Extreme Ultraviolet Imager

E323693

The Extreme Ultraviolet Imager is a solar telescope instrument that captures high-resolution images of the Sun’s outer atmosphere in extreme ultraviolet wavelengths to study its structure and dynamics.

All labels observed (4)

How this entity was disambiguated

Statements (35)

Predicate Object
instanceOf solar telescope instrument ⓘ
space-based solar imager ⓘ
captures high-resolution images ⓘ
dataType extreme ultraviolet images ⓘ
imaging data ⓘ
enablesStudyOf coronal heating ⓘ
coronal loops ⓘ
solar active regions ⓘ
solar atmosphere dynamics ⓘ
solar eruptions ⓘ
fieldOfView Sun’s outer atmosphere ⓘ
hasCapability high cadence observations ⓘ
high spatial resolution imaging ⓘ
instrumentType imaging telescope ⓘ
remote sensing instrument ⓘ
measures spatial structure of solar corona ⓘ
temporal evolution of solar corona ⓘ
observes Sun ⓘ
Sun’s outer atmosphere ⓘ
solar corona ⓘ
observesInWavelength extreme ultraviolet ⓘ
operatesIn extreme ultraviolet band of the electromagnetic spectrum ⓘ
primaryScienceGoal study solar atmospheric dynamics ⓘ
study solar atmospheric structure ⓘ
scientificDiscipline astrophysics ⓘ
heliophysics ⓘ
studies dynamics of the Sun’s outer atmosphere ⓘ
structure of the Sun’s outer atmosphere ⓘ
supports forecasting of space weather ⓘ
modeling of solar atmosphere ⓘ
targetBody Sun ⓘ
usedBy solar physicists ⓘ
space weather researchers ⓘ
usedFor solar physics research ⓘ
space weather studies ⓘ

How these facts were elicited

Referenced by (5)

Full triples — surface form annotated when it differs from this entity's canonical label.

Solar Orbiter mission → hasInstrument → Extreme Ultraviolet Imager ⓘ
SOHO → hasInstrument → Extreme ultraviolet Imaging Telescope ⓘ
linked to: Extreme Ultraviolet Imager
SECCHI → hasComponent → EUVI ⓘ
linked to: Extreme Ultraviolet Imager
EQUULEUS → payload → PHOENIX extreme ultraviolet imager ⓘ
subject linked to: EQUULEUS CubeSat
linked to: Extreme Ultraviolet Imager
Ionospheric Connection Explorer → instrumentFullName → Extreme Ultraviolet Imager ⓘ