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Foto met animatie

Foto met animatie

On July 19, 2012, an eruption occurred on the sun that produced a moderately powerful solar flare and a dazzling magnetic display known as coronal rain. Hot plasma in the corona cooled and condensed along strong magnetic fields in the region. Magnetic fields, are invisible, but the charged plasma is forced to move along the lines, showing up brightly in the extreme ultraviolet wavelength of 304 Angstroms, and outlining the fields as it slowly falls back to the solar surface.

SDO Shows A Little Rain On the Sun

On July 19, 2012, an eruption occurred on the sun that produced a moderately powerful solar flare and a dazzling magnetic display known as coronal rain. Hot plasma in the corona cooled and condensed along strong magnetic fields in the region. Magnetic fields, are invisible, but the charged plasma is forced to move along the lines, showing up brightly in the extreme ultraviolet wavelength of 304 Angstroms, and outlining the fields as it slowly falls back to the solar surface.

Ring of Fire -- Solar Eruption on the Surface of the Sun

Ring of Fire -- Solar Eruption on the Surface of the Sun

Enormous Solar Eruption A coronal mass ejection (CME) erupted from just around the edge of the sun on May 1, 2013, in a gigantic rolling wave. CMEs can shoot over a billion tons of particles into space at over a million miles per hour. Image: NASA/Goddard/SDO

Space Photo of the Day 2013

Enormous Solar Eruption A coronal mass ejection (CME) erupted from just around the edge of the sun on May 1, 2013, in a gigantic rolling wave. CMEs can shoot over a billion tons of particles into space at over a million miles per hour. Image: NASA/Goddard/SDO

This spinning cloud of solar material is part of a dark filament angling down from the upper left of the frame. Filaments are long, unstable clouds of solar material suspended above the sun’s surface by magnetic forces.

Solar Material Twists Over Sun’s Surface

This spinning cloud of solar material is part of a dark filament angling down from the upper left of the frame. Filaments are long, unstable clouds of solar material suspended above the sun’s surface by magnetic forces.

'The NASA Solar Dynamics Observatory (Little SDO) captures a mass of plasma strands as they rise above the Sun then quickly fall apart as they break away into space. The video covers less than a day of activity.'

'The NASA Solar Dynamics Observatory (Little SDO) captures a mass of plasma strands as they rise above the Sun then quickly fall apart as they break away into space. The video covers less than a day of activity.'

ik vind deze foto echt super mooi, het is echt adembenemend. de zon is de natuurlijke lichtbron van mijn game wereld

These 14 Images Of The Sun May Be The Most Spectacular Ever Snapped

ik vind deze foto echt super mooi, het is echt adembenemend. de zon is de natuurlijke lichtbron van mijn game wereld

The magnetic field lines between a pair of active regions formed a beautiful set of swaying arches rising up above them (Apr. 24-26, 2017). The connection between opposing poles of polarity is visible in exquisite detail in this wavelength of extreme ultraviolet light. What we are really seeing are charged particles spinning along the magnetic field lines. Other field lines are traced as they reach out in other directions as well. The video covers almost two days of activity. Credit: Solar…

The magnetic field lines between a pair of active regions formed a beautiful set of swaying arches rising up above them (Apr. 24-26, 2017). The connection between opposing poles of polarity is visible in exquisite detail in this wavelength of extreme ultraviolet light. What we are really seeing are charged particles spinning along the magnetic field lines. Other field lines are traced as they reach out in other directions as well. The video covers almost two days of activity. Credit: Solar…

Mooie grote zonnevlam. Zal wel warm geweest zijn daar, en op aarde wat extra noorderlicht hebben opgeleverd.

Image of the Day Gallery

Mooie grote zonnevlam. Zal wel warm geweest zijn daar, en op aarde wat extra noorderlicht hebben opgeleverd.

Solar material twists above the sun’s surface in this close-up captured by NASA’s Solar Dynamics Observatory on June 7-8, 2016, showcasing the turbulence caused by combative magnetic forces on the sun.

Solar Material Twists Over Sun’s Surface

Solar material twists above the sun’s surface in this close-up captured by NASA’s Solar Dynamics Observatory on June 7-8, 2016, showcasing the turbulence caused by combative magnetic forces on the sun.

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