k Internal structure of the Sun, artwork Internal structure of the Sun, cutaway artwork. At the Suns core white hydrogen atoms undergo nuclear fusion, producing helium atoms and releasing heat and light energy as photons. These radiate outwards through the inner region radiative zone to the outer convection zone layer. Here, solar plasma rises in thermal columns to the visible surface photosphere. Intense magnetic fields on the surface of the Sun inhibit convection, causing regions of lower temperature sunspots, dark spots, centre left. Solar prominences red, some at right are shown erupting from the Suns surface. Stock Photo - Afloimages
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Internal structure of the Sun, artwork Internal structure of the Sun, cutaway artwork. At the Sun s core  white  hydrogen atoms undergo nuclear fusion, producing helium atoms and releasing heat and light energy as photons. These radiate outwards through the inner region  radiative zone  to the outer convection zone layer. Here, solar plasma rises in thermal columns to the visible surface  photosphere . Intense magnetic fields on the surface of the Sun inhibit convection, causing regions of lower temperature  sunspots, dark spots, centre left . Solar prominences  red, some at right  are shown erupting from the Sun s surface.
RM

Internal structure of the Sun, artwork

Internal structure of the Sun, cutaway artwork. At the Sun's core (white) hydrogen atoms undergo nuclear fusion, producing helium atoms and releasing heat and light energy as photons. These radiate outwards through the inner region (radiative zone) to the outer convection zone layer. Here, solar plasma rises in thermal columns to the visible surface (photosphere). Intense magnetic fields on the surface of the Sun inhibit convection, causing regions of lower temperature (sunspots, dark spots, centre left). Solar prominences (red, some at right) are shown erupting from the Sun's surface.

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149971234

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