Science

A Giant Leap for Canada: Jeremy Hansen Reflects on Historic Artemis II Lunar Mission

Astronaut Jeremy Hansen reflects on the Artemis II mission, urging Canada to set big goals after becoming the first non-American to orbit the moon.

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Beyond the Stars: A Landmark Moment for Canadian Space Exploration

Canadian astronaut Jeremy Hansen is home from the moon, bringing with him a message of national ambition and collective capability. Following his historic participation in NASA’s Artemis II mission, Hansen spoke from the Johnson Space Center in Houston, emphasizing that his journey as the first non-American to travel in lunar orbit is a testament to Canada’s potential on the global stage. The 10-day mission, which concluded with a successful splashdown in the Pacific Ocean on April 10, marks the first time humans have traveled to the moon’s vicinity in over five decades.

The Power of Collective Vision

Reflecting on the mission’s success, Hansen was quick to shift the spotlight away from himself, attributing the achievement to decades of work by Canadian visionaries. “What this should do is shine a spotlight on what we’re capable of as a country,” Hansen remarked. He challenged the notion that Canada should “keep itself small,” noting that the Artemis II flight was not an overnight success but the culmination of long-term strategic goals. The crew, including commander Reid Wiseman, pilot Victor Glover, and specialist Christina Koch, traveled further from Earth than any humans in history, capturing unprecedented images of the lunar surface.

A Transformed Perspective on Humanity

The mission provided more than just scientific data; it offered a profound shift in perspective. Hansen described the awe of seeing Earth as an “oasis” in the vastness of space. He recounted milestones ranging from the initial rocket ride and the weightlessness of orbit to the unique sight of a solar eclipse behind the moon. Despite feeling “insignificant” against the backdrop of deep space, Hansen noted that the mission made him feel powerful because of the “collective unity” required to send four humans into the cosmos.

Inspiring the Next Generation of Achievers

Now back with his family and undergoing rigorous post-mission science collection, Hansen is looking toward the future. He hopes the Artemis II success serves as a rallying cry for Canada to set even more ambitious goals. “We should be like, ‘What’s next? What are we going to do next?'” he urged. By proving that extraordinary feats are possible through teamwork and persistence, Hansen believes the mission has laid the groundwork for a new era of Canadian leadership in both space and global innovation.

Environment

The Orbital Trash Crisis: Solving the 13,000-Tonne Space Junk Dilemma

With 13,000 tonnes of space junk threatening critical infrastructure, experts are racing to develop harpoons, nets, and new policies to clean up Earth orbit.

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The Growing Gridlock Above Earth

Seventy years ago, the Moon was Earth’s only companion in the night sky. Today, our orbit is crowded with over 15,000 satellites, a number dominated by Elon Musk’s SpaceX. As tech giants plan to launch megaconstellations numbering in the millions, a critical byproduct is reaching a breaking point: space junk. Currently, there are roughly 13,486 tonnes of debris—equivalent to 13 million cane toads—cluttering the orbital environment.

The Threat of Kessler Syndrome

Space junk isn’t just floating; it orbits at speeds of seven kilometres per second. At these velocities, even a fragment the size of a marble can strike with the force of a grenade. Experts warn of the ‘Kessler syndrome,’ a catastrophic chain reaction where collisions create more debris, leading to more collisions. This could eventually render low Earth orbit (LEO) unusable, threatening GPS, weather tracking, and global communications, or even cutting humanity off from space exploration entirely.

Innovations in Orbital Cleanup

Addressing the debris crisis requires a multi-pronged technological approach. Engineers are testing ‘active debris removal’ systems involving harpoons, nets, magnets, and even slingshots to drag defunct satellites into the atmosphere or push them into ‘graveyard orbits.’ Furthermore, satellite design is evolving; researchers in Japan are even testing wooden spacecraft to ensure cleaner atmospheric reentry, while others focus on refueling missions to extend the lifespan of existing hardware.

Policy and the ‘Techbro’ Mentality

Technological fixes alone are insufficient without global policy reform. Current standards are shifting, requiring satellites to de-orbit within five years of mission completion rather than twenty-five. However, critics argue that the ‘techbro’ culture driving the space race often views orbit as a resource to be exploited rather than an environment to be protected. For a sustainable future, experts suggest we must stop viewing space and Earth as separate domains, instead managing our orbit as a fragile, interconnected ecosystem that requires international ‘rules of the road’ to prevent an avoidable environmental collapse.

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Astronomy

Celestial Spectacle: Rare ‘Blaze Star’ Explosion Predicted to Appear in the Night Sky

T Coronae Borealis is set for a rare nova explosion. Learn how to spot this ‘Blaze Star’ as it brightens to rival the North Star in a once-in-a-lifetime event.

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A Once-in-a-Lifetime Cosmic Event

Astronomers and stargazers alike are on high alert for a rare celestial phenomenon: the sudden appearance of a ‘new’ star in the night sky. The star system T Coronae Borealis, commonly known as the ‘Blaze Star,’ is expected to undergo a cataclysmic thermonuclear eruption at any moment. This event, known as a recurring nova, occurs approximately once every 80 years, making it a once-in-a-lifetime viewing opportunity for most people on Earth.

The Science Behind the Blast

T Coronae Borealis (T CrB) is a binary system located 3,000 light-years away, consisting of a white dwarf and a red giant. In a ‘vampiric’ relationship, the white dwarf continuously strips hydrogen-rich material from its larger companion. Once this material reaches a critical mass on the white dwarf’s surface, it triggers a massive thermonuclear explosion. Unlike a supernova, which marks the death of a star, this nova leaves the white dwarf intact to begin the cycle of feeding and erupting all over again.

When and How to Watch

While the exact timing remains elusive, NASA scientists and astrophysicists believe the eruption is imminent. Historically, the system follows an 80-year cycle, with the last major event occurring in 1946. When the nova finally ignites, T CrB will jump from its usual invisible magnitude of +10 to a magnitude of +2. This surge will make it as bright as Polaris, the North Star, and easily visible to the naked eye even in areas with moderate light pollution.

Finding the Northern Crown

To witness this fleeting event, observers should look toward the constellation Corona Borealis, or the ‘Northern Crown.’ This small, semicircular cluster of stars sits between the constellations Hercules and Bootes. Once the eruption begins, the ‘Blaze Star’ will remain visible to the naked eye for less than a week before fading back into obscurity for another eight decades. Astronomers recommend using binoculars or a small telescope now to familiarize yourself with the region of the sky just one degree to the lower right of the star Epsilon Coronae Borealis.

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Environment

The Rising Tide of Ticks: Why Canada Faces a Growing Threat of Lyme Disease and Beyond

Explore why tick populations are surging in Canada due to climate change and urban growth, and learn about the rising threat of Lyme disease and red meat allergies.

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A Personal Battle Becomes a Scientific Mission

Fifteen years ago, Vett Lloyd, a professor of biology at Mount Allison University, was told by public health officials that ticks simply did not exist in her home province of New Brunswick. Her own diagnosis with Lyme disease proved those claims false, sparking a career dedicated to understanding how these parasites are spreading across the Canadian landscape. Today, Lloyd’s research highlights a grim reality: tick populations and the diseases they carry are skyrocketing across the country.

The Role of Climate Change and Urban Development

The surge in tick activity is largely driven by shifting environmental factors. Traditionally, Canada’s long, harsh winters acted as a natural check on tick populations, starving them out as snow cover prevented them from finding hosts. However, global warming has led to more variable weather and less consistent snow cover. Ticks are opportunistic; they do not hibernate and will emerge to feed whenever temperatures rise, leading to much earlier and more intense seasons. Furthermore, the expansion of green, moist suburban areas has created the perfect habitat for rodents and other wildlife that carry ticks, bringing the threat directly into Canadian backyards.

The Hidden Scale of the Crisis

While official data from the Public Health Agency of Canada shows cases of Lyme disease rising from 143 in 2010 to over 7,000 by 2025, experts believe these numbers are a vast underestimation. Many cases go unreported due to a lack of diagnostic access or the difficulty of spotting a tick bite. Scientists estimate there has been a tenfold increase in infections over the last decade, with a significant portion of patients developing chronic illnesses that result in long-term fatigue, aches, and cognitive impairment.

New Threats on the Horizon

It isn’t just Lyme disease that Canadians need to worry about. Warmer regions like Southern Ontario are seeing the emergence of Lone Star and Gulf Coast ticks, which were previously unable to survive Canadian winters. These species can trigger ‘Alpha-gal syndrome,’ a severe red meat allergy caused by a reaction to tick saliva. As the climate continues to shift, researchers at Mount Allison University are working on rapid home-testing kits to help Canadians detect pathogens early and mitigate the growing economic and personal impact of these tick-borne illnesses.

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