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Reply  Message 1 of 26 on the subject 
From: BARILOCHENSE6999  (Original message) Sent: 28/12/2018 02:40

Magdalena Ridge Observatory

From Wikipedia, the free encyclopedia
 
 
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Magdalena Ridge Observatory
Magdalena Observatory.JPG
2.4-meter Telescope at Magdalena Ridge
Organization New Mexico Institute of Mining and Technology Edit this on Wikidata
Observatory code H01 Edit this on Wikidata
Location Socorro County, New Mexico, US
Coordinates 33°58′36″N107°11′06″WCoordinates33°58′36″N 107°11′06″W
Altitude 3,230 m (10,600 ft) Edit this at Wikidata
Established 1999 Edit this on Wikidata
Website www.mro.nmt.edu Edit this at Wikidata
Telescopes MRO Optical Interferometer
MRO fast-tracking Telescope Edit this on Wikidata
Magdalena Ridge Observatory is located in the US
Magdalena Ridge Observatory
Location of Magdalena Ridge Observatory
Commons page Related media on Wikimedia Commons
[edit on Wikidata]

The Magdalena Ridge Observatory (MRO) is an astronomical observatoryin Socorro County, New Mexico, about 32 kilometers (20 mi) west of the town of Socorro. The observatory is located in the Magdalena Mountains near the summit of South Baldy Mountain, adjacent to the Langmuir Laboratory for Atmospheric Research. Currently operational at the site (since 2008) is a 2.4-meter fast-tracking optical telescope,[1] and under construction is a ten-element optical interferometer.

The MRO Interferometer is an international scientific collaboration between New Mexico Institute of Mining and Technology (New Mexico Tech – NMT) and the Cavendish Astrophysics Group of University of Cambridge. The project is principally funded by the United States Naval Research Laboratory(NRL), which also supports the Navy Optical Interferometer near Flagstaff, Arizona. NRL is part of the Office of Naval Research.[2] New Mexico State UniversityNew Mexico Highlands University, the University of Puerto Rico, and Los Alamos National Laboratory were originally partners, but have since withdrawn.[3]

Telescopes[edit]

2.4-meter telescope[edit]

The MRO 2.4-meter (7.9 ft) telescope is a Nasmyth design on an azimuth-elevation (az-el) mount. The telescope is capable of slew rates of 10 degrees per second, enabling it to observe artificial objects in low Earth orbit. The telescope is also used for asteroid studies and observations of other solar system objects.[4]The MRO 2.4-meter achieved first light on October 31, 2006, and began regular operations on September 1, 2008, after a commissioning phase that included tracking near-Earth asteroid 2007 WD5 for NASA.[5]

The telescope's primary mirror has a complicated history. It was built by Itek as part of a competition for the contract for the Hubble mirror (although it has a different prescription than the one used to construct the Hubble). When Perkin-Elmer was chosen instead as the Hubble contractor, the mirror was passed to a classified Air Force project. When this project was in turn discontinued, the mirror was transferred to the Magdalena Ridge Observatory, along with a blank for the secondary.[6][7]

As of May 2008, the facility is under a multi-year contract with NASA to provide follow-up astrometry and characterization data on near-Earth asteroids and comets as part of Spaceguard, and also collaborates with the Air Force to track and characterize satellites in GEO and LEO orbits.[8] On October 9, 2009, New Mexico Tech scientists used instruments on the MRO 2.4-meter and at the Etscorn Campus Observatory to observe controlled impacts of two NASA Centaur rockets at the southern polar region of the moon as part of the LCROSS Project.[9][10]

On October 23, 2015, it was announced that the MRO telescope will receive funding from the Federal Aviation Administration (FAA) in early 2016 to monitor the launch and re-entry of commercial space vehicles from Spaceport America.[11]

Magdalena Ridge Optical Interferometer[edit]

Artist's conception of the MROI array

The Magdalena Ridge Optical Interferometer (MROI) is an optical and near infraredinterferometer under construction at MRO. When the MROI is completed, it will have ten 1.4 m (55 in) telescopes located on three 340 m (1,120 ft) arms. Each arm will have nine stations where the telescopes can be positioned, and one telescope can be positioned at the center. The telescopes and their enclosures will be moved with a customized crane. Light from the telescopes' primary mirrors will be directed along the arms to the Beam Combining Facility (BCF). These pipes will be evacuated of all air in order to reduce distortions. Inside the BCF, the light will first travel through extensions of the pipes in the Delay Line Area, which will bring the light beams into phase. Then light will exit the vacuum pipes in the Beam Combining Area (BCA), where the light will be directed into one of three permanent sensors, or to a temporary instrument on a fourth table. The light will strike a total of eleven mirrors before entering a sensor.

The MROI was designed with three research areas in mind: star and planet formationstellar accretion and mass loss, and active galactic nuclei.[12] An interferometer was selected because such devices can be built with higher resolving powerthan single-mirror telescopes, enabling them to image distant objects in greater detail. However, they do not provide more light-gathering capacity, as the total area of the mirrors is usually small.

MROI construction status[edit]

The basic design of MROI was completed in 2006. Construction of the facility began in August 2006 with the BCF building, which was completed in 2008. In July 2007, the contract for the design of the ten 1.4 m telescopes was awarded to Advanced Mechanical and Optical Systems S.A. (AMOS) of Belgium. In 2009 the design of the infrastructure of interferometer arms was completed, as was the design for the telescope enclosures. In 2010 construction of the arms began. Also in 2010 the first delay line was installed in the BCF.[13]

On October 19, 2015, New Mexico Tech signed a five-year, $25 million cooperative agreement with the Air Force Research Laboratory to support continued development of the interferometer at the observatory. Dr. Van Romero, Vice President of Research at Tech, said the new funding will allow the completion of three telescopes, mounts and enclosures on the mountaintop facility.[14]

New Mexico Exoplanet Spectroscopic Survey Instrument[edit]

The New Mexico Exoplanet Spectroscopic Survey Instrument (NESSI) is a ground-based instrument specifically designed to study the atmospheres of exoplanets.[15][16] The $3.5 million instrument is the first purpose-built device for the analysis of exoplanet atmospheres,[17] and is expected to have a powerful impact on the field of exoplanet characterization.[18]

The Principal Investigator is Michele Creech-Eakman at the New Mexico Institute of Mining and Technology, working with seven co-investigators.[18] The NESSI instrument was mounted on the observatory's 2.4 meter telescope. The instrument's first exoplanet observations began in April 2014.

See also[edit]



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Reply  Message 2 of 26 on the subject 
From: BARILOCHENSE6999 Sent: 28/12/2018 20:37
Resultado de imagen para cristo no es dios
 
 
Respuesta Eliminar Mensaje  Mensaje 66 de 67 en el tema 
De: BARILOCHENSE6999 Enviado: 05/11/2018 21:37

Reply  Message 3 of 26 on the subject 
From: BARILOCHENSE6999 Sent: 29/12/2018 17:12

 
Respuesta Ocultar Mensaje Eliminar Mensaje  Mensaje 6 de 6 en el tema 
De: BARILOCHENSE6999 Enviado: 28/12/2018 00:16

The Very Large Array, Magdalena, New Mexico. This was my third time to visit the VLA.

The Very Large Array, Magdalena, New Mexico. This was my third time to visit the VLA.



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De: BARILOCHENSE6999 Enviado: 28/12/2018 00:26
Resultado de imagen para MAGDALENE NEW MEXICO

 
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De: BARILOCHENSE6999 Enviado: 28/12/2018 01:07
Resultado de imagen para MAGDALENE NEW MEXICO
 
milky way in Simple Gematria Equals: 119 ( m 13 i9 l 12 k 11 y 25 0 w 23 a1 y 25 )
queen mary in Simple Gematria Equals: 119 ( q 17 u 21 e5 e5 n 14 0 m 13 a1 r 18 y 25  
hebrew calendar in Simple Gematria Equals: 119 ( h8 e5 b2 r 18 e5 w 23 0 c3 a1 l 12 e5 n 14 d4 a1 r 18
mary magdalene in Simple Gematria Equals: 119 ( m 13 a1 r 18 y 25 0 m 13 a1 g7 d4 a1 l 12 e5 n 14 e5  

Magdalena Ridge Observatory

From Wikipedia, the free encyclopedia
 
 
Jump to navigationJump to search
Magdalena Ridge Observatory
Magdalena Observatory.JPG
2.4-meter Telescope at Magdalena Ridge
Organization New Mexico Institute of Mining and Technology Edit this on Wikidata
Observatory code H01 Edit this on Wikidata
Location Socorro County, New Mexico, US
Coordinates 33°58′36″N107°11′06″WCoordinates33°58′36″N 107°11′06″W
Altitude 3,230 m (10,600 ft) Edit this at Wikidata
Established 1999 Edit this on Wikidata
Website www.mro.nmt.edu Edit this at Wikidata
Telescopes MRO Optical Interferometer
MRO fast-tracking Telescope Edit this on Wikidata
Magdalena Ridge Observatory is located in the US
Magdalena Ridge Observatory
Location of Magdalena Ridge Observatory
Commons page Related media on Wikimedia Commons
[edit on Wikidata]

The Magdalena Ridge Observatory (MRO) is an astronomical observatoryin Socorro County, New Mexico, about 32 kilometers (20 mi) west of the town of Socorro. The observatory is located in the Magdalena Mountains near the summit of South Baldy Mountain, adjacent to the Langmuir Laboratory for Atmospheric Research. Currently operational at the site (since 2008) is a 2.4-meter fast-tracking optical telescope,[1] and under construction is a ten-element optical interferometer.

The MRO Interferometer is an international scientific collaboration between New Mexico Institute of Mining and Technology (New Mexico Tech – NMT) and the Cavendish Astrophysics Group of University of Cambridge. The project is principally funded by the United States Naval Research Laboratory(NRL), which also supports the Navy Optical Interferometer near Flagstaff, Arizona. NRL is part of the Office of Naval Research.[2] New Mexico State UniversityNew Mexico Highlands University, the University of Puerto Rico, and Los Alamos National Laboratory were originally partners, but have since withdrawn.[3]

Telescopes[edit]

2.4-meter telescope[edit]

The MRO 2.4-meter (7.9 ft) telescope is a Nasmyth design on an azimuth-elevation (az-el) mount. The telescope is capable of slew rates of 10 degrees per second, enabling it to observe artificial objects in low Earth orbit. The telescope is also used for asteroid studies and observations of other solar system objects.[4]The MRO 2.4-meter achieved first light on October 31, 2006, and began regular operations on September 1, 2008, after a commissioning phase that included tracking near-Earth asteroid 2007 WD5 for NASA.[5]

The telescope's primary mirror has a complicated history. It was built by Itek as part of a competition for the contract for the Hubble mirror (although it has a different prescription than the one used to construct the Hubble). When Perkin-Elmer was chosen instead as the Hubble contractor, the mirror was passed to a classified Air Force project. When this project was in turn discontinued, the mirror was transferred to the Magdalena Ridge Observatory, along with a blank for the secondary.[6][7]

As of May 2008, the facility is under a multi-year contract with NASA to provide follow-up astrometry and characterization data on near-Earth asteroids and comets as part of Spaceguard, and also collaborates with the Air Force to track and characterize satellites in GEO and LEO orbits.[8] On October 9, 2009, New Mexico Tech scientists used instruments on the MRO 2.4-meter and at the Etscorn Campus Observatory to observe controlled impacts of two NASA Centaur rockets at the southern polar region of the moon as part of the LCROSS Project.[9][10]

On October 23, 2015, it was announced that the MRO telescope will receive funding from the Federal Aviation Administration (FAA) in early 2016 to monitor the launch and re-entry of commercial space vehicles from Spaceport America.[11]

Magdalena Ridge Optical Interferometer[edit]

Artist's conception of the MROI array

The Magdalena Ridge Optical Interferometer (MROI) is an optical and near infraredinterferometer under construction at MRO. When the MROI is completed, it will have ten 1.4 m (55 in) telescopes located on three 340 m (1,120 ft) arms. Each arm will have nine stations where the telescopes can be positioned, and one telescope can be positioned at the center. The telescopes and their enclosures will be moved with a customized crane. Light from the telescopes' primary mirrors will be directed along the arms to the Beam Combining Facility (BCF). These pipes will be evacuated of all air in order to reduce distortions. Inside the BCF, the light will first travel through extensions of the pipes in the Delay Line Area, which will bring the light beams into phase. Then light will exit the vacuum pipes in the Beam Combining Area (BCA), where the light will be directed into one of three permanent sensors, or to a temporary instrument on a fourth table. The light will strike a total of eleven mirrors before entering a sensor.

The MROI was designed with three research areas in mind: star and planet formationstellar accretion and mass loss, and active galactic nuclei.[12] An interferometer was selected because such devices can be built with higher resolving powerthan single-mirror telescopes, enabling them to image distant objects in greater detail. However, they do not provide more light-gathering capacity, as the total area of the mirrors is usually small.

MROI construction status[edit]

The basic design of MROI was completed in 2006. Construction of the facility began in August 2006 with the BCF building, which was completed in 2008. In July 2007, the contract for the design of the ten 1.4 m telescopes was awarded to Advanced Mechanical and Optical Systems S.A. (AMOS) of Belgium. In 2009 the design of the infrastructure of interferometer arms was completed, as was the design for the telescope enclosures. In 2010 construction of the arms began. Also in 2010 the first delay line was installed in the BCF.[13]

On October 19, 2015, New Mexico Tech signed a five-year, $25 million cooperative agreement with the Air Force Research Laboratory to support continued development of the interferometer at the observatory. Dr. Van Romero, Vice President of Research at Tech, said the new funding will allow the completion of three telescopes, mounts and enclosures on the mountaintop facility.[14]

New Mexico Exoplanet Spectroscopic Survey Instrument[edit]

The New Mexico Exoplanet Spectroscopic Survey Instrument (NESSI) is a ground-based instrument specifically designed to study the atmospheres of exoplanets.[15][16] The $3.5 million instrument is the first purpose-built device for the analysis of exoplanet atmospheres,[17] and is expected to have a powerful impact on the field of exoplanet characterization.[18]

The Principal Investigator is Michele Creech-Eakman at the New Mexico Institute of Mining and Technology, working with seven co-investigators.[18] The NESSI instrument was mounted on the observatory's 2.4 meter telescope. The instrument's first exoplanet observations began in April 2014.

See also[edit]

Resultado de imagen para MAGDALENE NEW MEXICO

Reply  Message 4 of 26 on the subject 
From: BARILOCHENSE6999 Sent: 29/12/2018 19:12
Resultado de imagen para genesis 22:15,18
 
GEMATRIA EN INGLES DE SEED=33
GEMATRIA EN INGLES DE GATE=33
SARA (CE-SAREA DE FILIPO)=PARALELO 33
 
WOMAN MAN 69 1111.JPG
milky way in Simple Gematria Equals: 119 ( m 13 i9 l 12 k 11 y 25 0 w 23 a1 y 25 )
queen mary in Simple Gematria Equals: 119 ( q 17 u 21 e5 e5 n 14 0 m 13 a1 r 18 y 25  
hebrew calendar in Simple Gematria Equals: 119 ( h8 e5 b2 r 18 e5 w 23 0 c3 a1 l 12 e5 n 14 d4 a1 r 18
mary magdalene in Simple Gematria Equals: 119 ( m 13 a1 r 18 y 25 0 m 13 a1 g7 d4 a1 l 12 e5 n 14 e5  
lionsgate in Simple Gematria Equals: 102 ( l
12
i
9
o
15
n
14
s
19
g
7
a
1
t
20
e
5
)
lions in Simple Gematria Equals: 69 ( l
12
i
9
o
15
n
14
s
19
)
gate in Simple Gematria Equals: 33 ( g
7
a
1
t
20
e
5
)


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Reply  Message 2 of 2 on the subject 
From: BARILOCHENSE6999 Sent: 11/12/2017 12:06
LA MISMA LETRA G DE LA ESCUADRA Y EL COMPAS ES UNA REFERENCIA ENTRE OTROS, AL TERMINO GATE/PUERTA/33


Reply Hide message Delete message  Message 12 of 12 on the subject 
From: BARILOCHENSE6999 Sent: 11/12/2017 12:39
Resultado de imagen para genesis 22:15,18
 
GENESIS 22:17 (CLAVE STAR GATE)


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Resultado de imagen para HUBBLE EGG
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Reply  Message 6 of 26 on the subject 
From: BARILOCHENSE6999 Sent: 08/01/2019 19:24
Resultado de imagen para genesis 22:15,18
 
GEMATRIA EN INGLES DE SEED=33
GEMATRIA EN INGLES DE GATE=33
SARA (CE-SAREA DE FILIPO)=PARALELO 33
Resultado de imagen para MAGDALENE NEW MEXICO
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the Apple
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Resultado de imagen para MAGDALENE NEW MEXICO
Resultado de imagen para MAGDALENE NEW MEXICO
 
milky way in Simple Gematria Equals: 119 ( m 13 i9 l 12 k 11 y 25 0 w 23 a1 y 25 )
queen mary in Simple Gematria Equals: 119 ( q 17 u 21 e5 e5 n 14 0 m 13 a1 r 18 y 25  
hebrew calendar in Simple Gematria Equals: 119 ( h8 e5 b2 r 18 e5 w 23 0 c3 a1 l 12 e5 n 14 d4 a1 r 18
mary magdalene in Simple Gematria Equals: 119 ( m 13 a1 r 18 y 25 0 m 13 a1 g7 d4 a1 l 12 e5 n 14 e5  
Resultado de imagen para MAGDALENE NEW MEXICO

Reply  Message 7 of 26 on the subject 
From: BARILOCHENSE6999 Sent: 29/01/2019 16:16
Imagen relacionada
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dollar US animé

11 DE SEPTIEMBRE O SEPTIEMBRE 11

11/9 O 9/11

Poster WTC
 

 

Image roll-over

 

11 Septembre 2001...?

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Resultado de imagen para alien el octavo pasajero gato
 
Image
 
Sapientia Aedificavit Sibi Domum. Es decir, "la sabiduría ha edificado aquí su casa". Resulta curioso que la misma frase aparece en el Evangelio de María Magdalena, un texto apócrifo. Se dice que en el interior de esta iglesia y de otras muchas de Venecia está escondido el tesoro de los templarios. Pero no hay ninguna prueba de ello. Para terminar ya con esta entrada me gustaría que nos acercásemos un momento a uno de los edificios más emblemáticos de Venecia: el Palacio Ducal.
 
 
 
Resultado de imagen para chiesa della maddalena venezia
Eye within an interlocking circle and triangle, Santa Maria della Maddalena, Venice
La Maddalena
Church of Santa Maria della Maddalena, Venice
La Maddalena
Tomb of the architect Tommaso Temanza, Santa Maria della Maddalena, Venice
Tomb of Tommaso Temanza
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ISLA SAN GIORGIO (VENECIA)=GEORGE LEMAITRE
 
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Resultado de imagen para genesis 22:15,18
 
GEMATRIA EN INGLES DE SEED=33
GEMATRIA EN INGLES DE GATE=33
SARA (CE-SAREA DE FILIPO)=PARALELO 33
Resultado de imagen para MAGDALENE NEW MEXICO
Resultado de imagen para GALAXY PHI
Resultado de imagen para GALAXY PHI

"¡Oh profundidad de las riquezas de la sabiduría (sophia)
y de la ciencia (gnwsiV, gnosis) de Dios!
¡Cuán incomprensibles son sus juicios, e inescrutables sus caminos!"
(Romanos, 11: 33).

 

 
Resultado de imagen para LEONARDO DA VINCI VENECIA
25 DE ABRIL=DIA DE SAN MARCOS
 
22 DE JULIO=DIA DE MARIA LA MAGDALENA
 
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the Apple
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milky way in Simple Gematria Equals: 119 ( m 13 i9 l 12 k 11 y 25 0 w 23 a1 y 25 )
queen mary in Simple Gematria Equals: 119 ( q 17 u 21 e5 e5 n 14 0 m 13 a1 r 18 y 25  
hebrew calendar in Simple Gematria Equals: 119 ( h8 e5 b2 r 18 e5 w 23 0 c3 a1 l 12 e5 n 14 d4 a1 r 18
mary magdalene in Simple Gematria Equals: 119 ( m 13 a1 r 18 y 25 0 m 13 a1 g7 d4 a1 l 12 e5 n 14 e5  
Resultado de imagen para MAGDALENE NEW MEXICO

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From: BARILOCHENSE6999 Sent: 31/01/2019 19:22
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Respuesta  Mensaje 114 de 114 en el tema 
De: BARILOCHENSE6999 Enviado: 15/08/2019 13:12
Los Álamos
Lugar designado por el censo
Los Alamos.jpg
 
Los Álamos ubicada en Nuevo México
Los Álamos
Los Álamos
 
Ubicación en el condado de Los Álamos en Nuevo México
Map of USA NM.svg
Ubicación de Nuevo México en Estados Unidos
Coordenadas 35°53′28″N 106°17′52″OCoordenadas35°53′28″N 106°17′52″O (mapa)
Entidad Lugar designado por el censo
 • País Bandera de Estados Unidos Estados Unidos
 • Estado Bandera de Nuevo México Nuevo México
 • Condado Los Álamos
Superficie  
 • Total 28.87 km²
 • Tierra 28,86 km²
 • Agua (0,04%) 0,01 km²
Altitud  
 • Media 2231 m s. n. m.
Población ()  
 • Total 12 019 hab.
 • Densidad 416,34 hab/km²
Huso horario MontañaUTC-7
 • en verano UTC-6
Código ZIP 87544–87545
Código de área 505
GNIS 24081321
Sitio web oficial

Reply  Message 11 of 26 on the subject 
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