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The symbol within the pictogram shows a container dripping liquid onto a piece of metal and another container dripping liquid onto a hand. This symbol indicates that hazardous products with this pictogram can
Products that are corrosive to metals can cause their containers to become weak, eventually leading to leaking or collapse, spilling the hazardous contents into the workplace. These products can also damage metal equipment and building components which may lead to structural collapse and injuries.
While we might not feel these storms directly, they can disrupt satellite communications and GPS systems, and even affect power grids in extreme cases.
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The Sun has been acting up lately. Over the past 24 hours, it has unleashed several moderate-level solar flares. While solar flares are common, an increase like this grabs the attention of scientists and skywatchers alike.
So, keep an eye on the night sky over the next few days. Weather permitting, you might be treated to a spectacular show.
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Solar wind speeds have been steady, ranging from 300-400 km/s. The total magnetic field has varied between 3-8 nanoteslas (nT), with the Bz component fluctuating between +6 and -5 nT.
When the Sun releases these bursts of energy, they send streams of charged particles toward Earth. If these particles interact with our planet’s magnetic field, they can stir up geomagnetic storms.
While we go about our daily lives, there’s a whole lot happening 93 million miles away that can influence our technology and even the beauty of our night skies.
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Another area, Region 3844, has also been busy, contributing its own set of flares. These regions are like solar hotspots where magnetic fields are especially tangled and volatile.
An X-class flare is among the most potent, capable of causing significant disturbances to Earth’s magnetosphere, which can affect satellite operations, communications, and even power grids.
Experts at the National Weather Service’s Space Weather Prediction Center (SWPC) reported that the flare, classified as an X9.0, occurred at 8:18 a.m. Eastern Time on October 3.
One of the main culprits is Region 3842, which “grew in overall size, gained additional spots, and maintained its magnetic complexity as it continued to produce M-class activity.”
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Experts at the National Weather Service’s Space Weather Prediction Center (SWPC) reported that the flare, classified as an X9.0, occurred at 8:18 a.m. Eastern Time on October 3.
Strong geomagnetic storms can lead to beautiful auroras, visible even in lower latitudes than usual. However, they can also disrupt communication systems and navigation satellites.
Corrosives are often incompatible with many other products, and if they come into contact with each other toxic or explosive reaction products may be formed. The Safety Data Sheet (SDS) for a corrosive product will provide information on which metals or other materials (e.g., plastics or wood) the corrosive product will attack (check Section 10: Stability and Reactivity).
This powerful burst of solar energy has scientists and space weather experts keeping a close eye on potential effects here on our planet, including auroras expected in the lower part of the United States.
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The models suggest “a glancing blow from the M6 associated CME by late on Oct 6, 2024, with a possible combined arrival with the CME from the X9.0 on October 3, 2024.”
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Power grid operators and satellite companies are on alert, but it’s not all caution and concern. These storms can also enhance the auroras — the beautiful light displays often seen near the poles.
Power grids might experience fluctuations, and pipelines could see increased corrosion rates. It’s a mixed bag of natural beauty and technological challenges.
These storms can disrupt satellite operations, GPS systems, and even power grids. While they’re fascinating to observe, strong geomagnetic storms can have significant impacts on our daily lives.
Some corrosive products, both liquid and solid, generate large amounts of heat when they are mixed with water. For example, a glass of water thrown into a bucket of concentrated sulfuric acid is converted instantly to steam which will eject the entire contents of the bucket into the air.
However, the forecast indicates that “G3 (Strong) geomagnetic storming is likely on October 5-6, 2024 due to the aforementioned CME effects.”
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A G3 geomagnetic solar storm watch remains in effect until October 7 in anticipation of the arrival of two coronal mass ejections (CMEs) that left the sun on October 3, 2024, including one associated with the strongest x-class solar flare, an X9.0 flare event from the current Active Region on the Sun, AR 3842.
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The SWPC forecast indicates that the first CME might reach Earth on October 4, with the second following about 24 hours later.
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Both eruptions originated from Region 3842, a sunspot area known for its activity. Preliminary models suggest that the first CME might give Earth a “glancing blow” on October 7.
Sunspots are cooler areas on the Sun’s surface with intense magnetic activity. The regions mentioned — 3842, 3844, 3841, 3843, and the newly numbered 3849 — are all areas of interest for scientists monitoring solar activity.
“The current geomagnetic forecast follows the CME driven WSA-Enlil run initialized at 03/1700 UTC on the SWPC website,” the forecasters explained.
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These parameters are expected to stay normal until the CMEs start their journey toward Earth, bringing disturbances as they arrive.
WHMIS labels and safety data sheets are required for all hazardous products in the workplace. Before using these products, workers need to be educated on WHMIS, which was amended in December 2022.
Several active regions on the Sun are behind this uptick in activity. Region 3842, for example, has been quite the overachiever, producing multiple M-class flares.
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The Sun continues to be more active than usual. According to the U.S. Space Weather Prediction Center (SWPC) “solar activity was at moderate levels.”
The recent X9.0 flare is notable because it’s one of the strongest we’ve seen in this solar cycle. For context, only an X8.7 flare on May 14, 2024 surpassed it in intensity.
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But there’s a flip side. Strong geomagnetic storms can mess with satellite communications, GPS signals, and even power grids. It’s a bit like cosmic interference.
“Solar activity reached high levels with six M-class flares and one X-class flare,” noted the Space Weather Prediction Center. “The X9.0 occurred at 8:08 a.m. from Region 3842.”
You might be thinking, “Should I be worried?” The good news is that our planet is pretty good at fending off these solar particles, thanks to its magnetic field.
If you’ve ever wanted to catch the Northern Lights, this might be your chance. Geomagnetic storms can push the auroras farther south, making them visible in places where they usually aren’t.
This pictogram is used by one WHMIS hazard class in the physical hazards group and two hazard classes in the health hazards group.
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Get ready, sky watchers and tech enthusiasts! The Space Weather Prediction Center (SWPC) has issued G3 (Strong) Geomagnetic Storm alerts for October 4-6, 2024.
This close arrival could dampen the solar winds initially, but expect a surge when the second CME hits. The geomagnetic field might spike to G3 levels, and in some cases, even reach G4 (Severe).
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According to space weather forecasts, there’s a good chance we’ll see strong geomagnetic storming on October 6th. The effects could linger into October 7th, albeit at a milder level.
This could mean some fantastic aurora displays — those beautiful northern and southern lights — showing up in places they usually don’t.
According to the SWPC forecasters, “When these CMEs arrive at Earth, strong geomagnetic storms are likely to occur. Watches of this length and magnitude are infrequent, but not uncommon.”
Think of solar flares as the Sun throwing a bit of a tantrum — sudden flashes that release a ton of energy. CMEs are like the Sun sneezing out huge clouds of plasma and magnetic fields.
In addition to the specific hazards identified by the corrosion pictogram, it is important to remember that the product may have other hazards, for example:
Regions 3843, 3844, and 3848 are also stirring the pot. Region 3844, for instance, added an M1.1/Sf flare recently. These areas are like stormy patches on the Sun’s surface, and they’re keeping scientists on their toes.
As the weekend approaches, keep an eye on updates from the SWPC. “Stay tuned for updates as we monitor this activity!” the forecasters urged. Whether you’re a space enthusiast or concerned about potential tech disruptions, staying informed is key.
Products that are corrosive to the skin and/or eyes may also be corrosive to the respiratory tract if inhaled. Effects could include irritation and burns to the nose, throat and lungs. In some cases, pulmonary edema, a build-up of fluid in the lungs which can be fatal, could occur. Swallowing a corrosive can cause burns to the mouth, throat and stomach.
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This model predicts a narrow 24-hour window between the two CME arrivals, but there’s a margin of error of about ±8 hours due to speed variations.
A geomagnetic storm occurs when solar wind — a stream of charged particles from the Sun — collides with Earth’s magnetic field.