When we think about modern innovation, we usually picture hyper-advanced technology like artificial intelligence or complex robotics. But some of the smartest ideas for our future are actually incredibly simple and low-tech. Right now, a beautiful concept is popping up in neighborhoods all over the globe. It is called the Library of Things.
Instead of borrowing paper books, these public community centers let people borrow physical objects for free or for just a few dollars.
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Photo by: Canva/Boogich from Getty Images Signature
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How the Sharing System Works
Imagine walking into a regular public library. But instead of tall rows of bookshelves, the walls are lined with useful, everyday items. You can use a digital catalog to browse through different sections depending on what you need.
For DIY projects, you can borrow power drills, lawnmowers, or ladders. If you want to try a new hobby or go camping for the weekend, you can check out tents, sewing machines, or telescopes. You can even find kitchen appliances for hosting a party, like chocolate fountains or giant soup pots. You just check the item out, take it home, use it, clean it, and bring it back for the next neighbor.
Solving the Power Drill Problem
This simple idea is a brilliant way to solve two major modern problems: high costs and unnecessary waste.
Think about the classic power drill problem. Economists often point out that the average home power drill is used for only about 13 minutes over its entire lifespan. It takes a massive amount of planetary resources to mine metals, manufacture a plastic drill, and ship it across the ocean. After all that effort, it usually just sits in a dark garage forever. Sharing a single drill among dozens of neighbors instantly reduces factory waste.
High-quality tools, camping gear, and party appliances are also very expensive to buy up front. Sharing programs give everyone in a town equal access to great equipment, no matter their budget.
Innovation Through Sharing
The Library of Things is a great reminder of what sustainability really means in our daily lives. It shows us that we do not always need to invent complicated new technology to build a better future. Sometimes, true innovation is just finding a smarter, kinder way to share the resources we already have.
By rethinking how we consume products, we can save money, reduce clutter, and protect the planet. It proves that small, community-driven ideas can make a massive difference in how we live and interact with our world.
The Italian Embassy to Jordan, supported by the Italian Agency for Development Cooperation (AICS) Office in Amman, recently convened key stakeholders to advance a strategic initiative focused on the sustainable development and enhancement of Jordan’s outstanding archaeological heritage at Mukawer, the historic site of St. John the Baptist’s imprisonment, and Abila, one of the cities of the dodecapolis. Funded by the European Union and implemented by the AICS in collaboration with the Department of Antiquities (DoA) and the University of Perugia, the project is aligned with the Kingdom’s national tourism development objectives and looks ahead to the 2029 and 2030 commemorations associated with the sites linked to St. John the Baptist (Machaerus Fortress) and Jesus Christ (the Baptism Site).
The initiative aims to further strengthen Jordan’s position as a destination for religious and cultural tourism, while promoting a shared spiritual heritage rooted in both Christian and Islamic traditions and fostering long-term, sustainable economic growth.
Based on a fruitful and longstanding cultural partnership with Jordan, Italy is fully committed to contributing to enhancing archaeological sites not only as historical landmarks, but as dynamic resources for strengthening local communities and creating sustainable employment opportunities.
The implementation phase of the project “Support to the socio-economic recovery and promotion of sustainable local development through the enhancement of cultural heritage sites” will start through two key site events that will bring together local authorities, academic partners, technical experts and local community. These two events, a site visit at Mukawer on Thursday, July 2nd, 2026, followed by a session at Abila on Sunday, July 5th, 2026, will set a major milestone for the project’s execution. During both days, key partners will present upcoming works, expected results, and the framework’s archaeological, architectural, and conservation plans, marking the first major step forward after extensive preparation.
Beyond physical infrastructure, the project places strong emphasis on the protection of the landscape and the enrichment of the visitor experience. This includes significant investments in securing access routes to the Mukawer fortress and in the preservation of historical caves along the path, which serve to highlight the tangible and intangible heritage of the area.
Capacity building remains a central pillar of the initiative as well. Specialized training programs for the staff of the Ministry of Tourism and Antiquities (MoTA) and the Department of Antiquities (DoA) are scheduled to begin on July 14, in partnership with Yarmouk University, focusing on integrated conservation and advanced archaeological research methodologies.
Dallas Stadium is one of 16 venues for the 2026 Fifa World Cup. Jeffrey McWhorter/EPA
When football commentators analyse a World Cup match, they tend to focus on tactics, technical ability, physical conditioning and psychology. If a team wins away from home, we hear about mentality. If a player scores a spectacular goal, we praise their vision or instinct. Yet there is another factor that receives remarkably little attention: the stadium itself.
The 2026 Fifa World Cup, hosted across the United States, Mexico and Canada, presents perhaps the greatest architectural experiment in the tournament’s history. Sixteen stadiums, spread across the three countries, are staging matches in environments that differ dramatically in size, scale, form, lighting conditions and spatial character.
Some are purpose-built football grounds. Others are enormous NFL arenas adapted for the world’s game. Several feature retractable roofs. Others remain open to the elements. Together, they create a fascinating question: can the architecture of a stadium influence player performance?
As an interior designer, I have spent several years researching the relationship between footballers, spatial awareness and stadium design. My research began with a simple observation: across football, teams consistently perform better at home than away.
Traditional explanations focus on crowd support, yet during the COVID pandemic, when matches were played behind closed doors, home advantage did not disappear. This suggests there may be more complex factors at work.
Playing the space
A player receiving a pass rarely begins processing information at the moment the ball arrives. Long before that pass is played, they have already built a mental picture of their surroundings. They understand where they are positioned in relation to the touchline, the penalty area, teammates and opponents. But they also orient themselves through a series of architectural cues embedded within the stadium itself.
These cues can be obvious or subtle. The angle of a stand. The location of a tunnel. The shape of a roof. The position of advertising. The colour surrounding the pitch. The direction of sunlight. The edge of a seating tier. Together, these become reference points that help players orient themselves and make decisions faster.
John Beck, Cambridge City manager in the early 1990s, would set up key markers in each of the four corners of the team’s home ground. The markers would be hoardings printed with the word “quality”. When full backs would receive a ball deep in their own half they would look up and were asked to hit the ball as hard as they could towards the quality signs. These were nicknamed “quality passes”. While quite a primitive tactic, it was effective for Beck; he guided the club to two successive promotions and to two successive quarter-final appearances in the FA Cup.
Mercedes-Benz Stadium in Atlanta, Georgia is one of the 16 venues for the 2026 World Cup. Kurtis Toliver/Shutterstock
At the 2026 World Cup, players have encountered some of the most distinctive football environments ever assembled for a single tournament. In Dallas, matches are taking place inside a stadium capable of holding more than 90,000 spectators. For many players, this will be the largest enclosed sporting environment they have ever experienced.
Suspended above the field are giant video screens so large they have become part of the stadium’s identity. Whether consciously or unconsciously, such dominant visual elements contribute to the player’s reading of space.
In Atlanta, a retractable roof and climate-controlled interior create conditions unlike those found in most traditional football grounds. The stadium’s vast pinwheel-esque roof structure and glass end wall produce a highly controlled environment where wind, temperature and external distractions are largely removed.
Mexico City’s Estadio Azteca provides a very different experience. It is one of football’s great cathedrals, steeped in memory and history. Generations of players have competed there, from Pelé in 1970 to Maradona in 1986. Unlike many newer venues, the Azteca was designed specifically for football, creating a spatial relationship between players and spectators that feels fundamentally different from many multipurpose grounds.
Meanwhile, venues such as Vancouver’s BC Place, with its retractable cable-supported roof, or Seattle’s Lumen Field, with its dramatic open end framing the city skyline, create visual identities that players must quickly learn to navigate and interpret.
Estadio Azteca in Mexico City is one of football’s great cathedrals. Macbeth_GP/Shutterstock
From a football perspective, the challenge is adaptation. The German footballer Thomas Müller once described himself as an “interpreter of space”, a phrase that captures something important about elite performance. Great footballers appear to slow down time. They often know what they are going to do before the ball reaches them. This ability is developed through experience and familiarity.
The more often players operate within a particular environment, the more effectively they build what psychologists call cognitive maps. Over time, the surroundings become familiar and require less conscious processing. This familiarity creates fractions of a second of additional thinking time. At the elite level, those fractions can make the difference between scoring and missing, winning and losing.
The challenge of a World Cup is that players rarely have this luxury. Teams move rapidly between venues. Conditions change from match to match. Architectural cues that were familiar in one stadium disappear in the next. Players must repeatedly rebuild their understanding of space and place. This is why preparation becomes so important.
For decades, coaches have analysed opposition tactics in meticulous detail. Yet comparatively little attention has been paid to preparing players for the architectural characteristics of the stadium itself. Understanding sightlines, lighting conditions, pitch orientation, roof structures and spatial landmarks could offer marginal gains that become decisive in elite competition.
From a design perspective, this raises an equally interesting question. Modern stadiums are increasingly designed around fan experience, hospitality and commercial revenue. Yet the primary performers within these spaces remain the players themselves. If architecture can influence orientation, perception and decision-making, should stadium design place greater emphasis on players? Perhaps this will be the next frontier in sporting performance.
We are used to looking at the Middle East and North Africa (MENA) region through the geopolitical lens of wars, borders, and oil pipelines. But today, a resource struggle is playing out under our noses, wrapped in a very clean, eco-friendly package. What is being presented by Western countries as a global green transition is, in many cases, reproducing old patterns of economic dependence under a new environmental banner. In fact, when you strip away the polite diplomacy and the dry academic terminology, the climate-related action required of the developing world looks less like a shared global rescue mission and more like climate colonialism by the developed world.
To see the unfairness at the heart of this system, all you have to do is look at who caused the mess versus who is paying for it. Over the past two centuries, Western nations built their wealth, powered their cities, and secured their high standards of living by burning fossil fuels without a second thought. They effectively used up the world’s carbon budget in order to get rich. Now that the planet is facing an ecological crisis, the same countries want to impose universal emission targets on everyone equally.
It is a glaring double standard. Having reached a plateau of sorts, the industrialized West is essentially kicking out the developmental ladder behind it and telling those countries still building their infrastructure that they aren’t allowed to clamber up. This tension has historically strained relations between several Western countries and China, which is arguably the world’s foremost developing power. China aside, the MENA region, which has contributed a tiny fraction of historical global emissions but now bears the brunt of the physical consequences—from heatwaves to dried-up water sources—has not escaped the attention of the West. The latter continues to demand immediate, drastic emission cuts by the MENA countries.
Western states are also turning to Egypt and Morocco as prime locations for large-scale renewable energy and green hydrogen projects. With their abundant sunshine, wind resources, and proximity to Europe, these and other MENA nations are a favorable location for such enterprises, which are celebrated as beautiful examples of international cooperation in pursuit of renewable energy. However, if you look at where the power actually goes, the reality is chastening. A huge chunk of the clean electricity generated by these mega-projects isn’t being used to stabilize local power grids, prevent regional blackouts, or lower utility bills for the communities living in the vicinity of solar panels. Instead, it is being sent directly across the Mediterranean via massive undersea cables to power European factories, light up European homes, and charge European electric cars.
Even the international “carbon offset” market—whereby companies strive to compensate for their emissions by paying for green projects elsewhere that are intended to absorb an equivalent amount of carbon dioxide—has turned into a territorial grab. Major Western polluters such as commercial airlines, oil conglomerates, and Silicon Valley technology giants don’t want to cut their emissions because that would hurt their profits. To offset their burning of fossil fuels, these firms buy up huge tracts of land in developing countries such as Kenya, Tanzania, Uganda, and Zimbabwe, plant trees there, and then claim that they’ve “neutralized” their pollution. Companies that have done this include Delta Air Lines, Shell, Microsoft, Meta, and TotalEnergies. Critics argue that carbon offsetting reduces the incentive to cut emissions at the source while shifting the burden onto developing countries.
Then there is the financial trap. When MENA (and other) countries ask for the capital they need to adapt to severe climate shocks, such as rising sea levels threatening the fertile soil of Egypt’s Nile Delta, their Western counterparts rarely respond with direct compensation or reparations for the global damage their centuries-long industrialization has caused. Instead, the West offers “climate finance,” which is usually just a fancy term for high-interest sovereign loans. Vulnerable nations are forced to take on massive debts just to survive a crisis they didn’t create.
This creates a predatory cycle in which poor countries must divert their limited national budgets to pay back foreign banks in Washington, London, or Brussels, instead of investing that money into their own healthcare, education, or public services. During the 2022 United Nations Climate Change Conference in Sharm al-Sheikh, Egypt repeatedly urged wealthy nations to provide larger grants as well as compensation for climate-related losses suffered by hard-hit countries. Though initiatives such as Egypt’s Nexus of Water, Food and Energy program—an action plan for combating the effects of climate change—have attracted billions of dollars, much of the support still comes through loans and blended finance rather than direct compensation. This adds to concerns that the West is saddling climate-threatened economies with significant debt.
It’s as though colonialism didn’t disappear when foreign empires pulled their troops out of the MENA region. The new variant, climate colonialism, has dispensed with flags in favor of corporate sustainability targets, carbon credits, and promises of a world gone green. Yet the structural parallel between the old global energy economy and the new green transition is impossible to ignore. Historically, the West exploited MENA’s oil in order to fuel its rise to power. Today, it is exploiting the region’s sun, wind, and land to clean up the toxic side effects of that ascent. The West secures for itself green energy, clean air, and the right to lecture the rest of the world on sustainability, while countries from the Middle East to North Africa are left with droughts, mounting debt, and a new layer of economic dependency.
Climate change is a real and terrifying emergency that requires urgent action. But the global framework ostensibly meant to combat it is rooted in power, not fairness. In fact, the rules are rigged against the people paying the highest price. Only when wealthy nations begin treating climate finance as a matter of historical responsibility—providing grants instead of loans, supporting local ownership of renewable projects, and ensuring that developing countries are the first to benefit from their own natural resources—can the green transition become a genuinely equitable phenomenon. Until then, with environmental policies designed exclusively in Western capitals and corporate boardrooms, renewable energy will remain wedded to an extractive industry.
Angie Omar is an accomplished international journalist, editor, producer, and writer with a wealth of experience in the news and politics industries.
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Diwan
Diwan, a blog from the Carnegie Endowment for International Peace’s Middle East Program and the Malcolm H. Kerr Carnegie Middle East Center, draws on Carnegie scholars to provide insight into and analysis of the region.
Representatives from governments, regional organizations, United Nations agencies, technical institutions and city authorities gathered in Algiers for a three-day regional workshop on urban resilience, smart cities and risk-informed development, reaffirming their commitment to building safer, more resilient and sustainable cities across the Arab States.
Organized alongside the inaugural meeting of the Arab Urban Resilience Committee, the workshop provided a regional platform to exchange knowledge, strengthen institutional coordination, and identify practical approaches for integrating disaster risk reduction into urban planning, governance and investment.
The event was organized by the League of Arab States (LAS), the Arab Centre for the Prevention of Earthquake and Other Natural Disasters (ACPEND), the United Nations Office for Disaster Risk Reduction (UNDRR), UN-Habitat, and regional partners, reflecting a shared commitment to advancing risk-informed urban development in support of the Sendai Framework for Disaster Risk Reduction 2015–2030 and the Sustainable Development Goals.
Advancing risk-informed urban resilience
The workshop focused on translating global commitments into practical action at the national and local levels, emphasizing the need to strengthen governance, improve risk-informed planning, and promote investments that enhance urban resilience.
Participants explored regional priorities for addressing urban risks, integrating disaster risk reduction into urban development policies, strengthening institutional coordination, and reinforcing collaboration between national and local authorities to better anticipate, manage and reduce current and emerging risks.
Discussions also highlighted the growing importance of resilient cities in addressing the interconnected challenges of climate change, rapid urbanization, infrastructure development and disaster risk, while ensuring that resilience is embedded within sustainable development planning.
From commitment to implementation through MCR2030
UNDRR facilitated a dedicated session on the Making Cities Resilient 2030 (MCR2030) initiative, showcasing progress across the Arab region and demonstrating how cities are translating global commitments into concrete local action.
The session highlighted practical tools and approaches for strengthening urban resilience, including the MCR2030 roadmap, the Disaster Resilience Scorecard for Cities, resilience action planning, disaster risk financing, disaster loss and damage data systems, and the Early Warnings for All initiative.
Participants also exchanged experiences from cities including Salalah and Alexandria, illustrating how local leadership, peer learning and partnerships are helping cities move from resilience planning to implementation. The discussion underscored the value of city-to-city cooperation and regional knowledge exchange in accelerating resilience action across the Arab region.
Building greener, smarter and more resilient cities
Participants explored how nature-based solutions, smart city approaches and digital innovation can strengthen resilience while supporting sustainable urban development.
Sessions examined the growing impacts of climate-related hazards, including extreme heat, flooding, drought and environmental degradation and highlighted the importance of resilient infrastructure, integrated urban planning, sustainable finance and community engagement in reducing disaster risk.
The workshop reaffirmed that resilient cities require coordinated action across all levels of government, supported by strong partnerships with academia, the private sector, civil society and local communities.
Strengthening regional cooperation
A key outcome of the meeting was the establishment of the leadership of the Arab Urban Resilience Committee, marking an important step towards strengthening regional cooperation on urban resilience.
Recognizing the leadership demonstrated by the City of Salalah through its engagement in the MCR2030 initiative and its contribution to advancing urban resilience across the region, the Sultanate of Oman was selected to chair the Arab Urban Resilience Committee, with Algeria and the State of Palestine serving as Vice-Chairs. The Committee will provide a regional platform to promote collaboration, facilitate knowledge exchange, and support the implementation of risk-informed urban resilience policies and practices across the Arab States.
The workshop concluded with renewed commitment from participating countries and partners to strengthen regional cooperation, enhance technical exchange, and accelerate the implementation of risk-informed urban development.
By connecting global frameworks with national policies and local action, participants reaffirmed that resilient cities are fundamental to protecting development gains, reducing disaster risk, and advancing sustainable development throughout the Arab States.
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