Connect with us

Science & Technology

Woodland Park Zoo Awarded Transformative Grant to Advance Empathy for Animals

Published

on

[ad_1]

Woodland Park Zoo is pleased to announce a $7.15 million grant from Margaret A. Cargill Philanthropies (MACP) to advance and expand the zoo’s Advancing Empathy Initiative that fosters empathy for animals in Association of Zoos and Aquariums (AZA)-accredited organizations.

This three-year grant continues the zoo’s long-term partnership with MACP and organizations across the country to build strong empathic connections between humans and animals through research-based effective empathy practices while also amplifying the zoo’s mission to save wildlife and inspire everyone to make conservation a priority in their lives.

Emerging behavioral science is showing that there are social and emotional components to changing our behaviors. Feeling empathy is an often overlooked but necessary step between learning about the need for change and taking action on behalf of another. Empathy allows people to connect their concern for the wellbeing of animals to the importance of acting in caring ways, including conserving the environment upon which both people and animals depend.

“Millions of people each year visit AZA-accredited zoos and aquariums. We believe that building empathy is among the most powerful tools in our toolbox for galvanizing care and compassion for animals,” said Alejandro Grajal, PhD, President and CEO of Woodland Park Zoo. “Bringing people and animals closer is an innate strength of our field. By providing close encounters with animals, our institutions are uniquely positioned to help visitors feel empathy for wildlife, increase understanding of how animals are cared for, and encourage visitors to actively participate in our wildlife conservation efforts.”

Woodland Park Zoo’s leadership in advancing empathy learnings and best practices within the zoo and aquarium community spans more than a decade. At the heart of this effort today is the Advancing Conservation through Empathy (ACE) for Wildlife™ Network, which began with 20 founding AZA-accredited partners in Alaska, Idaho, Minnesota, Montana, North Dakota, Washington and Wisconsin. The Network has since expanded to 27 network partner organizations across 13 states and has grown to include more than 550 participating professionals across five continents. Founded and led by Woodland Park Zoo, with philanthropic funding from MACP, the ACE for Wildlife Network facilitates professional collaboration and catalyzes accredited zoos and aquariums’ capacities to develop, implement, and measure the impact of empathy programming. (For a full list of participating Network partners, see below.)

With this new round of grant funding, the ACE for Wildlife Network will continue to identify and disseminate effective empathy practices – such as Woodland Park Zoo’s kea enrichment program with the zoo’s kea TepTep and Jean Luc, where guests learn about these highly intelligent parrots, their food and enrichment preferences. Visitors step into the birds’ feathers to think about the animals’ perspective and needs and are given supplies to make them clever puzzles to hide treats. By observing the kea as they explore, play and problem-solve, guests can relate and build a sense of connection to these birds, and that connection is critical to fostering empathy.

“We’re so proud of this innovative community of zoos and aquariums that is guiding our field into a new era of relationships between people and animals, while collectively impacting more than 17.5 million zoo visitors and program participants across the ACE for Wildlife™ Network partners,” said Marta Burnet, PhD, Director of Advancing Empathy at Woodland Park Zoo. “Our development of leading-edge empathy programs and rapid-response evaluation of their impact equips our institutions to more deeply engage visitors in conservation efforts while consistently applying new learnings to our practice. Ultimately, our holistic aim is to strengthen our guests’ empathy muscles through connections with animals, nature and each other.”

During the three-year grant period, Woodland Park Zoo’s Advancing Empathy Initiative will re-grant $3.6 million to the Network’s founding partners, who are already developing pioneering programs and continuing to expand their influence across our field nationally and internationally. For example, Racine Zoo used a previous grant to develop a virtual animal encounter program that gives school children the opportunity to meet, learn about and name a Madagascar hissing cockroach – the most popular and frequently highlighted was named Georgia by a group of kids. Giving an animal a name is an important method for fostering empathy because it helps individualize the animal. Zoo staff utilize empathy best practices during these educational encounters – including describing Georgia’s unique personality traits and engaging students in perspective-taking – that can build positive attitudes towards underappreciated species.

Thanks to grant funding from Margaret A. Cargill Philanthropies, the ACE for Wildlife Network offers free resources and effective empathy-building practices online at www.aceforwildlife.org.

About Margaret A. Cargill Philanthropies

Margaret A. Cargill Philanthropies (MACP) provides meaningful assistance to society, the arts, and the environment. Based in Minnesota, MACP is the umbrella over two grantmaking foundations: Margaret A. Cargill Foundation and Anne Ray Foundation. Rooted in guidance from our founder Margaret Cargill, we engage with strategic partners to support work that makes a lasting difference for communities, with particular attention to overlooked causes. Our global funding spans seven domains connected through common strategies and approaches: Animal Welfare, Arts & Cultures, Disaster Relief & Recovery, Environment, Legacy & Opportunity, Quality of Life, and Teachers & Students. The collective assets of MACP place it among the largest philanthropies in the United States.

This new grant supports Woodland Park Zoo’s vision to reimagine zoos through its 2018 through 2025 Strategic Plan. With the goal of being a catalyst for conservation, Woodland Park Zoo has undertaken a bold $110 million Forests for All comprehensive fundraising campaign to bring its Strategic Plan to life, which has already been supported by more than 110,000 donors with generous gifts at every level. To learn more about the Forests for All campaign, please visit www.zoo.org/forestsforall.

List of ACE for Wildlife Network Partner Organizations

Akron Zoo, Alaska SeaLife Center, Blank Park Zoo, Como Park Zoo & Conservatory, Conservation Society of California/Oakland Zoo, Dakota Zoo, Grizzly & Wolf Discovery Center, Henry Vilas Zoo, Idaho Falls Zoo, International Crane Foundation, Jacksonville Zoo and Gardens, Lake Superior Zoo, Minnesota Zoo, NEW Zoo & Adventure Park, Northwest Trek Wildlife Park, Point Defiance Zoo & Aquarium, Racine Zoo, Red River Zoo, Roosevelt Park Zoo, San Diego Wildlife Alliance, Seattle Aquarium, Saint Louis Zoo, Utah’s Hogle Zoo, Zoo Boise, Zoological Society of Milwaukee, ZooMontana

View the original press release on newswire.com.

Source: Woodland Park Zoo

[ad_2]

Source link

Science & Technology

Quantum Computing Breakthrough: Data Security Implications

MIT’s new quantum algorithm could revolutionize data processing, posing significant challenges for current cryptographic systems. This article explores the implications for data security and potential solutions to counteract quantum threats.

Published

on

The recent breakthrough in quantum computing by researchers at MIT marks a pivotal moment in the field of data security. On August 19, 2026, Nature published the details of a new quantum algorithm capable of processing data at speeds previously unimaginable. While this innovation holds enormous potential for advancing machine learning and other computational fields, it simultaneously presents a formidable challenge to the current cryptographic systems relied upon to safeguard sensitive information.

At the core of contemporary data security is the reliance on encryption techniques that depend on the complexity of certain mathematical problems, such as the factoring of large numbers, which are currently infeasible for classical computers to solve within a practical timeframe. However, quantum computers, with their ability to perform calculations exponentially faster than traditional machines, threaten to render these encryption methods obsolete. This development could have profound implications for sectors that prioritize data security, including finance, healthcare, and government, where sensitive data is at risk of exposure.

The immediate concern for cybersecurity experts is the potential for quantum computers to crack widely used encryption protocols, such as RSA and ECC, which form the backbone of secure internet communications. The computational power unleashed by quantum algorithms could theoretically decrypt encrypted data in a fraction of the time required by classical computers, leaving digital communications vulnerable to interception and exploitation.

In response to this looming threat, researchers and industry experts are actively exploring the development of quantum-resistant algorithms. These algorithms are designed to withstand the capabilities of quantum computing, ensuring the confidentiality and integrity of data even in a post-quantum world. Efforts in this direction include the study of lattice-based cryptography, hash-based signatures, and multivariate polynomial equations as potential foundations for secure encryption systems.

The urgency to develop and implement quantum-resistant cryptography is underscored by the rapid pace of advancements in quantum technology. Tech companies, governments, and academic institutions are investing heavily in research to safeguard their data infrastructures against quantum threats. The transition to quantum-resistant systems, however, is not without its challenges. It requires a comprehensive overhaul of existing cryptographic frameworks and widespread adoption across industries, a process that demands both time and resources.

Despite these challenges, the potential benefits of quantum computing in fields such as artificial intelligence, pharmaceuticals, and materials science cannot be overlooked. The same capabilities that pose a threat to data security also offer the promise of unprecedented advancements in computational power, enabling breakthroughs that were previously beyond reach.

As the world stands on the brink of a quantum revolution, the dual-edged nature of this technological leap is clear. While the security of our digital world faces new threats, the opportunity for innovation and progress is equally profound. The path forward will require a concerted effort to balance the risks and rewards of quantum computing, ensuring that the transformative potential of this technology is harnessed responsibly and securely.

In the coming years, as quantum technologies continue to evolve, the focus will be on developing robust standards for quantum-resistant cryptography and fostering collaboration between academia, industry, and government to navigate this new frontier. The race to secure our digital future in the face of quantum capabilities is not just a technical challenge but a strategic imperative that will shape the landscape of cybersecurity for decades to come.

Continue Reading

Science & Technology

AI-Driven Tools Propel Mars Exploration to New Heights

NASA’s latest Mars mission features AI-driven tools in its rover, enabling autonomous navigation and faster data transmission, marking a significant advancement in space exploration technology.

Published

on

NASA’s latest mission to Mars has captivated both scientific communities and the public, as the new rover equipped with AI-driven exploration tools begins its journey across the Martian landscape. Wired’s August 2026 report highlights the rover’s ability to autonomously navigate the challenging terrain while making real-time decisions, significantly enhancing the efficiency of data collection. This innovation is poised to revolutionize the way robotic missions are conducted in space.

The rover’s sophisticated communication systems represent another leap forward, allowing for faster and more reliable data transmission back to Earth. These advancements mean that scientists can receive critical information more swiftly, enabling them to adjust mission parameters as needed. According to Wired, this capability is essential for responding to unexpected findings and maximizing the scientific value of each mission.

Moreover, the integration of AI tools in the rover’s design marks a pivotal shift towards reducing dependence on Earth-based commands. As Wired notes, this development could pave the way for future missions that operate with greater autonomy, setting the stage for more complex and prolonged explorations of Mars. The implications of this technology extend beyond current missions, suggesting a future where human exploration of Mars is supported by highly capable robotic counterparts.

As NASA continues to push the boundaries of space exploration, the success of this mission will likely influence the design and execution of future endeavors. The potential for these AI-driven tools to transform space exploration is immense, promising a new era of discovery and innovation on the red planet and beyond.

Continue Reading

Science & Technology

Quantum Computing Breakthroughs: Disrupting Industries with Oxford’s Innovations

A recent breakthrough in quantum computing at the University of Oxford promises to disrupt multiple industries by significantly enhancing computational capabilities. Explore the technological implications and potential disruptions poised to redefine sectors.

Published

on

In May 2026, the University of Oxford announced a significant breakthrough in the field of quantum computing, unveiling an advanced error correction algorithm that has the potential to transform computational capabilities. This development is not just a scientific triumph; it heralds a new era of technological disruption across multiple industries. Quantum computing, long anticipated as the next frontier in technology, promises to solve complex problems beyond the reach of classical computers, and Oxford’s latest advancement brings this closer to reality.

At the core of this breakthrough is the enhancement in quantum error correction, a critical component that addresses the inherent instability of qubits, which are the fundamental units of quantum information. Traditional computers use bits of 0s and 1s, but quantum computers operate on qubits, which can exist in multiple states simultaneously. This superposition allows quantum computers to process information exponentially faster than classical computers. However, qubits are notoriously prone to errors due to environmental noise and operational inaccuracies. Oxford’s new algorithm significantly improves the error correction process, maintaining qubit stability longer and allowing extended computational tasks to be performed accurately.

The implications of this are profound. Industries ranging from pharmaceuticals to finance stand on the cusp of disruption as quantum computing offers the ability to model complex molecular structures, optimize large-scale financial portfolios, and even revolutionize artificial intelligence algorithms. In pharmaceuticals, for example, quantum computing can expedite drug discovery by accurately simulating molecular interactions, potentially reducing the time and cost associated with bringing new drugs to market. Similarly, in finance, quantum algorithms can optimize trading strategies and risk management with a precision unattainable by current technologies.

Moreover, the ripple effects of such a leap in computational power extend to data encryption and cybersecurity. Quantum computers possess the potential to decrypt classical encryption methods, prompting a race for quantum-resistant cryptography. This necessitates a paradigm shift in how we secure digital information, affecting every sector that relies on data security.

Despite the tremendous promise, the transition to quantum computing is not without its challenges. The infrastructure required to support quantum technologies is expensive and complex. There is also a significant skills gap; experts in quantum computing are scarce, and training a new generation of scientists and engineers is imperative. Furthermore, ethical considerations regarding the power of quantum computing must be addressed, particularly in terms of privacy and security.

Looking forward, as quantum computing continues to evolve, industries will need to adapt swiftly to harness its capabilities. Early adopters who invest in quantum technologies and develop quantum-ready strategies will likely dominate in the coming decade. As Oxford’s breakthrough demonstrates, the race is on to fully realize the potential of quantum computing and redefine the boundaries of what is technologically possible.

Continue Reading

Trending