Lunar eclipse of September 2025 will be invisible in Mexico

A major astronomical event will take place in September, but its viewing will present significant geographic limitations.

Analysis of the Astronomical Event of September 7, 2025

On September 7, 2025, a significant astronomical phenomenon will take place that will capture the attention of amateurs and experts around the world. This is a total lunar eclipse, colloquially called Blood Moon, whose development will last for an estimated period of one hour and twenty-two minutes. This meticulous analysis examines the characteristics, causes, and observational implications of this celestial event.

Formation Mechanism and Main Characteristics

According to the National Aeronautics and Space Administration (NASA), lunar eclipses are events that occur between four and seven times annually. Its genesis lies in the precise alignment of the Earth, the Moon and the Sun. When our planet comes directly between its natural satellite and the star, it projects its shadow on the lunar surface, generating a spectacle of shadows on a cosmic scale. It is crucial to understand that, due to orbital mechanics, each event of this nature is visible only from one half of the globe. This geometric restriction explains why the next event cannot be witnessed from Mexican territory.

RelatedLunar eclipse of 2025 will not be visible in Mexico

The information provided by the astronomy platform Star Walk confirms that the visibility of the eclipse on September 7 will be limited to specific regions of the planet. Privileged viewers will be found in parts of Europe, Russia, Australia, Africa and Antarctica. This geographical distribution is determined by the relative position of the Moon with respect to the Earth’s shadow during the hours of the event.

Classification of Lunar Eclipses

Lunar occulting events are categorized into three main types, each with distinctive observational characteristics:

The total lunar eclipse occurs when the natural satellite moves completely into the inner region of the Earth’s shadow, known as the umbra. During this phase, a portion of the sunlight manages to filter through the Earth’s atmosphere, projecting itself onto the lunar surface and giving it that characteristic reddish or orange hue that is popularly called the Blood Moon. This chromatic effect results from Rayleigh scattering, the same phenomenon that colors our sunsets.

The partial lunar eclipse occurs when there is an imperfect alignment between the Sun, Earth and Moon. In this scenario, our satellite only partially passes through the Earth’s umbra. Observers can see how the dark shadow gradually grows over the lunar disk and then recedes, without completely covering it.

Finally, the penumbral eclipse represents the most subtle type. It occurs when the Moon transits exclusively through the penumbra, the outer and tenuous region of the Earth’s shadow. The dimming of the lunar brightness is so slight that it is often imperceptible to the untrained eye, requiring specialized instrumentation for reliable detection.

Considerations for Astronomical Observation

Unlike solar eclipses, which require specialized eye protection, observing lunar phenomena does not represent any risk to human vision. No optical instrument is required to witness the spectacle, although the experience is considerably enriched by the use of astronomical binoculars or medium-power telescopes.

To optimize observation conditions, experts recommend moving to locations away from urban light pollution. In addition, it is essential to allow the visual system to fully adapt to the darkness for a period of fifteen to twenty minutes prior to the event. Monitoring weather conditions is also essential, since the presence of cloudiness can significantly hinder the visibility of the phenomenon.

Although Mexico will not witness this particular event, understanding its mechanics and meaning enriches our astronomical knowledge. The periodicity of these phenomena guarantees that new observational opportunities will arise in the future, reminding us of our dynamic position within the solar system.

Share this analysis with other astronomy enthusiasts on your social networks and explore more content related to celestial events in our science section.

Satellite Internet, the bet to close the digital divide in Mexico

Mexican geography limits fiber deployment, but low orbit satellites are emerging as an alternative.

Satellite internet as a solution to the digital divide in Mexico

Mountains, jungles and deserts make Mexico one of the countries with the most complex orography in Latin America. Bringing fiber optics to isolated communities implies an investment that is difficult to recover with few users. As a result, one in five households still lack internet access or receive poor service.

Faced with this scenario, low orbit (LEO) satellite internet is emerging as a strategic alternative. “Deploying physical infrastructure in Mexico is expensive due to geography. In many cases, satellite internet represents the most viable option to connect areas where fiber will not reach in the short term,” explains Ernesto Piedras, director of The CIU. Companies like Starlink, with more than 10,300 active satellites, already operate in the country. Since May 2021, it obtained a concession and closed 2024 with 160,631 subscriptions, making Mexico its second Latin American market, only behind Brazil. Starlink has signed contracts with CFE Telecomunicaciones for up to 1,556 million pesos to connect remote communities.

However, cost remains a barrier. While a fiber optic plan costs an average of 544 pesos per month, satellite internet starts at 899 pesos, plus equipment and installation. “Commercially it is still not as viable because it is still more expensive and requires purchasing an antenna whose price remains high,” says Fernando Esquivel, from The CIU. The service makes economic sense when it is shared between communities or companies, and with the support of public policies.

Experts agree that this technology will not replace fiber optics, but will complement it. “Terrestrial services are faster and have lower latency. Satellite communication reaches areas that fixed internet would not reach,” says Hugo Simg, from MediaTek. Deployment also requires regulation and coordination between governments and companies. The race to connect Mexico is no longer only being fought underground, but from space, where a new generation of satellites promises to reduce the digital divide that keeps millions out of the digital world.

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Banks prepare for biometric facial controls in October

Banks claim to be ready for facial biometrics in branches since October.

The main banking institutions in the country claim to be prepared for the new regulations on facial biometric controls when opening accounts, which will come into force next October.

What did the banks declare?

Marcos Ramírez, general director of Grupo Financiero Banorte, pointed out that the institution has made progress to reinforce the identification and security of its users. “We are in time and form with everything established by law and a little ahead, with the prudential limits of the law,” he indicated.

These measures will strengthen control over customer identification. Since 2018, by regulation, fingerprint biometrics are already required to open accounts.

Implementation details

On July 1, the National Banking and Securities Commission (CNBV) incorporated facial biometrics into the regulation for multiple banking in customer identification and authentication. Institutions that opt ​​for this mechanism must comply with technical, operational and security requirements.

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AI detects breast cancer with 90% accuracy

An autonomous model analyzes thermographs and classifies tissues without human intervention.

An artificial intelligence model developed by Raúl Castro Ortega, a researcher at the Polytechnic University of Tulancingo, manages to identify breast cancer with an accuracy of 90%. The results were presented during the SPIE Photonics Europe 2026 International Congress, in Strasbourg, France.

How the system works

The system uses convolutional neural networks with attention mechanisms to analyze breast thermographs. Unlike traditional methods, the model autonomously learns the patterns of healthy and diseased tissue, without a specialist previously defining the characteristics of the images. This reduces processing time and improves consistency of results.

The study, titled “Breast thermography analysis using convolutional neural networks with attention mechanisms,” uses an algorithm based on the heat diffusion equation. This approach focuses analysis on thermogram regions of interest and classifies tissues with high levels of sensitivity and specificity.

Impact on early detection

The accuracy achieved represents a significant advance for the early detection of breast cancer, which can improve survival rates and facilitate timely treatment. The researcher highlighted that the system does not replace the specialist, but rather works as a support tool for faster and more consistent diagnoses.

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