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#SolarActivity #CoronalMassEjection #SpaceWeather #Sun #climate #destruction #anomaly #climatecrisis #weather #climatechange
β˜€οΈ Solar Activity Intensifies: Major Coronal Mass Ejection

πŸ˜‰ December 23, 2024, marked a significant increase in solar activity. Throughout the day, 4 C-class flares and 3 M-class flares were recorded, including a particularly powerful M9 flare.

⚑️Observations indicate that a coronal mass ejection (CME) occurred in the northwest region of the solar disk. The eruption was unusually gradual yet spectacular, making it a rare event.

Experts note an acceleration in the frequency of large coronal mass ejections, raising attention to solar activity and its potential impact on Earth.

Source: Dr. Keith Strong via 𝕏 (Twitter)

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β˜€οΈ Intense Solar Activity: A Magnetic Storm Expected on New Year's Eve‼️

πŸ˜‰ On December 29, 2024, a powerful X-class solar flare occurred, part of a series of strong M-class flares observed in the past two days. This activity has led to predictions of a major geomagnetic storm, expected to reach Earth during the night from December 31 to January 1.

⚑️Today, December 30, another X2 flare erupted from the same sunspot region, likely triggering another coronal mass ejection towards Earth. This flare caused an R3-level radio blackout storm in Australia, signaling intense solar activity.

🌈 The storm is expected to reach a G3 level or higher, which could lead to phenomena such as auroras visible in mid-latitudes under clear skies. At the same time, such a storm may affect people who are sensitive to weather changes, causing headaches, drowsiness, and irritability.

🌍 Experts continue to monitor the situation and warn that, in addition to visual effects, the magnetic storm could impact electrical grids, satellite systems, and navigation devices.

πŸ”— Source: meteoagent.com
πŸ”— Source: Space Weather Live

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πŸ“ˆ X-Class Solar Flares: Increasing Activity

πŸ˜‰ On January 3, 2025, two powerful X-class solar flares were recorded from active region AR13947. These events highlight the growing intensity of Solar Cycle 25 (SC25), which has already significantly outpaced Solar Cycle 24 (SC24).

β˜€οΈ The first flare, an X1.2 event, peaked at 11:40 UTC. It occurred in the eastern part of the solar disk, where its impact on Earth is minimal due to its remote location. At the time of the event, information about the associated coronal mass ejection (CME) was still limited.

😊 Less than 12 hours later, at 22:41 UTC, the same active region produced another X-class flare, rated X1.1. This flare was accompanied by a CME that, according to preliminary data, is more Earth-directed than the CME associated with the earlier event. Experts are closely monitoring to assess potential impacts on geomagnetic activity.

‼️ Notably, Solar Cycle 25 has already seen 78 X-class flares β€” a 280% increase compared to the same stage of Solar Cycle 24. Scientists predict a high likelihood of further flares, as repeated activity in a single solar region is a key indicator of future events.

🌍 Health Advisory: Solar flares and related geomagnetic disturbances can exacerbate symptoms such as headaches, fatigue, and irritability. It is advised to minimize stress and monitor your well-being.

These events may also impact satellite systems, radio communications, and create opportunities for auroras at high latitudes.

πŸ”— Source: spaceweatherlive.com

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#Sun #SolarFlares #CoronalMassEjection #SpaceWeather #spaceweather #CME #Aurora #Geomagneticstorms #solarstorm #SolarFlare #Space #astronomy #SolarPhenomena #climate #destruction #anomaly
πŸ“ˆ The Sun remains active: third X-class flare in recent days

β˜€οΈ On January 4, 2025, another powerful X-class solar flare was recorded, marking the third such event in recent days. This time, active region AR3947 produced an X1.8 flare that peaked at 12:48 UTC. The associated coronal mass ejection (CME) was directed eastward, similar to the CMEs from the previous two X-class flares.

😊 Region AR3939 also contributed to the solar activity, generating two long-duration C-class flares. The first, rated C9.3, occurred at 15:09 UTC, followed by a C7.6 flare at 19:15 UTC. Both events produced CMEs directed westward.

πŸ˜‰ These solar activities have already triggered a minor radiation storm, which may intensify in the coming days. Additionally, the CMEs associated with these events are expected to cause geomagnetic storms on Earth, potentially affecting radio communications, satellite operations, and leading to auroras visible at higher latitudes.

‼️ The Sun continues to exhibit increasing activity, consistent with the current phase of its 25th solar cycle.

πŸ”— Source: spaceweatherlive.com

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🌌 Forecast of Magnetic Storms (Solar Flares) for Today, January 6, 2025
πŸ˜‰ The forecast is updated as data from satellites and laboratories from around the world becomes available.

πŸ”— Source: METEOAGENT (https://meteoagent.com/solar-flares-storms)

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β˜€οΈ Solar Flare: Long-Duration M1.1 Emission

πŸ˜‰ On January 7 at 23:05 UTC, an M1.1-class solar flare was detected in active region AR3939, located just behind the Sun's southwestern limb.

😊This flare was long-lasting, making it notable for astronomers. However, the good news is that the associated coronal mass ejection (CME) is not Earth-directed.

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πŸ˜‰ Solar Flares on January 9, 2025: Activity in AR3947

😊 On January 9, 2025, the Sun exhibited increased activity associated with active region AR3947.

β˜€οΈ Early in the morning, at 01:09 UTC, a minor solar flare of class M1.1 was recorded. Later, at 10:58 UTC, a long-duration C3.9-class flare occurred near the Sun’s central disk. This event was accompanied by dimming and the formation of bright loops in the Sun's corona, indicating significant energy releases into space.

🌈 Experts anticipate possible auroras at mid-latitudes. However, data from the GOES-West satellite magnetometer has not yet confirmed significant changes in geomagnetic conditions. The effects of the solar eruption may become noticeable in the coming hours.

‼️ Such solar activity highlights the importance of monitoring space weather to predict its impact on Earth, including satellite communications and atmospheric phenomena.

πŸ”— Source: spaceweatherlive.com

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πŸ˜‰ Geomagnetic Storm Forecast:

🌈 Tomorrow, Friday, Earth is expected to experience the effects of a coronal mass ejection (CME) triggered by an M3.4-class solar flare on Tuesday. The ejection is relatively slow but has a high particle density. Models predict the gas cloud will reach Earth by midday, with geomagnetic storm intensity forecasted at G1–G2 levels (minor to moderate).

Auroras are likely to appear at high latitudes, but chances of visibility in mid-latitudes remain low.

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β˜€οΈ X-Class Solar Flare Returns After More Than 50 Days

πŸ˜‰More than 50 days have passed, and we have once again witnessed an X-class solar flare. ⭐️ Sunspot region 3947 produced an X1.8 flare on January 4, followed by silence... But on February 23, the departing sunspot region 4001 generated an X2.0 flare. The activity didn’t stop thereβ€”today, the Sun has already produced several M-class flares. πŸ”₯

Stay tuned for more updates on solar activity! πŸš€βœ¨

πŸ”—Source: spaceweatherlive.com

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#Sun #SpaceWeather #AuroraBorealis #SolarFlares #CoronalMassEjection #CME #Aurora #solarstorm #SolarFlare #Space #astronomy #SolarPhenomena #FilamentEruption #GeomagneticStorm #Astronomy #Weather #Climate #destruction #anomaly #climatecrisis
πŸ˜‰ Solar Filament Eruption on February 26, 2025

β˜€οΈ On February 26, 2025, the Sun experienced a filament eruption that led to a coronal mass ejection (CME). This event was accompanied by dimming and the formation of a post-eruption arcade, with one of the CMEs directed towards Earth.

‼️ Experts estimate that the CME is heading southeast and is expected to reach Earth around March 2, 2025.

🌈 Such events can cause geomagnetic storms, potentially affecting satellite communications and triggering auroras in high-latitude regions.

Astronomers continue to monitor the situation to assess potential impacts on our planet.

πŸ”— Source: Edward.Vijayakumar - X

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β˜€οΈPOWERFUL ERUPTION ON THE FAR SIDE OF THE SUN – CORONAL MASS EJECTION

πŸ’₯ On March 1 at 16:45 UTC, a powerful eruption was observed on the far side of the Sun, accompanied by a bright coronal mass ejection (CME). This event was preceded by a smaller eruption linked to a filament near the Sun’s western limb.

πŸ˜‰ Although this CME is not directed toward Earth, such events highlight the Sun’s high activity. Solar eruptions and coronal mass ejections can influence space weather, causing geomagnetic disturbances that may affect satellite systems and radio communications.

⚠️ Astronomers continue to closely monitor solar activity to assess potential impacts from future eruptions.

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β˜€οΈ Solar Activity on March 7 and Forecast for March 8–10


πŸ˜‰ On March 7, several significant coronal mass ejections (CMEs) were observed on the Sun. One particularly impressive eruption occurred in the evening, along with an M1.6 flare from Active Region AR14016, where plasma movement was detected, potentially leading to a CME.

😊 Additionally, an impressive filament eruption was recorded in the southeastern quadrant of the Sun. However, preliminary data suggests that it does not have an Earth-directed component.

πŸ”­ Space Weather Forecast for March 8–10
πŸ˜€ March 8–9: Increased geomagnetic activity is expected as a high-speed solar wind stream (HSS) from a coronal hole reaches Earth. Active conditions and G1 (minor) geomagnetic storms are likely, with a small chance of isolated G2 (moderate) storms.
πŸ˜€ March 10: Unstable and active conditions will persist, with the continued influence of high-speed solar wind, bringing another chance of a G1 storm.

⚑️ Additionally, a large coronal hole facing Earth is already impacting the planet’s magnetic field, which could lead to further disturbances. 🌍

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β˜€οΈ Solar Eruption Heading Toward Earth: Geomagnetic Disturbances Expected β˜„οΈπŸŒ

πŸ˜‰ On March 21, 2025, significant dimmings were observed near the center of the solar disk following an M1.2 solar flare in Active Region AR 14028, located in the southwestern (lower right) quadrant of the Sun. This phenomenon may be an example of a sympathetic eruption triggered by unseen wave-like disturbances.

‼️ According to preliminary forecasts, the coronal mass ejection (CME) is expected to reach Earth late on March 23 or on March 24.

πŸ”΄ Possible effects:
➑️ Bright auroras visible even in mid-latitude regions.
➑️β–ͺ️ Disruptions in satellite and GPS systems.
➑️ Radio communication and power grid disturbances.

πŸ”„ Attention, weather-sensitive individuals!
The anticipated geomagnetic storms may cause headaches, blood pressure fluctuations, fatigue, and insomnia. It is recommended to avoid stress, monitor your well-being, stay hydrated, and have necessary medications on hand.

⚠️ Residents of high-latitude regions should prepare for potential communication disruptions, while satellite system operators should take precautionary measures to minimize operational issues.

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β˜€οΈ Powerful Solar Storm Approaching Earth

πŸ˜‰ A powerful solar storm is heading toward Earth, triggered by multiple coronal mass ejections from the Sun earlier this week. These bursts of solar energy prompted NOAA’s Space Weather Prediction Center (SWPC) to issue a geomagnetic storm warning.

🌈 The peak of geomagnetic disturbances is expected between April 23 and 24, with G2-level geomagnetic activity likely. The strongest geophysical effects may persist until 9:00 PM on April 24, after which Earth’s magnetic field is expected to stabilize between April 25 and 29.

🟑 In addition to auroras, intense solar storms can impact radio communications and GPS systems.

πŸ”­ According to NASA and NOAA experts, this active phase of the current solar cycle is expected to continue at least through the end of the year, although the exact peak remains uncertain. β€œThe intensity of the auroras depends on how Earth’s magnetic field interacts with the solar particles,” explained SWPC meteorologist Shawn Dahl.

πŸ”— Source: alertageo
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β˜€οΈ Solar Event: Coronal Mass Ejection Not Directed Toward Earth
(May 19, 2025)

πŸ˜‰ Around 21:00 UT, a beautiful filament eruption was observed in the northeastern region of the Sun. This resulted in a coronal mass ejection (CME) that is primarily directed north of Earth.

🟑 According to experts, the eruption produced a decent-sized partial halo CME, but its trajectory indicates no impact on our planet.

😊 This event highlights ongoing solar activity but poses no threat to Earth.
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🌍 Is Earth's Magnetic Field Weakening? And What Does It Mean for Us?

Scientists are sounding the alarm! Earth's magnetic field β€” our invisible shield against cosmic radiation β€” is showing signs of weakening. But how do we know, and why should we care?

πŸ” How do we know the field is weakening?
πŸ“‰ Drop in intensity: Satellite and ground-based measurements show that over the past 200 years, the field has weakened by 9–15%. This is especially noticeable in the so-called South Atlantic Anomaly, where satellites frequently experience malfunctions due to increased radiation.
πŸ’¨ Faster movement of magnetic poles: The North Magnetic Pole is racing toward Siberia at speeds of up to 55 km per year! The South Pole is also shifting, pointing to dynamic changes in the Earth’s core.
✨ Auroras further south: Have you noticed that auroras are becoming visible at lower latitudes? A weaker field allows solar particles to penetrate deeper into the atmosphere, creating breathtaking displays in areas where they were once rare.

⚠️ Why is this a problem?
πŸ›‘οΈ More radiation: A weaker magnetic field offers less protection from harmful solar wind and cosmic rays. This can affect human health (including a higher cancer risk) and impact other living organisms.
πŸ“‘ Technological disruptions: Our modern society relies heavily on satellites, telecommunications, power grids, and GPS. A weakened magnetic field can cause malfunctions and damage to these vital technologies.
🐦 Disorientation in nature: Animals such as birds and sea turtles use the magnetic field for navigation. Changes in the field could disrupt migration routes and affect entire ecosystems.
☁️ Impact on the atmosphere and climate? While still under study, long-term and significant weakening of the magnetic field could affect the stability of Earth’s atmosphere and potentially global climate. (Let’s remember Mars, which lost its atmosphere after its magnetic field disappeared!)
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β˜€οΈπŸ‡ΊπŸ‡³ Solar Activity: M8.4 Flare and Partial Halo CME

πŸ—“ On June 15, 2025, a powerful M8.4-class solar flare erupted from active region AR4114 at 18:05 UTC. The eruption was accompanied by a coronal mass ejection (CME) primarily directed toward the north. Although the flare occurred in a potentially geoeffective zone, both the CME and accompanying coronal waves were relatively limited in scope.

πŸ—“ On the morning of June 16, 2025, another impressive eruption was observed on the southwestern limb of the Sun. It produced a partial halo CME that, according to experts, is not Earth-directed and poses no threat to our planet.

🌍 Despite the lack of direct impact, ongoing solar activity requires close monitoring, as subsequent events could influence Earth's geomagnetic environment.
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β˜€οΈ Solar Activity on June 17–18, 2025

πŸ˜‰ The Sun continues to display high levels of activity, raising concerns among scientists worldwide. Over the past two days, both powerful flares and coronal mass ejections (CMEs) have been observed, which may impact Earth's geomagnetic conditions.

πŸ”Έβ˜€οΈ On June 17 at 21:49 UTC, sunspot AR4114, located in Earth's direct line of sight, produced a strong X1.3-class flare. This was an impulsive event and, according to preliminary assessments, was not accompanied by a coronal mass ejection (CME). However, given the region's position, specialists are continuing to monitor it closely.

πŸ”Έβ˜€οΈ On June 18 at 04:35 UTC, a major eruption with a widespread coronal wave occurred behind the Sun’s southwestern limb, presumably originating from region AR4105 on the far side of the Sun. The STIX instrument aboard the European Solar Orbiter recorded the event as an X1-class flare. It was accompanied by a coronal mass ejection, though preliminary data suggests it is not Earth-directed.

🌍 Throughout June 18, several successive CMEs were observed. Experts note they are occurring with noticeable regularity, and sooner or later one of them may be directed toward our planet.

πŸ“‘ The recent sequence of events highlights the need for continuous monitoring of solar activity and evaluation of its potential effects on Earth's geomagnetic environment.
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πŸ‡­πŸ‡· Rare Red Sprites Captured Over Croatia

❀️A rare atmospheric phenomenon β€” red sprites β€” was recently photographed in the skies over Croatia.

πŸ”΄ These fleeting electrical discharges occur high in the atmosphere above thunderstorms and last for only a few milliseconds, making them nearly invisible to the naked eye.

πŸ“Έ The sprites appeared above a thunderstorm and were captured using special photographic equipment. Typically located between 50 and 90 kilometers above the ground, red sprites resemble jellyfish or vertical beams of light and are caused by powerful lightning strikes.

This phenomenon continues to fascinate scientists, offering valuable insights into the complex interactions between the weather and space environment.
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β˜€οΈ Two Prominence Eruptions with CMEs Observed on the Sun’s Western Limb

πŸ“‘πŸš€ Astronomers have observed two powerful prominence eruptions on the western limb of the Sun. The first occurred on the southwestern limb, followed by another on the northwestern limb.

🌈 Both events were accompanied by impressive coronal mass ejections (CMEs), clearly visible in solar imaging. It is not yet known whether these CMEs are Earth-directed, but experts are closely monitoring solar activity for any potential impacts on the geomagnetic environment.
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