June 16, 2026
Spending on the hardware that trains and runs artificial intelligence has grown rapidly over the past years. One of the clearest indicators of how rapidly spending has increased is the revenue of American chipmaker NVIDIA.
The company accounts for around 85% of the global market for AI chips. These are graphics processing units (GPUs), originally built for video games but well-suited to the parallel computation AI training requires.
The chart shows NVIDIA's quarterly revenue in US dollars, split by end market — sales to data-center customers (cloud providers and AI companies) in green, and sales for gaming, consumer devices, and cars in red.
In early 2014, data centers and AI accounted for just 5% of its revenue; gaming was the biggest single segment. Twelve years later, the ratio has flipped: data centers and AI now make up over 90% of revenue. The revenue in this segment has grown 1,300-fold over the period, from $57 million to more than $75 billion per quarter.
The data centers and AI segment was already growing fast between 2014 and 2022, with revenue doubling every 16 months on average. ChatGPT's release in late 2022, alongside the broader push to deploy AI at scale, has accelerated that pace: since then, revenue has doubled every 11 months.
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Today
Hannah Ritchie and Pablo Arriagada
Rich countries spend, on average, the equivalent of $7,300 per person on healthcare each year. This includes public and private expenditures.
In low-income countries, the equivalent is only around $125 per person.
This is based on spending data from the World Health Organization’s Global Health Observatory, which you can see in the chart across levels of income. The data is adjusted for differences in living costs between countries.
That means rich countries spend around 60 times as much per person on healthcare as the poorest countries.
This resource gap is one of the reasons for the stark differences in health outcomes. The average life expectancy is around 16 years lower in poorer countries, and other health measures, such as child mortality, maternal mortality, and disease burden, tend to be far worse.
August 13
Hannah Ritchie
Many countries have been facing intense heat this summer, and with predictions of a strong El Niño on the way, next summer could be even hotter. This has ignited debate on the need for cooling methods and technologies — most prominently, air conditioning (AC).
But how do rates of air conditioning usage vary across the world? Large international comparisons are hard to come by, but the International Energy Agency just published some new estimates for a select number of countries and regions.
The chart shows the estimated share of households with AC in 2025.
In Japan and the United States, AC adoption is almost universal; at least 90% of households have it. Most households in China also have AC; this share has increased rapidly over the past decade.
Adoption rates in Southeast Asia, Europe, and India are far lower, but for different reasons. In lower-middle-income countries like India, the reasons are often economic: AC would bring huge benefits, but many households cannot afford the upfront cost or the power to run it. Much of Southeast Asia faces a similar barrier.
In many European countries, it’s less of an economic barrier and more of a historical and cultural one. AC was not seen as a necessity because heatwave events were less frequent and intense than they are today. That is changing, and will continue to do so as the planet warms.
August 11
Esteban Ortiz-Ospina
Most high-income countries have reduced road deaths substantially over the past decades. But the United States has made much less progress than other rich countries, and has even gone backward since the mid-2010s.
In this chart, I compare the trends for the US and a selection of other high-income countries to illustrate this point.
Consider Germany, which provides a useful comparison. In 1980, the US had about 25 road deaths per 100,000 people, and Germany had 22. But in the decades that followed, Germany’s rate fell steadily, while the US rate declined more slowly, and even rose again. In 2023, the last year in the data, the US rate was more than 4 times Germany’s.
In 2024, the National Academies of Sciences, Engineering, and Medicine in the US published a report that traces the gap to a mix of road-safety measures that other rich countries use more widely, such as speed and red-light cameras or lower limits where people walk.
There’s also a connection with how much Americans use their cars. In the US, people drive much more. However, that doesn’t fully explain the gap — US roads are also significantly more dangerous than those in Germany per kilometer traveled.
August 8
Hannah Ritchie and Pablo Rosado
What we pay for something in a shop often doesn’t reflect its true cost. Producing goods causes damage through carbon emissions that drive climate change, but the receipts for that damage rarely show up in the price. The costs are often hidden and diffuse, but that doesn’t mean it isn’t real.
One way to make people pay the full cost is to introduce a carbon price. This can take the form of a carbon tax or a trading system, which caps emissions and lets companies buy and sell permits.
Many countries now do this. Around 30% of the world’s carbon dioxide (CO₂) emissions have a carbon price. In the chart, you can see that this has doubled in the last decade. The biggest part of this rise came from China’s introduction of a trading system in its electricity sector.
While more and more of the world’s production has a carbon price, most prices are incredibly low. In a recent article, we showed that most priced emissions were valued at $10 or lower. That’s well below most estimates of the “social cost of carbon”, which tend to be greater than $100 per tonne.
Simply having a carbon price is not enough. It also needs to be high enough to change what people buy and make low-carbon alternatives worth investing in.
August 6
Esteban Ortiz-Ospina
Renewables supplied around 6% of Morocco’s electricity in 2000; by 2025, that share was four times as high.
That’s what the chart shows: the growing share of electricity production that comes from renewables.
Morocco’s rise stands out in the region for how it got there – several other African countries with rising renewables shares, like Sudan, have relied primarily on hydropower. Morocco, by contrast, has achieved it with wind and solar production, as part of a targeted policy push.
This has made Morocco’s electricity mix cleaner: each unit of electricity now comes with a larger contribution from renewables. But total fossil-fuel generation has not fallen. New solar and wind production has gone toward meeting rising demand, rather than displacing coal.
Morocco still burns nearly three times as much coal for electricity as it did in 2000, although coal generation appears to have plateaued in recent years.
August 4
Hannah Ritchie and Pablo Arriagada
Improved crop yields have allowed the world to feed billions more people while sparing forests and other land from agriculture.
Global yields of cereal crops have tripled since 1961. As you can see in the chart, they have increased in all regions.
However, yields across most African countries have lagged behind. At 1.7 tonnes per hectare, they’re still less than half the global average of 4.2 tonnes.
This is bad for farmers: they get much smaller harvests and live on much lower incomes. It makes it harder for countries to feed their populations. And it’s a problem for biodiversity: lower yields mean that farmland has to expand into wild habitats.
Increasing agricultural productivity — particularly across Africa — is one of the biggest challenges of this century.
August 1
Esteban Ortiz-Ospina
In recent decades, sub-Saharan Africa has been the world’s fastest-urbanizing region.
The region’s most populous country, Nigeria, shows the scale of that change. In 1950, only around 1 in 10 Nigerians lived in a city. Today, it is nearly 1 in 2.
As you can see in the chart, over the same period, the share living in rural areas fell, but so did the share living in towns and suburbs, which had been the largest group in 1950 by a substantial margin.
Nigeria’s population became much more concentrated in cities — both because people migrated into established cities, and because new ones emerged as towns and suburbs grew dense and large enough to be classified as cities.
In early-industrializing countries, rapid urbanization was often closely tied to industrialization. Today, in many lower-income countries, including across much of sub-Saharan Africa, it is happening under different conditions.
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