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Why a solar eclipse is the best time to study the ‘invisible’ part of the Sun

13 Aug 2026
2 min

Europe's Total Solar Eclipse

Europe is experiencing its first total solar eclipse in 27 years, an event where the Moon aligns perfectly between the Sun and the Earth, completely blocking the Sun's light.

Path and Visibility

  • The total eclipse is visible from northern Russia, Greenland, western Iceland, northern Spain, and a part of northeast Portugal, forming the "path of totality".
  • Most of Europe will witness a partial eclipse, with over 90% coverage in parts of the UK.
  • Outside Europe, the partial eclipse is visible in North America and northwest Africa.

Scientific Significance

Solar eclipses provide a unique opportunity for scientists to study the Sun, particularly the corona, which is the Sun's outermost atmosphere.

  • The corona's magnetic field can cause solar flares and "coronal mass ejections" that impact Earth's satellites and communication systems.
  • During eclipses, the Moon blocks the bright solar disc, allowing visibility of the faint inner corona as a halo.

Solar Cycle and Observations

  • The current solar cycle began in 2020, and the Sun has passed its maxima phase, ideal for observing structures in the inner corona.
  • Scientists plan multiple experiments and observations during the eclipse from maximum eclipse locations.

Predictions and Studies

Indian researchers at CESSI, IISER-Kolkata, predict spotting large-scale streamers, bright magnetic field structures, during the eclipse.

  • These structures are visible during natural eclipses as the Sun’s disc brightness is obscured.
  • Observing these structures can provide insights into the complex magnetic fields of the Sun’s corona.

Explore Related Content

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RELATED TERMS

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Streamers

Large-scale, bright magnetic field structures observed in the Sun's corona, often appearing as fan-like or plume-like formations. They are visible during total solar eclipses when the Sun's disk is obscured.

Solar Cycle

A periodic rhythm of magnetic activity that the Sun undergoes approximately every 11 years, marked by the flip of its magnetic poles.

Coronal Mass Ejections (CMEs)

Large-scale expulsions of plasma and magnetic field from the Sun's corona. CMEs are powerful solar events that can travel through interplanetary space and affect Earth's magnetosphere, leading to geomagnetic storms and impacting space weather.

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