Changeset 3701 for Tutorials/Magnetic-IV


Ignore:
Timestamp:
Oct 23, 2018 9:59:11 AM (3 years ago)
Author:
vondreele
Message:

update tutorial

Location:
Tutorials/Magnetic-IV
Files:
18 added
28 edited

Legend:

Unmodified
Added
Removed
  • Tutorials/Magnetic-IV/Magnetic-IV.htm

    r3644 r3701  
    2323  <o:Author>Von Dreele</o:Author>
    2424  <o:LastAuthor>vondreele</o:LastAuthor>
    25   <o:Revision>8</o:Revision>
    26   <o:TotalTime>392</o:TotalTime>
     25  <o:Revision>10</o:Revision>
     26  <o:TotalTime>452</o:TotalTime>
    2727  <o:Created>2018-10-01T13:36:00Z</o:Created>
    28   <o:LastSaved>2018-10-03T20:04:00Z</o:LastSaved>
     28  <o:LastSaved>2018-10-23T14:58:00Z</o:LastSaved>
    2929  <o:Pages>1</o:Pages>
    3030  <o:Words>2037</o:Words>
     
    4242<!--[if gte mso 9]><xml>
    4343 <w:WordDocument>
    44   <w:Zoom>108</w:Zoom>
    4544  <w:SpellingState>Clean</w:SpellingState>
    4645  <w:GrammarState>Clean</w:GrammarState>
     
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    12861285<p class=MsoNormal>In this tutorial, we will show how GSAS-II makes use of the
    12871286Bilbao crystallographic server (<a href="http://www.cryst.ehu.es/">www.cryst.ehu.es/</a>)
    1288 <i style='mso-bidi-font-style:normal'>Magnetic Symmetry and Applications</i> routine
    1289 k-SUBGROUPSMAG (<a href="http://iopscience.iop.org/0953-8984/28/28/286001"><span
    1290 style='font-size:10.0pt;font-family:"Arial",sans-serif'>Perez-Mato, JM; <span
    1291 class=SpellE>Gallego</span>, SV; <span class=SpellE>Elcoro</span>, L; <span
    1292 class=SpellE>Tasci</span>, E and <span class=SpellE>Aroyo</span>, MI, <i>J. of
    1293 Phys.: <span class=SpellE>Condens</span> Matter</i> (2016), <b>28</b>:28601</span></a>)
    1294 to determine a magnetic crystal structure with a non-zero propagation vector.
    1295 If you have not done so already, you may wish to do the Simple Magnetic
    1296 Structures tutorial first as it contains some background information that will
    1297 not be covered here. It is also helpful to do parts I - III of the series of
    1298 Magnetic Structures tutorials. To make this work, your computer must have an
    1299 internet connection for GSAS-II to access this site. (We will supply the
    1300 project file that results after k-SUBGROUPSMAG is called in case you lack
    1301 internet access).</p>
     1287<i style='mso-bidi-font-style:normal'>Magnetic Symmetry and Applications</i>
     1288routine k-SUBGROUPSMAG (<a
     1289href="http://iopscience.iop.org/0953-8984/28/28/286001"><span style='font-size:
     129010.0pt;font-family:"Arial",sans-serif'>Perez-Mato, JM; <span class=SpellE>Gallego</span>,
     1291SV; <span class=SpellE>Elcoro</span>, L; <span class=SpellE>Tasci</span>, E and
     1292<span class=SpellE>Aroyo</span>, MI, <i>J. of Phys.: <span class=SpellE>Condens</span>
     1293Matter</i> (2016), <b>28</b>:28601</span></a>) to determine a magnetic crystal
     1294structure with a non-zero propagation vector. If you have not done so already,
     1295you may wish to do the Simple Magnetic Structures tutorial first as it contains
     1296some background information that will not be covered here. It is also helpful
     1297to do parts I - III of the series of Magnetic Structures tutorials. To make
     1298this work, your computer must have an internet connection for GSAS-II to access
     1299this site. (We will supply the project file that results after k-SUBGROUPSMAG
     1300is called in case you lack internet access).</p>
    13021301
    13031302<p class=MsoNormal><span style='mso-no-proof:yes'><!--[if gte vml 1]><v:shapetype
     
    13231322</v:shapetype><v:shape id="Picture_x0020_3" o:spid="_x0000_i1046" type="#_x0000_t75"
    13241323 style='width:356.25pt;height:316.5pt;visibility:visible;mso-wrap-style:square'>
    1325  <v:imagedata src="Magnetic-IV_files/image005.png" o:title=""/>
     1324 <v:imagedata src="Magnetic-IV_files/image001.png" o:title=""/>
    13261325</v:shape><![endif]--><![if !vml]><img border=0 width=475 height=422
    1327 src="Magnetic-IV_files/image006.gif" v:shapes="Picture_x0020_3"><![endif]></span></p>
     1326src="Magnetic-IV_files/image002.gif" v:shapes="Picture_x0020_3"><![endif]></span></p>
    13281327
    13291328<p class=MsoNormal>In this tutorial we will be examining the perovskite (Pr<sub>0.5</sub>Sr<sub>0.5</sub><span
     
    13311330class=SpellE>a,b,c</span>-axis variant due to a rotation of the MnO<sub>6</sub>
    13321331<span class=SpellE>octahedra</span> about the assigned c-axis (drawing above)
    1333 to give the <span class=SpellE>Fmmm</span>, a=7.508, b=7.812, c=7.684 Å chemical
    1334 unit cell. The neutron powder diffraction data was collected on the 3T2
    1335 diffractometer (LLB, <span class=SpellE>Saclay</span> France) at 10K and
     1332to give the <span class=SpellE>Fmmm</span>, a=7.508, b=7.812, c=7.684 Å
     1333chemical unit cell. The neutron powder diffraction data was collected on the
     13343T2 diffractometer (LLB, <span class=SpellE>Saclay</span> France) at 10K and
    13361335&#955;=1.227 Å and this tutorial is based on Example 12.3 in the Jana2006
    13371336Cookbook (<span class=SpellE>Dušek</span>, et al., 2017). The antiferromagnetic
     
    13781377href="https://subversion.xray.aps.anl.gov/pyGSAS/Tutorials/Magnetic-IV/data/">https://subversion.xray.aps.anl.gov/pyGSAS/Tutorials/Magnetic-IV/data/</a>.
    13791378In this case you will need to navigate to the download location manually.)<br>
    1380 For this tutorial the extension on the data file is the expected one, so it
    1381 should be immediately visible.</span></p>
     1379For this tutorial the extension on the data file is the expected one, so it should
     1380be immediately visible.</span></p>
    13821381
    13831382<p class=MsoListParagraphCxSpMiddle style='text-indent:-.25in;mso-list:l1 level1 lfo2'><![if !supportLists]><span
     
    14261425 id="Picture_x0020_4" o:spid="_x0000_i1045" type="#_x0000_t75" style='width:323.25pt;
    14271426 height:287.25pt;visibility:visible;mso-wrap-style:square'>
    1428  <v:imagedata src="Magnetic-IV_files/image007.png" o:title=""/>
     1427 <v:imagedata src="Magnetic-IV_files/image003.png" o:title=""/>
    14291428</v:shape><![endif]--><![if !vml]><img border=0 width=431 height=383
    1430 src="Magnetic-IV_files/image008.gif" v:shapes="Picture_x0020_4"><![endif]></span></p>
     1429src="Magnetic-IV_files/image004.gif" v:shapes="Picture_x0020_4"><![endif]></span></p>
    14311430
    14321431<p class=MsoListParagraphCxSpLast style='text-indent:-.25in;mso-list:l1 level1 lfo2'><![if !supportLists]><span
     
    15011500 o:spid="_x0000_i1044" type="#_x0000_t75" style='width:342.75pt;height:183.75pt;
    15021501 visibility:visible;mso-wrap-style:square'>
    1503  <v:imagedata src="Magnetic-IV_files/image009.png" o:title=""/>
     1502 <v:imagedata src="Magnetic-IV_files/image005.png" o:title=""/>
    15041503</v:shape><![endif]--><![if !vml]><img border=0 width=457 height=245
    1505 src="Magnetic-IV_files/image010.gif" v:shapes="Picture_x0020_5"><![endif]></span></p>
     1504src="Magnetic-IV_files/image006.gif" v:shapes="Picture_x0020_5"><![endif]></span></p>
    15061505
    15071506<h3>Step 3. Check powder pattern indexing</h3>
     
    15191518 o:spid="_x0000_i1043" type="#_x0000_t75" style='width:359.25pt;height:125.25pt;
    15201519 visibility:visible;mso-wrap-style:square'>
    1521  <v:imagedata src="Magnetic-IV_files/image011.png" o:title=""/>
     1520 <v:imagedata src="Magnetic-IV_files/image007.png" o:title=""/>
    15221521</v:shape><![endif]--><![if !vml]><img border=0 width=479 height=167
    1523 src="Magnetic-IV_files/image012.gif" v:shapes="Picture_x0020_6"><![endif]></span><br>
     1522src="Magnetic-IV_files/image008.gif" v:shapes="Picture_x0020_6"><![endif]></span><br>
    15241523<span class=GramE>This</span> can use lattice parameters &amp; space groups to
    15251524generate expected reflection positions to check against the peaks in the powder
     
    15441543 o:spid="_x0000_i1042" type="#_x0000_t75" style='width:362.25pt;height:126pt;
    15451544 visibility:visible;mso-wrap-style:square'>
    1546  <v:imagedata src="Magnetic-IV_files/image013.png" o:title=""/>
     1545 <v:imagedata src="Magnetic-IV_files/image009.png" o:title=""/>
    15471546</v:shape><![endif]--><![if !vml]><img border=0 width=483 height=168
    1548 src="Magnetic-IV_files/image014.gif" v:shapes="Picture_x0020_7"><![endif]></span></p>
     1547src="Magnetic-IV_files/image010.gif" v:shapes="Picture_x0020_7"><![endif]></span></p>
    15491548
    15501549<p class=MsoNormal><span class=GramE>showing</span> the lattice constants for
     
    15561555 id="Picture_x0020_9" o:spid="_x0000_i1041" type="#_x0000_t75" style='width:360.75pt;
    15571556 height:320.25pt;visibility:visible;mso-wrap-style:square'>
    1558  <v:imagedata src="Magnetic-IV_files/image015.png" o:title=""/>
     1557 <v:imagedata src="Magnetic-IV_files/image011.png" o:title=""/>
    15591558</v:shape><![endif]--><![if !vml]><img border=0 width=481 height=427
    1560 src="Magnetic-IV_files/image016.gif" v:shapes="Picture_x0020_9"><![endif]></span></p>
     1559src="Magnetic-IV_files/image012.gif" v:shapes="Picture_x0020_9"><![endif]></span></p>
    15611560
    15621561<p class=MsoNormal>I’ve zoomed into the 6-40 <span class=SpellE>deg</span>
     
    15801579 id="Picture_x0020_10" o:spid="_x0000_i1040" type="#_x0000_t75" style='width:357.75pt;
    15811580 height:317.25pt;visibility:visible;mso-wrap-style:square'>
    1582  <v:imagedata src="Magnetic-IV_files/image019.png" o:title=""/>
     1581 <v:imagedata src="Magnetic-IV_files/image013.png" o:title=""/>
    15831582</v:shape><![endif]--><![if !vml]><img border=0 width=477 height=423
    1584 src="Magnetic-IV_files/image029.gif" v:shapes="Picture_x0020_10"><![endif]></span></p>
     1583src="Magnetic-IV_files/image014.gif" v:shapes="Picture_x0020_10"><![endif]></span></p>
    15851584
    15861585<p class=MsoListParagraph style='margin-left:0in;mso-add-space:auto'>Those line
    1587 up pretty well; note the lowest angle peak &amp; the one at about 21º2&#920;.
    1588 Now change <span class=SpellE>Bravais</span> lattice and Space group to <span
     1586up pretty well; note the lowest angle peak &amp; the one at about 21º2&#920;. Now
     1587change <span class=SpellE>Bravais</span> lattice and Space group to <span
    15891588class=SpellE>Bmmm</span>; a new plot will appear</p>
    15901589
     
    15921591 id="Picture_x0020_8" o:spid="_x0000_i1039" type="#_x0000_t75" style='width:360.75pt;
    15931592 height:320.25pt;visibility:visible;mso-wrap-style:square'>
    1594  <v:imagedata src="Magnetic-IV_files/image021.png" o:title=""/>
     1593 <v:imagedata src="Magnetic-IV_files/image015.png" o:title=""/>
    15951594</v:shape><![endif]--><![if !vml]><img border=0 width=481 height=427
    1596 src="Magnetic-IV_files/image031.gif" v:shapes="Picture_x0020_8"><![endif]></span></p>
     1595src="Magnetic-IV_files/image016.gif" v:shapes="Picture_x0020_8"><![endif]></span></p>
    15971596
    15981597<p class=MsoNormal>The match is not quite as good; the 1<sup>st</sup> line just
     
    16021601
    16031602<p class=MsoNormal><span style='mso-no-proof:yes'><!--[if gte vml 1]><v:shape
    1604  id="Picture_x0020_12" o:spid="_x0000_i1038" type="#_x0000_t75" style='width:363pt;
    1605  height:322.5pt;visibility:visible;mso-wrap-style:square'>
    1606  <v:imagedata src="Magnetic-IV_files/image023.png" o:title=""/>
     1603 id="_x0000_i1038" type="#_x0000_t75" style='width:363pt;height:322.5pt;
     1604 visibility:visible;mso-wrap-style:square'>
     1605 <v:imagedata src="Magnetic-IV_files/image017.png" o:title=""/>
    16071606</v:shape><![endif]--><![if !vml]><img border=0 width=484 height=430
    1608 src="Magnetic-IV_files/image032.gif" v:shapes="Picture_x0020_12"><![endif]></span></p>
    1609 
    1610 <p class=MsoNormal>This fit seems even worse, so the right description is lose
    1611 the B- and C-centering leaving just A-centering. However, we want the A-center
    1612 to be magnetic; the way to do this is to assign the propagation vector <span
     1607src="Magnetic-IV_files/image018.gif" v:shapes="_x0000_i1038"><![endif]></span></p>
     1608
     1609<p class=MsoNormal>This fit seems even worse, so the right description is lose the
     1610B- and C-centering leaving just A-centering. However, we want the A-center to
     1611be magnetic; the way to do this is to assign the propagation vector <span
    16131612class=SpellE>k<sub>x</sub><span class=GramE>,k<sub>y</sub>,k<sub>z</sub></span></span>
    16141613= (1,0,0) when we run k-SUBGROUPSMAG on the parent space group (<span
     
    16251624
    16261625<p class=MsoNormal><span style='mso-no-proof:yes'><!--[if gte vml 1]><v:shape
    1627  id="_x0000_i1037" type="#_x0000_t75" style='width:182.25pt;height:299.25pt;
     1626 id="_x0000_i1037" type="#_x0000_t75" style='width:207.75pt;height:225.75pt;
    16281627 visibility:visible;mso-wrap-style:square'>
    1629  <v:imagedata src="Magnetic-IV_files/image033.png" o:title=""/>
    1630 </v:shape><![endif]--><![if !vml]><img border=0 width=243 height=399
    1631 src="Magnetic-IV_files/image034.gif" v:shapes="_x0000_i1037"><![endif]></span></p>
     1628 <v:imagedata src="Magnetic-IV_files/image019.png" o:title=""/>
     1629</v:shape><![endif]--><![if !vml]><img border=0 width=277 height=301
     1630src="Magnetic-IV_files/image020.gif" v:shapes="_x0000_i1037"><![endif]></span></p>
    16321631
    16331632<p class=MsoNormal>These are the controls for running the Bilbao routine. The
     
    16551654 id="Picture_x0020_11" o:spid="_x0000_i1036" type="#_x0000_t75" style='width:357.75pt;
    16561655 height:123.75pt;visibility:visible;mso-wrap-style:square'>
    1657  <v:imagedata src="Magnetic-IV_files/image027.png" o:title=""/>
     1656 <v:imagedata src="Magnetic-IV_files/image021.png" o:title=""/>
    16581657</v:shape><![endif]--><![if !vml]><img border=0 width=477 height=165
    1659 src="Magnetic-IV_files/image035.gif" v:shapes="Picture_x0020_11"><![endif]></span></p>
     1658src="Magnetic-IV_files/image022.gif" v:shapes="Picture_x0020_11"><![endif]></span></p>
    16601659
    16611660<p class=MsoNormal>Press <b style='mso-bidi-font-weight:normal'><span
     
    16881687
    16891688<p class=MsoNormal><span style='mso-no-proof:yes'><!--[if gte vml 1]><v:shape
    1690  id="_x0000_i1035" type="#_x0000_t75" style='width:358.5pt;height:240.75pt;
    1691  visibility:visible;mso-wrap-style:square'>
    1692  <v:imagedata src="Magnetic-IV_files/image036.png" o:title=""/>
     1689 id="Picture_x0020_12" o:spid="_x0000_i1035" type="#_x0000_t75" style='width:358.5pt;
     1690 height:240.75pt;visibility:visible;mso-wrap-style:square'>
     1691 <v:imagedata src="Magnetic-IV_files/image023.png" o:title=""/>
    16931692</v:shape><![endif]--><![if !vml]><img border=0 width=478 height=321
    1694 src="Magnetic-IV_files/image038.gif" v:shapes="_x0000_i1035"><![endif]></span></p>
     1693src="Magnetic-IV_files/image024.gif" v:shapes="Picture_x0020_12"><![endif]></span></p>
    16951694
    16961695<p class=MsoNormal>The <span class=SpellE>Uniq</span> column gives the number
     
    17001699mso-ascii-theme-font:minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-theme-font:
    17011700minor-latin'>preserve axes</span></b> option on the k-SUBGROUPSMAG is set by
    1702 default to transform the standard setting result from k-SUBGROUPSMAG for
    1703 orthorhombic to one that closely is aligned, if possible, to the parent cell
    1704 axes. So this list contains non-standard settings of orthorhombic space groups
    1705 (e.g. the chemical version of #3 P<sub>C</sub> <span class=SpellE>bmn</span> is
    1706 a non-standard version of P <span class=SpellE>mna</span>, #53 in International
     1701default to transform the standard setting result from k-SUBGROUPSMAG for orthorhombic
     1702to one that closely is aligned, if possible, to the parent cell axes. So this
     1703list contains non-standard settings of orthorhombic space groups (e.g. the
     1704chemical version of #3 P<sub>C</sub> <span class=SpellE>bmn</span> is a
     1705non-standard version of P <span class=SpellE>mna</span>, #53 in International
    17071706Tables for Crystallography Vol A.). If desired, clearing the flag and rerunning
    17081707k-SUBGROUPSMAG will produce magnetic space groups in standard settings; we will
     
    17331732 id="Picture_x0020_16" o:spid="_x0000_i1034" type="#_x0000_t75" style='width:358.5pt;
    17341733 height:200.25pt;visibility:visible;mso-wrap-style:square'>
    1735  <v:imagedata src="Magnetic-IV_files/image037.png" o:title=""/>
     1734 <v:imagedata src="Magnetic-IV_files/image025.png" o:title=""/>
    17361735</v:shape><![endif]--><![if !vml]><img border=0 width=478 height=267
    1737 src="Magnetic-IV_files/image040.gif" v:shapes="Picture_x0020_16"><![endif]></span></p>
     1736src="Magnetic-IV_files/image026.gif" v:shapes="Picture_x0020_16"><![endif]></span></p>
    17381737
    17391738<p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span
     
    17451744 id="Picture_x0020_17" o:spid="_x0000_i1033" type="#_x0000_t75" style='width:276.75pt;
    17461745 height:222.75pt;visibility:visible;mso-wrap-style:square'>
    1747  <v:imagedata src="Magnetic-IV_files/image039.png" o:title=""/>
     1746 <v:imagedata src="Magnetic-IV_files/image027.png" o:title=""/>
    17481747</v:shape><![endif]--><![if !vml]><img border=0 width=369 height=297
    1749 src="Magnetic-IV_files/image042.gif" v:shapes="Picture_x0020_17"><![endif]></span></p>
     1748src="Magnetic-IV_files/image028.gif" v:shapes="Picture_x0020_17"><![endif]></span></p>
    17501749
    17511750<p class=MsoNormal>This shows all magnetic phases that were marked <span
     
    17601759 id="Picture_x0020_18" o:spid="_x0000_i1032" type="#_x0000_t75" style='width:276.75pt;
    17611760 height:92.25pt;visibility:visible;mso-wrap-style:square'>
    1762  <v:imagedata src="Magnetic-IV_files/image041.png" o:title=""/>
     1761 <v:imagedata src="Magnetic-IV_files/image029.png" o:title=""/>
    17631762</v:shape><![endif]--><![if !vml]><img border=0 width=369 height=123
    1764 src="Magnetic-IV_files/image044.gif" v:shapes="Picture_x0020_18"><![endif]></span></p>
     1763src="Magnetic-IV_files/image030.gif" v:shapes="Picture_x0020_18"><![endif]></span></p>
    17651764
    17661765<p class=MsoNormal>This one <span class=SpellE>Mn</span> atom has an allowed
     
    17801779 id="Picture_x0020_19" o:spid="_x0000_i1031" type="#_x0000_t75" style='width:354pt;
    17811780 height:197.25pt;visibility:visible;mso-wrap-style:square'>
    1782  <v:imagedata src="Magnetic-IV_files/image043.png" o:title=""/>
     1781 <v:imagedata src="Magnetic-IV_files/image031.png" o:title=""/>
    17831782</v:shape><![endif]--><![if !vml]><img border=0 width=472 height=263
    1784 src="Magnetic-IV_files/image046.gif" v:shapes="Picture_x0020_19"><![endif]></span></p>
     1783src="Magnetic-IV_files/image032.gif" v:shapes="Picture_x0020_19"><![endif]></span></p>
    17851784
    17861785<p class=MsoNormal>Select Atoms, enter <b style='mso-bidi-font-weight:normal'><span
     
    17991798 id="Picture_x0020_20" o:spid="_x0000_i1030" type="#_x0000_t75" style='width:5in;
    18001799 height:319.5pt;visibility:visible;mso-wrap-style:square'>
    1801  <v:imagedata src="Magnetic-IV_files/image045.png" o:title=""/>
     1800 <v:imagedata src="Magnetic-IV_files/image033.png" o:title=""/>
    18021801</v:shape><![endif]--><![if !vml]><img border=0 width=480 height=426
    1803 src="Magnetic-IV_files/image048.gif" v:shapes="Picture_x0020_20"><![endif]></span></p>
     1802src="Magnetic-IV_files/image034.gif" v:shapes="Picture_x0020_20"><![endif]></span></p>
    18041803
    18051804<p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span
     
    18301829style='mso-bidi-font-weight:normal'><span style='font-family:"Calibri",sans-serif;
    18311830mso-ascii-theme-font:minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-theme-font:
    1832 minor-latin'>Calculate/Refine</span></b> again; <span class=SpellE>wR</span> ~ 7%
    1833 now. To finish the refinement, include Instrument parameters <b
     1831minor-latin'>Calculate/Refine</span></b> again; <span class=SpellE>wR</span> ~
     18327% now. To finish the refinement, include Instrument parameters <b
    18341833style='mso-bidi-font-weight:normal'><span style='font-family:"Calibri",sans-serif;
    18351834mso-ascii-theme-font:minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-theme-font:
     
    18531852 id="Picture_x0020_21" o:spid="_x0000_i1029" type="#_x0000_t75" style='width:356.25pt;
    18541853 height:316.5pt;visibility:visible;mso-wrap-style:square'>
    1855  <v:imagedata src="Magnetic-IV_files/image047.png" o:title=""/>
     1854 <v:imagedata src="Magnetic-IV_files/image035.png" o:title=""/>
    18561855</v:shape><![endif]--><![if !vml]><img border=0 width=475 height=422
    1857 src="Magnetic-IV_files/image050.gif" v:shapes="Picture_x0020_21"><![endif]></span></p>
     1856src="Magnetic-IV_files/image036.gif" v:shapes="Picture_x0020_21"><![endif]></span></p>
    18581857
    18591858<p class=MsoNormal>I show the plot with <span class=SpellE><span class=GramE>sqrt</span></span><span
     
    18811880 id="Picture_x0020_22" o:spid="_x0000_i1028" type="#_x0000_t75" style='width:5in;
    18821881 height:201pt;visibility:visible;mso-wrap-style:square'>
    1883  <v:imagedata src="Magnetic-IV_files/image049.png" o:title=""/>
     1882 <v:imagedata src="Magnetic-IV_files/image037.png" o:title=""/>
    18841883</v:shape><![endif]--><![if !vml]><img border=0 width=480 height=268
    1885 src="Magnetic-IV_files/image052.gif" v:shapes="Picture_x0020_22"><![endif]></span></p>
     1884src="Magnetic-IV_files/image038.gif" v:shapes="Picture_x0020_22"><![endif]></span></p>
    18861885
    18871886<p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span
     
    18931892 id="Picture_x0020_23" o:spid="_x0000_i1027" type="#_x0000_t75" style='width:276.75pt;
    18941893 height:222.75pt;visibility:visible;mso-wrap-style:square'>
    1895  <v:imagedata src="Magnetic-IV_files/image039.png" o:title=""/>
     1894 <v:imagedata src="Magnetic-IV_files/image027.png" o:title=""/>
    18961895</v:shape><![endif]--><![if !vml]><img border=0 width=369 height=297
    1897 src="Magnetic-IV_files/image042.gif" v:shapes="Picture_x0020_23"><![endif]></span></p>
     1896src="Magnetic-IV_files/image028.gif" v:shapes="Picture_x0020_23"><![endif]></span></p>
    18981897
    18991898<p class=MsoNormal>We already tried the 1<sup>st</sup> one; now select the 2<sup>nd</sup>
     
    19051904 id="Picture_x0020_24" o:spid="_x0000_i1026" type="#_x0000_t75" style='width:281.25pt;
    19061905 height:92.25pt;visibility:visible;mso-wrap-style:square'>
    1907  <v:imagedata src="Magnetic-IV_files/image051.png" o:title=""/>
     1906 <v:imagedata src="Magnetic-IV_files/image039.png" o:title=""/>
    19081907</v:shape><![endif]--><![if !vml]><img border=0 width=375 height=123
    1909 src="Magnetic-IV_files/image054.gif" v:shapes="Picture_x0020_24"><![endif]></span></p>
     1908src="Magnetic-IV_files/image040.gif" v:shapes="Picture_x0020_24"><![endif]></span></p>
    19101909
    19111910<p class=MsoNormal>In this case, the <span class=SpellE>Mn</span> atom has
     
    19241923 id="Picture_x0020_25" o:spid="_x0000_i1025" type="#_x0000_t75" style='width:355.5pt;
    19251924 height:209.25pt;visibility:visible;mso-wrap-style:square'>
    1926  <v:imagedata src="Magnetic-IV_files/image053.png" o:title=""/>
     1925 <v:imagedata src="Magnetic-IV_files/image041.png" o:title=""/>
    19271926</v:shape><![endif]--><![if !vml]><img border=0 width=474 height=279
    1928 src="Magnetic-IV_files/image065.gif" v:shapes="Picture_x0020_25"><![endif]></span></p>
     1927src="Magnetic-IV_files/image042.gif" v:shapes="Picture_x0020_25"><![endif]></span></p>
    19291928
    19301929<p class=MsoNormal>Select the Atoms tab &amp; set <span class=SpellE>Mx</span>
  • Tutorials/Magnetic-IV/Magnetic-IV_files/filelist.xml

    r3644 r3701  
    55 <o:File HRef="themedata.thmx"/>
    66 <o:File HRef="colorschememapping.xml"/>
     7 <o:File HRef="image001.png"/>
     8 <o:File HRef="image002.gif"/>
     9 <o:File HRef="image003.png"/>
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     33 <o:File HRef="image027.png"/>
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    27  <o:File HRef="image027.png"/>
    28  <o:File HRef="image035.gif"/>
    29  <o:File HRef="image036.png"/>
     41 <o:File HRef="image035.png"/>
     42 <o:File HRef="image036.gif"/>
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    3044 <o:File HRef="image038.gif"/>
    31  <o:File HRef="image037.png"/>
     45 <o:File HRef="image039.png"/>
    3246 <o:File HRef="image040.gif"/>
    33  <o:File HRef="image039.png"/>
     47 <o:File HRef="image041.png"/>
    3448 <o:File HRef="image042.gif"/>
    35  <o:File HRef="image041.png"/>
    36  <o:File HRef="image044.gif"/>
    37  <o:File HRef="image043.png"/>
    38  <o:File HRef="image046.gif"/>
    39  <o:File HRef="image045.png"/>
    40  <o:File HRef="image048.gif"/>
    41  <o:File HRef="image047.png"/>
    42  <o:File HRef="image050.gif"/>
    43  <o:File HRef="image049.png"/>
    44  <o:File HRef="image052.gif"/>
    45  <o:File HRef="image051.png"/>
    46  <o:File HRef="image054.gif"/>
    47  <o:File HRef="image053.png"/>
    48  <o:File HRef="image065.gif"/>
    4949 <o:File HRef="filelist.xml"/>
    5050</xml>
  • Tutorials/Magnetic-IV/Magnetic-IV_files/props049.xml

    r3644 r3701  
    11<?xml version="1.0" encoding="UTF-8" standalone="no"?>
    2 <ds:datastoreItem ds:itemID="{EACE538B-465F-4359-8265-F135B560C97A}" xmlns:ds="http://schemas.openxmlformats.org/officeDocument/2006/customXml"><ds:schemaRefs><ds:schemaRef ds:uri="http://schemas.openxmlformats.org/officeDocument/2006/bibliography"/></ds:schemaRefs></ds:datastoreItem>
     2<ds:datastoreItem ds:itemID="{CF3434B1-6432-4954-9EE1-17F0E5D9CD47}" xmlns:ds="http://schemas.openxmlformats.org/officeDocument/2006/customXml"><ds:schemaRefs><ds:schemaRef ds:uri="http://schemas.openxmlformats.org/officeDocument/2006/bibliography"/></ds:schemaRefs></ds:datastoreItem>
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