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  • Wednesday 5th September Sol 29

    Posted by jbridges in Mars Science Laboratory Blog on September 5, 2012 We have been making initial analyses of the Mars atmosphere using SAM (Surface Analysis at Mars) which includes a mass spectrometer with gas chromatography.

  • 22nd August 2013 Sol 371

    Posted by jbridges in Mars Science Laboratory Blog on August 22, 2013 Mars has two moons Phobos – about 22km diameter, and Deimos which is about half that.  MastCam has recently imaged an occultation where Phobos passed in front of the more distant Deimos.

  • 20th September 2014 Sol 755

    Posted by jbridges in Mars Science Laboratory Blog on September 20, 2014 This striking image shows the flat surface of the local mudstone in the Pahrump area.  In it you can see raised ridges and veins, a bit like we saw back in Yellowknife Bay.

  • 22nd July 2014 Sol 696

    Posted by jbridges in Mars Science Laboratory Blog on July 22, 2014 Recently MastCam and ChemCam imaging revealed 2 iron meteorites along our traverse.  These are the first found by Curiosity, though the 2 MER, Spirit and Opportunity also identified iron meteorites.

  • 24th January 2014 Sol 522

    Posted by jbridges in Mars Science Laboratory Blog on January 24, 2014 The Science Magazine papers about Yellowknife Bay have just been published: http://www.sciencemag.

  • Friday 19th October Sol 72

    Posted by jbridges in Mars Science Laboratory Blog on October 19, 2012 One of the main aims of the scoops has been to get soils and dust of suitable fine grained size for the X-ray diffraction experiment – CHEMIN.  We are waiting with excitement for the first results.

  • Opportunity to touch smell and taste a deconstructed medieval manuscript

    A unique opportunity to experience a medieval manuscript as a sensory experience will be taking place at the University.

  • Space Plasmas and Planetary Atmospheres

    Module code: PA4603 This module builds upon your knowledge of electromagnetism and the motion of charged particles in electric and magnetic fields to derive the laws determining the behaviour of plasmas and magnetised fluids – magnetohydrodynamics (MHD).

  • Space Plasmas and Planetary Atmospheres

    Module code: PA4603 This module builds upon your knowledge of electromagnetism and the motion of charged particles in electric and magnetic fields to derive the laws determining the behaviour of plasmas and magnetised fluids – magnetohydrodynamics (MHD).

  • Space Plasmas and Planetary Atmospheres

    Module code: PA4603 This module builds upon your knowledge of electromagnetism and the motion of charged particles in electric and magnetic fields to derive the laws determining the behaviour of plasmas and magnetised fluids – magnetohydrodynamics (MHD).

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