening. “Ideas are getting harder to find,” according to a paper published in the American Economic Review in 2020. Applying econometric tools to technologies-in-use such as chipmaking and crop improvements, Nick Bloom of Stanford University and his colleagues found that, over time, more inputs—more researcher time, more money—have been needed to get the same improvement in outputs as before (see chart 3).

The case for more state spending on RD: Extended Excerpt Image 3


This may explain why, as a fraction of gdp, corporate-sector r&d has grown by more than enough to offset the reduction in government research spending. Indeed, some firms are doing staggering amounts of r&d, though their definitions may be elastic. Amazon claimed to spend $36bn on “technology and content” last year, more than the science budgets of Britain and France combined. Nevertheless Dr Arora argues that corporate science has gone into decline, with big firms increasingly choosing to license research from universities rather than do it themselves. Further removed from production, the universities which serve as the primary research focus in many countries are not so focused on useful invention. If the current innovation system is simply less good at creating growth-boosting innovations than it was, then spending more on r&d will not raise incomes as much as it might. It may simply produce more research papers.

A final concern about boosting government spending is cui bono. In the clubby, closed world of the 1950s and 1960s it made sense for governments to invest in r&d because one of their domestic firms—and, through its good offices, the nation’s consumers—would reap the benefits. What is more, big companies on the cutting edge were not that worried about technological competition. In 1995 a researcher at Bell Labs, the r&d titan which in its pomp earned at&t Nobel prizes, noted that “xerography was invented...in 1937, but it was only commercialised by Xerox in 1950”, and “hen the transistor was invented...at Bell Labs in 1948, several years elapsed before other laboratories acquired enough expertise in the semiconductor area to make significant contribution.”

All that has changed, thanks to greater travel, better communications and, perhaps most straightforwardly, a much greater number of researchers and research centres. As a recent paper from the imf puts it, “globalisation has intensified the diffusion of knowledge and technology across borders”. It has been doing so for some time; the Bell Labs anecdotist pointed out that following the “discovery of high-temperature superconductivity at the ibm Zurich lab in 1987, it took only a few weeks for groups at University of Houston, University of Alabama, Bell Labs and other places to make important further discoveries.”

David Edgerton of King’s College London, Britain’s foremost historian of technology, argues that “Only in techno-nationalist fantasies…does national invention drive national economic growth. In the real world, global innovation leads to national growth, and national innovation leads to global growth.” At most times and places, most of the technology which creates growth is imported from elsewhere, not made at home. In a globalised world, investing in domestic r&d will never be purely to a country’s own advantage; it will help others too, willy-nilly.

Hot-wired progress

To the extent that these concerns hold water, the worst they do is suggest that the returns to be expected from increased government r&d expenditure may be lower than some claim, and less easily captured by the nations that make them. And their ability to hold water is open to question. Dr Gordon’s thesis, like much historical argument, is limited by a sample size of one. It is also, in its overall form, familiar; the idea that the best lies in the past has a long history, and it has spent most of that history being wrong.

What is more, such declinism can be used to argue that government r&d spending, far from being futile, is vital. In the 1930s Alvin Hansen, a noted American economist, put a Gordon-like emphasis on the special qualities of certain “great inventions” when he argued that although railroads, electricity and the car had propelled growth in the past, America could not “take for granted the rapid emergence of new industries as rich in investment opportunities.” The people who argued for the government’s wartime r&d effort to persist, in a modified form, after 1945 appreciated Hansen’s argument enough to be doing something about it. Rather than taking the formation of new industries for granted, they were creating a way for government to bring them into being, thus making good any failures of private investment.

Today plenty of people reckon that the government can help unlock further inventions. In their book “Jump-starting America”, Jonathan Gruber and Simon Johnson, two mit economists, single out synthetic biology, hydrogen and deep-sea mining. Of the three it is synthetic biology, which offers new approaches to everything from petrochemicals and agriculture to medicine and computer memories, that is best placed for the “great invention” status that comes from improving the material conditions of billions of lives.

The shape of things to come

The other contender for such laurels is ai. After spending some time being visible “everywhere but the productivity statistics”, in a famous quip of Robert Solow’s, computers finally provided a measurable boost in the mid-1990s. With ever more information to learn from, information appliances which can whisper into every ear, robots at its command and applicability to any number of problems computers that use ai might yet do more than that. The fact that an ai program recently showed unmatched prowess in the prediction of protein structures that synthetic biologists might like to change underlines that innovation can and will often come about most surprisingly where two fields collide.

There are also arguments against the idea that the link between scientific research and technology-in-use has become weaker. It may well have done so in some ways; but in other ways things have speeded up. This is particularly true of the process that puts today’s innovation into the hands of millions tomorrow. Electric appliances had been around for decades before they made a definitive difference to rich-country homes. Information appliances—specifically, smartphones—have spread far further far faster. The sars-cov-2 genome sequence was shared between China and the rest of the world before there were any confirmed cases of covid-19 outside Wuhan. The vaccines enabled by that sequence may turn out to be the technology-in-use with the greatest economic impact over a single year ever seen.

As for the difficulty of capturing the benefits of national r&d spending in a global world, making use of cutting-edge technologies developed elsewhere is not possible without a lot of very highly trained locals, and such cadres are hard to produce and maintain without r&d spending. China’s immense investment in r&d (see chart 4) has produced an immense number of people with skills, know-how and curiosity, as well as institutions with the equipment they need. These researchers and engineers have developed many innovations of their own, but to date their most crucial role has been in exploiting knowledge brought in from elsewhere by fair means or foul. It is notable that, now it is in the r&d front rank, China too is grappling with a slowdown in productivity growth.

The case for more state spending on RD: Extended Excerpt Image 4


If Dr Bloom and his colleagues are correct in arguing that ideas are getting harder to find, more money may be required, in China and elsewhere, just to stand still. But raising government r&d spending in the g7 nations as far above its 1970 level, relative to gdp, as it is currently below that level would cost about $400bn a year overall: considering that the g7’s gdp is $36trn, this appears easily doable. Still, it would be worth finding ways to produce new ideas more efficiently. In much of the oecd the mechanisms and institutions through which governments support r&d are more or less the same as they were 50 years ago. There is a degree of ossification.

A new paper by Mikko Packalen of the University of Waterloo and Jay Bhattacharya of Stanford University shows some evidence of this at America’s National Institutes of Health (nih), where they find that funding for papers that build on the most recent advances has declined. Conservative funders get conservative researchers. Even darpa, an agency of America’s Department of Defence famous for funding out-there projects, is accused of taking fewer risks than it used to.

New organisations can be more innovative. Tyler Cowen of George Mason University has explored one possibility: Fast Grants, a project he launched in April with Patrick Collison of Stripe, a payments firm, dispenses grants for promising covid-19 research very quickly, usually within days. But the budget is tiny relative to what is required. Mr Biden promises to create new organisations for research on health and climate, while the British government says it plans to “experiment...with new funding models across long-term time horizons”. But the ideas are little more than sketches.

Another way to instil urgency is through a sense of mission. Dr Gordon’s point that “some inventions are more important than others” is very pertinent for governments. Technologies which let them achieve strategic goals become important, and they are willing to spend a lot on them. This can end badly. But when it works governments do not so much pick winners as make them. In the 1950s and 1960s, its strategic focus on the cold war, the American government made winners out of aerospace and electronics. In the 1970s France, always nervous about depending on others for electricity, made a winner of its nuclear industry.

Strategic programmes of this sort do not always require groundbreaking r&d. France’s reactors were based on American designs. They may need hardly any r&d at all. Germany made a winner of solar panels simply by providing massive subsidies for them, driving up demand and allowing manufacturers in China to make hay. And there is no clear evidence that the technologies governments decide that they need for strategic reasons will be those that most improve economic growth.

But such projects do typically lead to both a sense of mission among those involved and researchers from government and academia working alongside those from industry. If they do so in multidisciplinary environments—which missions often require, whether in the public or private sectors—then growth-boosting technologies may be more likely to emerge.

It will take time for new ideas to have big effects. And in a world of 24-hour media, it will be hard to sweep unavoidable stories of wasted money and failed projects under the carpet—however inevitable, even welcome, some sorts of failure may be. But at a time when the need to boost innovation has never been greater, politicians may conclude that rebooting the innovation system is worth the risk.

They also mention Tyler Cowen’s fast grants program, “….Tyler Cowen of George Mason University has explored one possibility: Fast Grants, a project he launched in April with Patrick Collison of Stripe, a payments firm, dispenses grants for promising covid-19 research very quickly, usually within days. But the budget is tiny relative to what is required…”

Good factoid, “…Amazon claimed to spend $36bn on “technology and content” last year, more than the science budgets of Britain and France combined….”

Note they also mention the Arora paper we looked at when it was released (they link it to Bloom’sGetting Harder To Find, “…A recent paper by Ashish Arora of Duke University and colleagues, which focuses on the large corporate lab of post-war America, shows how important that distinction can be. The post-second-world-war years were not only marked by a growth in government r&d spending, but also by the scientific excellence of in-house laboratories at companies such as at&t and ibm. In the 1960s researchers at DuPont published more articles in the Journal of the American Chemical Society, the field’s leading journal, than mit and Caltech combined. The production of scientific knowledge and the desire to solve real-world commercial problems were closely entwined. Science was being pulled into the economy, not just pushed; this was the environment in which, in the 1960s, the term r&d was invented. What is more, the link between scientific publication—whether publicly or privately funded—and economic improvements is weakening. “Ideas are getting harder to find,” according to a paper published in the American Economic Review in 2020. Applying econometric tools to technologies-in-use such as chipmaking and crop improvements, Nick Bloom of Stanford University and his colleagues found that, over time, more inputs—more researcher time, more money—have been needed to get the same improvement in outputs as before (see chart 3)…..”

The Economist cites Gordon as caution about the impact of state lead R&D on growth, “…there is no clear evidence that the technologies governments decide that they need for strategic reasons will be those that most improve economic growth…”“…Another way to instil urgency is through a sense of mission. Dr Gordon’s point that “some inventions are more important than others” is very pertinent for governments. Technologies which let them achieve strategic goals become important, and they are willing to spend a lot on them. This can end badly. But when it works governments do not so much pick winners as make them. In the 1950s and 1960s, its strategic focus on the cold war, the American government made winners out of aerospace and electronics. In the 1970s France, always nervous about depending on others for electricity, made a winner of its nuclear industry. Strategic programmes of this sort do not always require groundbreaking r&d. France’s reactors were based on American designs. They may need hardly any r&d at all.Germany made a winner of solar panels simply by providing massive subsidies for them, driving up demand and allowing manufacturers in China to make hay. And there is no clear evidence that the technologies governments decide that they need for strategic reasons will be those that most improve economic growth…. Another concern is that emphasising government r&d oversimplifies innovation. What matters to the economy are not scientific discoveries or the innovations at technology’s cutting edge,but the technology people and firms make widespread use of—not papers in peer-reviewed journals or even cool lab creations, but things which pervasively improve the everyday and generate economic activity in doing so. And there is no simple production line which, fed with new scientific understandings, produces such technological change….”

Ed Comment:“…But they don’t seem to have a clue about what makes for good and bad government sponsored R&D (at least in your summary of their conclusions). Perhaps their only conclusion is “more.” Here’s my problem with that. 1) If properly trained talent is the constraint, then more of A means less of B. And we saw, from a prior paper, that more PhDs means lower quality PhDs. So talent is a constraint. 2) Properly trained talent takes time to produce. We were a manufacturing-based economy with lots of engineers. Now we are a info-based economy with lots of programmers. The 50 year old engineers didn’t become programmers. It was the talented 20 year olds who became programmers who gradually pushed the talent out of manufacturing. So you don’t just instantaneously get the expertise you want. 3) I don’t think you can generalize from the past when government was a large share of R&D to today when it’s not and corporate R&D has grown hugely and is surely more productive. More than ever, more government directed R&D means less talent devoted to privately directly R&D. that doesn’t seem like a wise tradeoff. 4) I do believe that, on average, military R&D is inherently more productive than other government funded R&D. (Look at medical R&D, which is increasing life expectancy from 85 years. From a productivity standpoint, that’s a big waste/drain. Military R&D seems a) more likely to solve general purpose problems like information processing, signal recognition, management control, etc. And b) it’s managed by generals/managers who get fired/not promoted if they don’t produce tangible results. That doesn’t happened with most gov funded R&D…”

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Showing 193 database articles primarily about Government Spending

The Fairest Way to Reform Social Security May Also Be the Worst Way to Grow the Economy

AI Summary. Raising payroll taxes to fix Social Security's funding gap preserves earned benefits but reduces take-home pay without added compensation, shrinking labor supply and slowing economic growth.

Andrew Biggs American Enterprise Institute
Date Posted:
May 28, 2026
Is Database:
Database
Is Important:
Important

Biggs argues that “fair” approaches to restoring Social Security solvency – those that do not cut already accrued benefits – are less effective than “unfair” ones that do, because the latter incentivize increased work effort, raising growth and revenue.

Biggs argues that “fair” approaches to restoring Social Security solvency – those that do not cut already accrued...

Does preserving Social Security benefits require sacrificing economic growth?

Core argument: A 5.2 pts payroll tax increase to 17.6% drives reduced labor supply and slower economic growth vs. the status quo.

Imagine that Social Security reform follows the fairness model, in which accrued benefits are paid in full but the rate at which future benefits are earned is reduced. A simple way to do this is to increase the payroll tax rate To keep Social Security permanently solvent, meaning through 75 years and beyond, would require an immediate and permanent increase in the payroll tax rate [from] 12.4% to 17.6%. The higher rate would decrease labor supply and reduce economic growth. [Consider] an alternate reform, which looks clearly unfair: fix Social Security’s funding gap entirely by reducing accrued benefits that Americans already have earned. As of 2025, Americans had accrued $54 trillion in Social Security benefits. Social Security’s unfunded obligation as of 2025 was $26 trillion. So, roughly, this means cutting Americans’ “earned benefits” in half. [Analyzing the 1977 reform that undid the notorious 1972 “double-indexing” of benefits, a group of economists], using SSA earnings data, found that, for every dollar of lost benefits, the affected Americans increased their earnings by 61 cents. Moreover, these additional earnings would be taxed by Social Security, further strengthening the program’s finances. In effect, this makes cutting benefits a “cheaper” way to fix Social Security than raising taxes, because people respond in ways that also increase tax revenues.

Takeaways by Macro Roundup® AI

  1. A 5.2 pts payroll tax increase to 17.6% drives reduced labor supply and slower economic growth vs. the status quo.
  2. $54 trillion in accrued Social Security benefits vs. the unfunded obligation reveals that benefit cuts would reduce growth drag but.

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The World’s Most Surprising Capitalist Makeover Is Under Way in Sweden

AI Summary. Sweden has privatized nearly half of primary healthcare and one in three public high schools, shrinking public social spending to 24% of GDP — comparable to the U.S. and well below France and Italy — while projecting ~2% annual growth through 2030, double the rate of France and Germany.

Tom Fairless Wall Street Journal
Date Posted:
May 12, 2026
Is Database:
Database

Swedish public social spending is now 23.7% of GDP, just 1pp above that of the US and well under France’s 31.6%. Market-based reforms in the 1990s brought overall government spending down from 69.4% to 49.3% in 2024.

How is Sweden's shift to privatization impacting its economic growth?

Core argument: Sweden’s public social spending fell to 24% of GDP, matching the U.S. and 6+ pts below France/Italy, driving lower taxes.

For decades, Sweden was shorthand for the brand of high-tax, high-spend government that managed people’s lives from cradle to grave through state-run hospitals, schools and care homes. No longer. With little fanfare, this Nordic country of 11 million has embraced capitalism. Today, nearly half of primary healthcare clinics are privately owned, many by private-equity firms. One in three public high schools is privately run, up from 20% in 2011. School operators are listed on the stock exchange. The capitalist makeover has allowed Sweden to do what few industrialized countries have managed in recent years: shrink the size of the state. That has enabled the government to sharply lower taxes and, economists say, sparked a surge in entrepreneurship and economic growth. Its total public social spending bill—which includes healthcare, education and all welfare payments—has fallen to 24% of gross domestic product, similar to the U.S. and well below the over 30% for nations like France and Italy. Sweden’s economy is expected to grow by around 2% a year through 2030, roughly the same pace as the U.S. and double the growth rates of France and Germany, according to an April forecast by the International Monetary Fund.

Takeaways by Macro Roundup® AI

  1. Sweden’s public social spending fell to 24% of GDP, matching the U.S. and 6+ pts below France/Italy, driving lower taxes.
  2. Privately-run primary healthcare clinics reached nearly 50% of the market vs. 20% for high schools in 2011, demonstrating accelerating privatization.
  3. Sweden’s projected 2% annual GDP growth through 2030 doubles France and Germany’s rates, resulting from state downsizing and capitalist sector.

Related Articles:

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  • The US Has One of the Highest Fertility Rates Among Peer Countries — As of 2022, the US had a “tempo fertility rate,” which is adjusted for life-cycle effects, of 1.82 – among the highest of advanced economies, and ~ on…
  • Government Spending
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How Policy and Demographics Are Reshaping SNAP: From Families with Children to Older Adults

AI Summary. SNAP enrollment has doubled from 6% to 12% of the U.S. population since 2000, with real costs per capita rising 179% to $279 annually, driven by policy expansions and benefit increases that prevent costs from fully retreating after economic downturns.

Angela Rachidi American Enterprise Institute
Date Posted:
May 1, 2026
Is Database:
Database

About 40mm Americans, 12% of the population, receive SNAP benefits, up from 6% in 2000. In 2023, only 34% of these households included children, down from 49% in 2010, while 36% contained an elderly person, up from 16% in FY2010.

How Are Policy Changes and Demographic Shifts Impacting SNAP Enrollment?

Core argument: SNAP participation doubled from 6% to 12% of the population between FY2000–FY2025, driven by policy expansions and demographic shifts outpacing.

Comparing FY2000 with FY2025, the share of the population receiving SNAP doubled from 6% to 12%, while real SNAP costs per capita increased by 179%—from roughly $100 per year to $279 (in 2024 dollars). Despite this growth, per capita participation and costs in FY2025 remained below their pre-pandemic peak in 2013, which coincided with the aftermath of the Great Recession and changes in eligibility and other policies stemming from the 2008 Farm Bill. SNAP is countercyclical, meaning that all else equal, the number of people receiving SNAP should rise during recessions because of increased unemployment and decline as the economy recovers, [though] overall SNAP participation has grown faster than changes in the unemployment rate alone would predict. Over the long run, and especially since FY2020 (due to the Thrifty Food Plan’s increase in the maximum SNAP benefit), costs per capita have not returned to prerecession levels after a period of high unemployment. In FY2023, the share of SNAP households containing an elderly person (36%) exceeded the share containing a child (34%) for the first time. This was a sharp departure from the early 2000s, when more than half of SNAP households contained a child and less than 20% included an elderly person (Figure 2).

Takeaways by Macro Roundup® AI

  1. SNAP participation doubled from 6% to 12% of the population between FY2000–FY2025, driven by policy expansions and demographic shifts outpacing.
  2. Real per capita SNAP costs rose 179% from $100 to $279 (2024 dollars) over 25 years, with the Thrifty Food.
  3. FY2025 SNAP enrollment remains 8–12% below the FY2013 peak despite 25-year growth, indicating countercyclical policy design successfully targets recession-driven need.

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  • Government Spending
  • Fiscal Policy
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Washington’s Growing Portfolio: Tracking U.S. Government Investments

AI Summary. The U.S. government has deployed $20.9bn across 16 direct equity deals, expanding beyond grants, loans, and tax incentives into direct ownership stakes. This approach has mobilized an additional $4.75bn in private co-investment alongside the government's positions.

Jonathan Hillman Council On Foreign Relations
Date Posted:
April 23, 2026
Is Database:
Database

Since January 2025, the USG has taken equity stakes totaling $20.9B in 16 American businesses. $8.6B, ~41% of the total, was invested in critical mineral miners and processors, while $8.9B, ~43% of the total, funded the government’s 10% stake in Intel.

Core argument: The U.S. government deployed $20.9bn in direct equity investments since January 2025, expanding beyond traditional grants and loans to drive.

Since January 2025, the U.S. government has invested $20.9 billion across sixteen deals involving direct ownership, broadening a toolkit that has traditionally focused on grants, loans, and tax incentives. The Department of Commerce has participated in six such deals, including taking a 10% stake in Intel. The Development Finance Corporation, the United States’ development bank, has executed three equity transactions in critical minerals, healthcare, and infrastructure. The Department of Defense leads the way with seven such deals. The U.S. government is also working with a range of partners and has mobilized an additional $4.75 billion in investment. Private co-investors include J.P. Morgan, Goldman Sachs, and others.

Takeaways by Macro Roundup® AI

  1. The U.S. government deployed $20.9bn in direct equity investments since January 2025, expanding beyond traditional grants and loans to drive.
  2. The Department of Defense leads with seven equity deals of the sixteen total, establishing direct ownership as a core national.
  3. Commerce Department’s 10% Intel stake exemplifies government equity participation in critical infrastructure, mobilizing private capital alongside public investment to strengthen.

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How Federal Spending is Distributed by Age

AI Summary. Retirees receive 62 cents of every age-assignable federal dollar, driven primarily by Social Security and Medicare, which together account for 80% of all federal spending directed at adults over 65.

Kent Smetters University of Pennsylvania
Date Posted:
April 2, 2026
Is Database:
Database
Is Important:
Important

In 2025, of the 62.5% of Federal spending that is age-assignable on a per-capita basis, US retirees aged 65+ were given $43,700, working-age adults 26–64 got $7,300, and children and young adults got $4,300.

Core argument: Federal spending heavily favors retirees, who receive 38.6 percent of total outlays through Social Security, Medicare, and related programs.

We trace spending items within 52 general spending categories, totalling $7T for the 2025 Fiscal Year. We are able to classify a total of $4.4T across three broad age categories and assign the remaining $2.6T to an all-ages residual. Retirees (adults age 65 and older) receive $2.7T, equal to 38.6% of total federal outlays and 61.9% of age-assignable spending. Working-age adults (ages 26-64) receive $1.2T (27.9% of age-assignable), and children and young adults (under age 26) receive $449B (10.3%). The dominance of the retiree category reflects two programs above all others: Social Security and Medicare. Social Security directs $1.3T to retirees, and Medicare sends $835B. Together, they account for 80% of all age-assignable spending on older adults. But the retiree total extends beyond these two entitlements. Federal employee retirement benefits ($169B), housing assistance for older households, Medicaid long-term-care spending, and VA medical care all contribute, making the federal budget more retiree-focused than a Social Security–only lens would suggest.

Takeaways by Macro Roundup® AI

  1. Federal spending heavily favors retirees, who receive 38.6 percent of total outlays through Social Security, Medicare, and related programs.
  2. Working-age adults and children combined receive less than half the spending directed to retirees despite representing larger population segments.
  3. Social Security and Medicare alone account for 80 percent of all federal spending on older Americans, dominating the retiree budget.

Related Articles:

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Has the United States Bent the Health Care Cost Curve?

David Cutler and Lev Klarnet Brookings Papers On Economic Activity
Date Posted:
March 30, 2026
Is Database:
Database
Is Important:
Important

In 2024, medical spending as a share of GDP was just above its 2010 level and 15% ($977B) below its 2010 forecast; 21% of the gap was due to technology, 24% to price reductions, and 11–27% to reforms such as prior authorization and higher deductibles.

Five factors are important in the slowdown in spending [Figure 16]. The first is technology-associated changes in health and site of care. These correspond to the subsequent innovations in our model. Together, technologies along these lines account for 21% of the overall cost slowdown and double that in Medicare. Second, long-run supply is more elastic than short-run supply, which lowers spending over time. This is particularly apparent in the impact of patent expiration for pharmaceuticals and in relative declines in imaging reimbursement. We estimate that greater long-run supply explains 6% of the spending slowdown. Third, a variety of market changes contribute to reduced and more elastic demand, including increased cost sharing paid by consumers, physicians not paid as much for using technologies, and insurers imposing restrictions on technology use - a rough guess is that these account for 11 to 27% of the spending slowdown. Fourth, the population is healthier in ways that reduce spending. This includes fewer hospitalizations for smoking-related conditions and reduced need for formal home health care. The birth rate has fallen as well, which reduces the need for care. We estimate improved population health explains 7% of the spending slowdown. A major component is slower price growth. Net of upcoding, we estimate lower price growth explains 24% of the spending slowdown.

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