Lake Mead, nation’s largest reservoir, reaches its lowest water level on record
National Park Service water intake pipes that used to draw water from Lake Mead are shown going down the side of Pyramid Island, which is no longer surrounded by water, to the left of Saddle Island, which displays a white “bathtub ring” of mineral deposits left by higher water levels on the rocks on July 25, 2026, in the Lake Mead National Recreation Area, Nevada. (Ethan Miller/Getty Images)
(NEW YORK) — The water level at Lake Mead, the nation’s largest reservoir by storage capacity, hit a record low on Thursday.
Lake Mead’s pool elevation hit the new low at 1,040.50 feet, breaking the previous record of 1,040.58 feet set in July 2022, according to data published by the U.S. Bureau of Reclamation on Friday.
The reservoir, formed by the Hoover Dam on the Colorado River, is located in Nevada and Arizona and supplies water to millions of U.S. residents.
Prolonged drought conditions and exceptionally low snowpack have contributed to the significant declines in water levels at several Colorado River Basin reservoirs this year.
Elevation at the nation’s second largest reservoir, Lake Powell, was measuring at 3,521.43 feet as of Thursday, according to the Bureau of Reclamation — nearing the previous record low of 3,519.92 feet set in April 2023 and the critical level needed for the reservoir to produce hydropower. A new record low at the Utah-Arizona reservoir could also be reached this month, projections show.
The Colorado River basin is a critical system for residents in the western U.S. and Mexico. The basin provides water for up to 40 million people and hydropower to the seven basin states: Arizona, California, Colorado, Nevada, New Mexico, Utah and Wyoming, according to the Bureau of Reclamation.
Since the beginning of the year, hydrologists have been warning about the potential for water levels at Lake Mead and Lake Powell to hit critical levels as a result of record-low snowpack over the winter months.
Much of the western U.S. entered the winter already grappling with drought conditions from lack of rain. But warmer-than-normal temperatures during the winter prevented snow from accumulating, which led to a lack of snowmelt flowing into watersheds once spring came.
Motorists drive through rainfall as a storm delivers heavy rain to the region on February 16, 2026 in Pasadena, California. (Mario Tama/Getty Images)
(NEW YORK) — El Nino conditions are present and expected to strengthen in the coming months, bringing potentially significant impacts to our weather, the upcoming hurricane season and global temperatures, according to the latest forecast from the National Oceanic and Atmospheric Administration.
NOAA issued an El Nino Advisory on Thursday, meaning El Nino conditions are observed and expected to continue. Its latest forecast calls for a strong El Nino to likely develop in the fall, with a 63% chance of a very strong El Nino between November 2026 and January 2027, which could rank among some of the strongest such events on record.
NOAA also noted that stronger El Nino events only make certain impacts more likely and do not always guarantee strong impacts.
El Nino refers to the warmer-than-average phase of the El Nino–Southern Oscillation (ENSO), a natural cycle where sea surface temperatures across the central and eastern equatorial Pacific Ocean rise and fall. The cooler-than-average phase is called La Nina, while near-average conditions are known as ENSO-neutral.
NOAA ranks the strength of El Nino events by measuring the sea surface temperature departure from average (anomaly) across this region, classifying events as weak, moderate, strong or very strong.
Forecasters say confidence in a strong to very strong event later this year has increased now that the spring season has passed. This is largely because spring in the Northern Hemisphere is when sea surface patterns across the tropical Pacific Ocean are in a transitional phase contributing to lower model accuracy.
“We need to prepare for a potentially strong El Nino event, which will exacerbate drought and heavy rainfall and increase the risk of heatwaves both on land and in the ocean,” WMO Secretary-General Celeste Saulo said in a statement.
While adjectives such as “super” and “extreme” are popular ways of describing the strength of an El Nino event on social media, NOAA and the WMO classify the strength as weak to moderate, strong, and very strong. The WMO noted in a recent statement that “the term [[super]] is not part of standardized operational classifications.”
El Nino and La Nina events occur at irregular intervals, typically every 2 to 7 years. El Nino has been somewhat more frequent than La Nina in past observations, but both phases vary in timing and intensity from one cycle to the next.
As Earth’s climate warms, however, identifying and measuring these events becomes more challenging because temperature differences are superimposed on the long-term ocean warming trend.
“As the climate warms, interpreting anomalies becomes more challenging,” said Dr. Tim Stockdale, principal scientist at the European Centre for Medium-Range Weather Forecasts (ECMWF). “Rising background temperatures can make recent El Nino events appear stronger than they are, and La Nina events seem weaker.”
To address these challenges, NOAA and ECMWF updated the way they measure El Nino and La Nina this year, using a new index which compares sea surface temperatures in the central Pacific to global tropical ocean conditions rather than just that region’s historical data. NOAA calls this new method the Relative Oceanic Nino Index (RONI), which helps remove the effect of overall ocean warming.
The WMO notes that there is no evidence that human-amplified climate change increases the frequency or intensity of El Nino events.
Typical El Nino impacts across the United States
Impacts from El Nino, similar to La Nina, tend to be most consistent and pronounced from late autumn through early spring following the event’s onset, NOAA says. There is usually a delay between the onset of the event and many of the associated effects.
Experts caution that the impacts on weather patterns are nuanced. Each season is different, and typical El Nino conditions don’t always materialize.
“Every El Nino is different in terms of timing, magnitude, and geographic extent, and such differences lead to variability in the impacts — on temperatures and rainfall, for example — on a global scale,” Andrew Kruczkiewicz, senior staff researcher at Columbia Climate School, said.
Typically, during El Nino, the northern half of the United States and parts of Alaska are more likely to see warmer-than-average temperatures, with near- to below-average temperatures favored along the southern tier of the U.S., most likely from Texas to the Southeast.
For precipitation, wetter-than-average conditions are typically observed along the southern tier of the U.S. in parts of California, the Southwest, Gulf Coast and Southeast. Below-average precipitation is frequently observed across parts of the northern Rockies, south-central Mississippi Valley, Ohio Valley and Great Lakes regions.
El Nino typically increases the odds of above-average snowfall in the southern Rockies, south-central Plains, mid-Atlantic and coastal areas of the Northeast, with below-average snowfall favored in the northern Rockies, northern Plains and Great Lakes regions.
El Nino’s influence on hurricane season activity
El Nino conditions often suppress tropical activity during the Atlantic hurricane season by producing unfavorable atmospheric winds. In the Eastern Pacific, the opposite occurs, with favorable conditions supporting above-average hurricane season activity.
This was reflected in NOAA’s hurricane outlook released on May 21, with the agency predicting below average tropical activity for the 2026 Atlantic hurricane season with above average activity likely in the eastern Pacific.
“El Nino increases convection (thunderstorms) across the eastern and central Pacific, which causes downstream wind shear over the Atlantic from strong upper-level winds,” said Andy Hazelton, an associate scientist at the University of Miami’s Cooperative Institute for Marine and Atmospheric Studies.
Vertical wind shear, which refers to changes in wind speed and direction with height in the atmosphere, is often a primary factor in below-average hurricane season activity. Strong vertical wind shear can tear a developing tropical system apart or even prevent it from forming, NOAA says.
“The rising motion over the Pacific also leads to increased subsidence (sinking air) over the Atlantic, which suppresses thunderstorms and tropical cyclone development,” Hazelton added.
El Nino’s impact on tropical activity will largely depend on how quickly it intensifies. Even so, El Nino is only one of several important variables which influence tropical activity.
Other factors, such as sea surface temperatures, also play an important role in tropical cyclone development and strength. Unseasonably warm ocean waters can partially offset the effects of unfavorable atmospheric winds, according to forecasters.
Global temperature records could be challenged again
2024 ranked as the planet’s warmest year on record, following the last El Nino event, which emerged in mid-2023 and persisted through spring 2024, according to NOAA. However, the return of El Nino means global temperature records could be challenged again in the near future, depending on its peak intensity and duration.
While global air and sea surface temperatures are currently falling short of new record highs, climate scientists warn this pause is unlikely to last. Record highs in global average temperature often occur during El Nino years, combined with the long-term global warming trend driven primarily by human-caused greenhouse gas emissions.
“Warmer ocean temperatures associated with El Nino, together with its tendency to favor warmer conditions in many areas, often contribute to warmer than normal global annual temperatures,” Jon Gottschalck, Chief of the Operational Prediction Branch at NOAA’s Climate Prediction Center said.
According to NOAA, 2025 ranked as the third-warmest year on record globally, trailing 2024 and 2023. The slightly lower ranking came amid recent La Niña conditions, which typically cause a temporary dip in global average temperatures.
There is usually a delay between the onset of El Nino and its peak impacts on global temperatures, NOAA says. As with the most recent event, its greatest influence often occurs in the months after it peaks, which can keep global temperatures elevated into the following year.
According to the latest outlook from NOAA’s National Centers for Environmental Information, the likelihood that 2026 will rank among the five warmest years on record is about 98.5%, while the probability of it becoming the warmest year is less than 1%. However, those odds could rise significantly in 2027, depending on how the event unfolds.
The NASA logo is displayed at NASA’s Jet Propulsion Laboratory on October 15, 2025 in La Canada Flintridge, California. (Mario Tama/Getty Images)
(NEW YORK) — A newly discovered asteroid will pass within about 56,000 miles of Earth on Monday, significantly closer than the distance between Earth and the moon.
There is no need to worry or cancel any plans, however. Current calculations show no evidence that the object will hit Earth.
The asteroid was identified several days ago by astronomers at five observatories, including Farpoint Observatory in Wabaunsee County, Kansas, and Mount Lemmon Observatory in Arizona’s Santa Catalina Mountains.
The asteroid, designated 2026 JH2, is likely between 50 and 100 feet across, according to estimates from NASA’s Jet Propulsion Laboratory. That estimate is based on how bright the object appears and how much light scientists think its surface reflects.
Astronomers are still working to better understand the asteroid’s orbit and physical characteristics. So far, the object has been tracked only 24 times over several days. While its trajectory is still being refined, current calculations show no impact risk.
The asteroid is considered an Apollo-class near-Earth object.
“These asteroids have an orbit that is larger than Earth’s orbit around the Sun and their path crosses Earth’s orbit,” according to NASA.
The Virtual Telescope Project plans to stream the encounter live beginning at 5:45 p.m. ET on Monday.
New York Knicks fans run from fireworks in Times Square during Game 4 of the NBA Finals between New York Knicks and San Antonio Spurs, on June 10, 2026 in New York City. (Adam Gray/Getty Images)
(NEW YORK) — The New York Knicks’ historic comeback against the San Antonio Spurs in Game 4 of the NBA Finals on Wednesday ignited celebration as well as chaos outside Madison Square Garden as some fans went berserk, prompting dozens of arrests.
Rowdy fans got into fistfights, climbed scaffolding, blocked Midtown Manhattan traffic, set off fireworks and smoke bombs, ripped down street signs, climbed poles, jumped atop taxis and other moving vehicles, and damaged police vehicles, according to authorities and videos of the mayhem posted on social media.
And the Knicks haven’t even won the championship — yet. The team leads the best-of-seven series 3 games to 1, and can close it out in San Antonio on Saturday night.
But one fan hoisted themselves up in a bucket lift in Midtown Manhattan on Wednesday night to encourage the fans to party like it’s 1973, the last time the Knicks won an NBA championship.
Another fan climbed on top of a big-rig truck stuck in a traffic jam, while a group of fans was caught on video stomping on a Citi Bike.
Ten police officers were injured in the post-game revelry, including one who was struck in the face with a glass bottle, the New York Police Department said.
Some Knicks fans even showed up at the hotel where the Spurs were staying and threw eggs at San Antonio’s 7-foot-4 star Victor Wembanyama, according to online videos.
The wild scenes played out after the Knicks overcame a 29-point deficit to win the game. The biggest comeback in NBA Finals history was capped by a high-flying tip-in shot by Knicks’ forward OG Anunoby with 1.2 seconds left in the game.
A fan watch party initially planned for Wednesday outside Madison Square Garden was canceled at the last minute by Garden officials in a dispute over the crowd being limited to 1,000 people and the strict rules enacted by police and city officials on spectator behavior.
“The NYPD wants New Yorkers to be able to enjoy these celebrations, but our primary responsibility is to ensure that everyone can do so safely,” the NYPD said in a statement on Thursday morning. “Once again, there were large crowds of people who engaged in incredibly reckless and dangerous behavior last night both during and after the game. This demonstrates exactly why the NYPD has increased our presence in and around Madison Square Garden.”
At multiple locations blocks from the Garden, crowds refused numerous verbal commands to disperse, police said. In total, there were 56 people taken into custody, including 15 who were arrested and 41 who were released with criminal court summonses, according to the NYPD.
Fans were arrested on suspicion of assault on a police officer, criminal possession of a weapon (a knife), reckless endangerment, criminal mischief, disorderly conduct, resisting arrest, obstruction of governmental administration, and trademark counterfeiting, the NYPD said.
But the lockdown of streets adjacent to the Garden didn’t stop Knicks fans from trying to get as close as they could to the arena.
During the Wednesday’s game, thousands of unruly fans began gathering at various places north of Madison Square Garden. As the game progressed, the crowds became increasingly destructive, some jumping atop moving vehicles in the area.
At one point, about a dozen people, most wearing Knicks jerseys, jumped on top of a cab stuck in traffic and stomped on and busted the front windshield, while several revelers took turns using belts to whip the hood of the taxi, according to bystander video.
“We haven’t seen a miracle like this since the birth of Jesus,” a fan yelled into a camera.