Changeset 3701
- Timestamp:
- Oct 23, 2018 9:59:11 AM (5 years ago)
- Location:
- Tutorials/Magnetic-IV
- Files:
-
- 18 added
- 28 edited
Legend:
- Unmodified
- Added
- Removed
-
Tutorials/Magnetic-IV/Magnetic-IV.htm
r3644 r3701 23 23 <o:Author>Von Dreele</o:Author> 24 24 <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> 27 27 <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> 29 29 <o:Pages>1</o:Pages> 30 30 <o:Words>2037</o:Words> … … 42 42 <!--[if gte mso 9]><xml> 43 43 <w:WordDocument> 44 <w:Zoom>108</w:Zoom>45 44 <w:SpellingState>Clean</w:SpellingState> 46 45 <w:GrammarState>Clean</w:GrammarState> … … 659 658 {font-family:"Cambria Math"; 660 659 panose-1:2 4 5 3 5 4 6 3 2 4; 661 mso-font-charset: 0;660 mso-font-charset:1; 662 661 mso-generic-font-family:roman; 663 662 mso-font-pitch:variable; … … 1286 1285 <p class=MsoNormal>In this tutorial, we will show how GSAS-II makes use of the 1287 1286 Bilbao 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> routine1289 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 i nternet access).</p>1287 <i style='mso-bidi-font-style:normal'>Magnetic Symmetry and Applications</i> 1288 routine k-SUBGROUPSMAG (<a 1289 href="http://iopscience.iop.org/0953-8984/28/28/286001"><span style='font-size: 1290 10.0pt;font-family:"Arial",sans-serif'>Perez-Mato, JM; <span class=SpellE>Gallego</span>, 1291 SV; <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> 1293 Matter</i> (2016), <b>28</b>:28601</span></a>) to determine a magnetic crystal 1294 structure with a non-zero propagation vector. If you have not done so already, 1295 you may wish to do the Simple Magnetic Structures tutorial first as it contains 1296 some background information that will not be covered here. It is also helpful 1297 to do parts I - III of the series of Magnetic Structures tutorials. To make 1298 this work, your computer must have an internet connection for GSAS-II to access 1299 this site. (We will supply the project file that results after k-SUBGROUPSMAG 1300 is called in case you lack internet access).</p> 1302 1301 1303 1302 <p class=MsoNormal><span style='mso-no-proof:yes'><!--[if gte vml 1]><v:shapetype … … 1323 1322 </v:shapetype><v:shape id="Picture_x0020_3" o:spid="_x0000_i1046" type="#_x0000_t75" 1324 1323 style='width:356.25pt;height:316.5pt;visibility:visible;mso-wrap-style:square'> 1325 <v:imagedata src="Magnetic-IV_files/image00 5.png" o:title=""/>1324 <v:imagedata src="Magnetic-IV_files/image001.png" o:title=""/> 1326 1325 </v:shape><![endif]--><![if !vml]><img border=0 width=475 height=422 1327 src="Magnetic-IV_files/image00 6.gif" v:shapes="Picture_x0020_3"><![endif]></span></p>1326 src="Magnetic-IV_files/image002.gif" v:shapes="Picture_x0020_3"><![endif]></span></p> 1328 1327 1329 1328 <p class=MsoNormal>In this tutorial we will be examining the perovskite (Pr<sub>0.5</sub>Sr<sub>0.5</sub><span … … 1331 1330 class=SpellE>a,b,c</span>-axis variant due to a rotation of the MnO<sub>6</sub> 1332 1331 <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 chemical1334 unit cell. The neutron powder diffraction data was collected on the 3T2 1335 diffractometer (LLB, <span class=SpellE>Saclay</span> France) at 10K and1332 to give the <span class=SpellE>Fmmm</span>, a=7.508, b=7.812, c=7.684 Å 1333 chemical unit cell. The neutron powder diffraction data was collected on the 1334 3T2 diffractometer (LLB, <span class=SpellE>Saclay</span> France) at 10K and 1336 1335 λ=1.227 Å and this tutorial is based on Example 12.3 in the Jana2006 1337 1336 Cookbook (<span class=SpellE>Duek</span>, et al., 2017). The antiferromagnetic … … 1378 1377 href="https://subversion.xray.aps.anl.gov/pyGSAS/Tutorials/Magnetic-IV/data/">https://subversion.xray.aps.anl.gov/pyGSAS/Tutorials/Magnetic-IV/data/</a>. 1379 1378 In 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 shouldbe immediately visible.</span></p>1379 For this tutorial the extension on the data file is the expected one, so it should 1380 be immediately visible.</span></p> 1382 1381 1383 1382 <p class=MsoListParagraphCxSpMiddle style='text-indent:-.25in;mso-list:l1 level1 lfo2'><![if !supportLists]><span … … 1426 1425 id="Picture_x0020_4" o:spid="_x0000_i1045" type="#_x0000_t75" style='width:323.25pt; 1427 1426 height:287.25pt;visibility:visible;mso-wrap-style:square'> 1428 <v:imagedata src="Magnetic-IV_files/image00 7.png" o:title=""/>1427 <v:imagedata src="Magnetic-IV_files/image003.png" o:title=""/> 1429 1428 </v:shape><![endif]--><![if !vml]><img border=0 width=431 height=383 1430 src="Magnetic-IV_files/image00 8.gif" v:shapes="Picture_x0020_4"><![endif]></span></p>1429 src="Magnetic-IV_files/image004.gif" v:shapes="Picture_x0020_4"><![endif]></span></p> 1431 1430 1432 1431 <p class=MsoListParagraphCxSpLast style='text-indent:-.25in;mso-list:l1 level1 lfo2'><![if !supportLists]><span … … 1501 1500 o:spid="_x0000_i1044" type="#_x0000_t75" style='width:342.75pt;height:183.75pt; 1502 1501 visibility:visible;mso-wrap-style:square'> 1503 <v:imagedata src="Magnetic-IV_files/image00 9.png" o:title=""/>1502 <v:imagedata src="Magnetic-IV_files/image005.png" o:title=""/> 1504 1503 </v:shape><![endif]--><![if !vml]><img border=0 width=457 height=245 1505 src="Magnetic-IV_files/image0 10.gif" v:shapes="Picture_x0020_5"><![endif]></span></p>1504 src="Magnetic-IV_files/image006.gif" v:shapes="Picture_x0020_5"><![endif]></span></p> 1506 1505 1507 1506 <h3>Step 3. Check powder pattern indexing</h3> … … 1519 1518 o:spid="_x0000_i1043" type="#_x0000_t75" style='width:359.25pt;height:125.25pt; 1520 1519 visibility:visible;mso-wrap-style:square'> 1521 <v:imagedata src="Magnetic-IV_files/image0 11.png" o:title=""/>1520 <v:imagedata src="Magnetic-IV_files/image007.png" o:title=""/> 1522 1521 </v:shape><![endif]--><![if !vml]><img border=0 width=479 height=167 1523 src="Magnetic-IV_files/image0 12.gif" v:shapes="Picture_x0020_6"><![endif]></span><br>1522 src="Magnetic-IV_files/image008.gif" v:shapes="Picture_x0020_6"><![endif]></span><br> 1524 1523 <span class=GramE>This</span> can use lattice parameters & space groups to 1525 1524 generate expected reflection positions to check against the peaks in the powder … … 1544 1543 o:spid="_x0000_i1042" type="#_x0000_t75" style='width:362.25pt;height:126pt; 1545 1544 visibility:visible;mso-wrap-style:square'> 1546 <v:imagedata src="Magnetic-IV_files/image0 13.png" o:title=""/>1545 <v:imagedata src="Magnetic-IV_files/image009.png" o:title=""/> 1547 1546 </v:shape><![endif]--><![if !vml]><img border=0 width=483 height=168 1548 src="Magnetic-IV_files/image01 4.gif" v:shapes="Picture_x0020_7"><![endif]></span></p>1547 src="Magnetic-IV_files/image010.gif" v:shapes="Picture_x0020_7"><![endif]></span></p> 1549 1548 1550 1549 <p class=MsoNormal><span class=GramE>showing</span> the lattice constants for … … 1556 1555 id="Picture_x0020_9" o:spid="_x0000_i1041" type="#_x0000_t75" style='width:360.75pt; 1557 1556 height:320.25pt;visibility:visible;mso-wrap-style:square'> 1558 <v:imagedata src="Magnetic-IV_files/image01 5.png" o:title=""/>1557 <v:imagedata src="Magnetic-IV_files/image011.png" o:title=""/> 1559 1558 </v:shape><![endif]--><![if !vml]><img border=0 width=481 height=427 1560 src="Magnetic-IV_files/image01 6.gif" v:shapes="Picture_x0020_9"><![endif]></span></p>1559 src="Magnetic-IV_files/image012.gif" v:shapes="Picture_x0020_9"><![endif]></span></p> 1561 1560 1562 1561 <p class=MsoNormal>Ive zoomed into the 6-40 <span class=SpellE>deg</span> … … 1580 1579 id="Picture_x0020_10" o:spid="_x0000_i1040" type="#_x0000_t75" style='width:357.75pt; 1581 1580 height:317.25pt;visibility:visible;mso-wrap-style:square'> 1582 <v:imagedata src="Magnetic-IV_files/image01 9.png" o:title=""/>1581 <v:imagedata src="Magnetic-IV_files/image013.png" o:title=""/> 1583 1582 </v:shape><![endif]--><![if !vml]><img border=0 width=477 height=423 1584 src="Magnetic-IV_files/image0 29.gif" v:shapes="Picture_x0020_10"><![endif]></span></p>1583 src="Magnetic-IV_files/image014.gif" v:shapes="Picture_x0020_10"><![endif]></span></p> 1585 1584 1586 1585 <p class=MsoListParagraph style='margin-left:0in;mso-add-space:auto'>Those line 1587 up pretty well; note the lowest angle peak & the one at about 21º2Θ. 1588 Nowchange <span class=SpellE>Bravais</span> lattice and Space group to <span1586 up pretty well; note the lowest angle peak & the one at about 21º2Θ. Now 1587 change <span class=SpellE>Bravais</span> lattice and Space group to <span 1589 1588 class=SpellE>Bmmm</span>; a new plot will appear</p> 1590 1589 … … 1592 1591 id="Picture_x0020_8" o:spid="_x0000_i1039" type="#_x0000_t75" style='width:360.75pt; 1593 1592 height:320.25pt;visibility:visible;mso-wrap-style:square'> 1594 <v:imagedata src="Magnetic-IV_files/image0 21.png" o:title=""/>1593 <v:imagedata src="Magnetic-IV_files/image015.png" o:title=""/> 1595 1594 </v:shape><![endif]--><![if !vml]><img border=0 width=481 height=427 1596 src="Magnetic-IV_files/image0 31.gif" v:shapes="Picture_x0020_8"><![endif]></span></p>1595 src="Magnetic-IV_files/image016.gif" v:shapes="Picture_x0020_8"><![endif]></span></p> 1597 1596 1598 1597 <p class=MsoNormal>The match is not quite as good; the 1<sup>st</sup> line just … … 1602 1601 1603 1602 <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/image0 23.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=""/> 1607 1606 </v:shape><![endif]--><![if !vml]><img border=0 width=484 height=430 1608 src="Magnetic-IV_files/image0 32.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 tobe magnetic; the way to do this is to assign the propagation vector <span1607 src="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 1610 B- and C-centering leaving just A-centering. However, we want the A-center to 1611 be magnetic; the way to do this is to assign the propagation vector <span 1613 1612 class=SpellE>k<sub>x</sub><span class=GramE>,k<sub>y</sub>,k<sub>z</sub></span></span> 1614 1613 = (1,0,0) when we run k-SUBGROUPSMAG on the parent space group (<span … … 1625 1624 1626 1625 <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; 1628 1627 visibility:visible;mso-wrap-style:square'> 1629 <v:imagedata src="Magnetic-IV_files/image0 33.png" o:title=""/>1630 </v:shape><![endif]--><![if !vml]><img border=0 width=2 43 height=3991631 src="Magnetic-IV_files/image0 34.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 1630 src="Magnetic-IV_files/image020.gif" v:shapes="_x0000_i1037"><![endif]></span></p> 1632 1631 1633 1632 <p class=MsoNormal>These are the controls for running the Bilbao routine. The … … 1655 1654 id="Picture_x0020_11" o:spid="_x0000_i1036" type="#_x0000_t75" style='width:357.75pt; 1656 1655 height:123.75pt;visibility:visible;mso-wrap-style:square'> 1657 <v:imagedata src="Magnetic-IV_files/image02 7.png" o:title=""/>1656 <v:imagedata src="Magnetic-IV_files/image021.png" o:title=""/> 1658 1657 </v:shape><![endif]--><![if !vml]><img border=0 width=477 height=165 1659 src="Magnetic-IV_files/image0 35.gif" v:shapes="Picture_x0020_11"><![endif]></span></p>1658 src="Magnetic-IV_files/image022.gif" v:shapes="Picture_x0020_11"><![endif]></span></p> 1660 1659 1661 1660 <p class=MsoNormal>Press <b style='mso-bidi-font-weight:normal'><span … … 1688 1687 1689 1688 <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/image0 36.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=""/> 1693 1692 </v:shape><![endif]--><![if !vml]><img border=0 width=478 height=321 1694 src="Magnetic-IV_files/image0 38.gif" v:shapes="_x0000_i1035"><![endif]></span></p>1693 src="Magnetic-IV_files/image024.gif" v:shapes="Picture_x0020_12"><![endif]></span></p> 1695 1694 1696 1695 <p class=MsoNormal>The <span class=SpellE>Uniq</span> column gives the number … … 1700 1699 mso-ascii-theme-font:minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-theme-font: 1701 1700 minor-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 anon-standard version of P <span class=SpellE>mna</span>, #53 in International1701 default to transform the standard setting result from k-SUBGROUPSMAG for orthorhombic 1702 to one that closely is aligned, if possible, to the parent cell axes. So this 1703 list contains non-standard settings of orthorhombic space groups (e.g. the 1704 chemical version of #3 P<sub>C</sub> <span class=SpellE>bmn</span> is a 1705 non-standard version of P <span class=SpellE>mna</span>, #53 in International 1707 1706 Tables for Crystallography Vol A.). If desired, clearing the flag and rerunning 1708 1707 k-SUBGROUPSMAG will produce magnetic space groups in standard settings; we will … … 1733 1732 id="Picture_x0020_16" o:spid="_x0000_i1034" type="#_x0000_t75" style='width:358.5pt; 1734 1733 height:200.25pt;visibility:visible;mso-wrap-style:square'> 1735 <v:imagedata src="Magnetic-IV_files/image0 37.png" o:title=""/>1734 <v:imagedata src="Magnetic-IV_files/image025.png" o:title=""/> 1736 1735 </v:shape><![endif]--><![if !vml]><img border=0 width=478 height=267 1737 src="Magnetic-IV_files/image0 40.gif" v:shapes="Picture_x0020_16"><![endif]></span></p>1736 src="Magnetic-IV_files/image026.gif" v:shapes="Picture_x0020_16"><![endif]></span></p> 1738 1737 1739 1738 <p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span … … 1745 1744 id="Picture_x0020_17" o:spid="_x0000_i1033" type="#_x0000_t75" style='width:276.75pt; 1746 1745 height:222.75pt;visibility:visible;mso-wrap-style:square'> 1747 <v:imagedata src="Magnetic-IV_files/image0 39.png" o:title=""/>1746 <v:imagedata src="Magnetic-IV_files/image027.png" o:title=""/> 1748 1747 </v:shape><![endif]--><![if !vml]><img border=0 width=369 height=297 1749 src="Magnetic-IV_files/image0 42.gif" v:shapes="Picture_x0020_17"><![endif]></span></p>1748 src="Magnetic-IV_files/image028.gif" v:shapes="Picture_x0020_17"><![endif]></span></p> 1750 1749 1751 1750 <p class=MsoNormal>This shows all magnetic phases that were marked <span … … 1760 1759 id="Picture_x0020_18" o:spid="_x0000_i1032" type="#_x0000_t75" style='width:276.75pt; 1761 1760 height:92.25pt;visibility:visible;mso-wrap-style:square'> 1762 <v:imagedata src="Magnetic-IV_files/image0 41.png" o:title=""/>1761 <v:imagedata src="Magnetic-IV_files/image029.png" o:title=""/> 1763 1762 </v:shape><![endif]--><![if !vml]><img border=0 width=369 height=123 1764 src="Magnetic-IV_files/image0 44.gif" v:shapes="Picture_x0020_18"><![endif]></span></p>1763 src="Magnetic-IV_files/image030.gif" v:shapes="Picture_x0020_18"><![endif]></span></p> 1765 1764 1766 1765 <p class=MsoNormal>This one <span class=SpellE>Mn</span> atom has an allowed … … 1780 1779 id="Picture_x0020_19" o:spid="_x0000_i1031" type="#_x0000_t75" style='width:354pt; 1781 1780 height:197.25pt;visibility:visible;mso-wrap-style:square'> 1782 <v:imagedata src="Magnetic-IV_files/image0 43.png" o:title=""/>1781 <v:imagedata src="Magnetic-IV_files/image031.png" o:title=""/> 1783 1782 </v:shape><![endif]--><![if !vml]><img border=0 width=472 height=263 1784 src="Magnetic-IV_files/image0 46.gif" v:shapes="Picture_x0020_19"><![endif]></span></p>1783 src="Magnetic-IV_files/image032.gif" v:shapes="Picture_x0020_19"><![endif]></span></p> 1785 1784 1786 1785 <p class=MsoNormal>Select Atoms, enter <b style='mso-bidi-font-weight:normal'><span … … 1799 1798 id="Picture_x0020_20" o:spid="_x0000_i1030" type="#_x0000_t75" style='width:5in; 1800 1799 height:319.5pt;visibility:visible;mso-wrap-style:square'> 1801 <v:imagedata src="Magnetic-IV_files/image0 45.png" o:title=""/>1800 <v:imagedata src="Magnetic-IV_files/image033.png" o:title=""/> 1802 1801 </v:shape><![endif]--><![if !vml]><img border=0 width=480 height=426 1803 src="Magnetic-IV_files/image0 48.gif" v:shapes="Picture_x0020_20"><![endif]></span></p>1802 src="Magnetic-IV_files/image034.gif" v:shapes="Picture_x0020_20"><![endif]></span></p> 1804 1803 1805 1804 <p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span … … 1830 1829 style='mso-bidi-font-weight:normal'><span style='font-family:"Calibri",sans-serif; 1831 1830 mso-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 <b1831 minor-latin'>Calculate/Refine</span></b> again; <span class=SpellE>wR</span> ~ 1832 7% now. To finish the refinement, include Instrument parameters <b 1834 1833 style='mso-bidi-font-weight:normal'><span style='font-family:"Calibri",sans-serif; 1835 1834 mso-ascii-theme-font:minor-latin;mso-hansi-theme-font:minor-latin;mso-bidi-theme-font: … … 1853 1852 id="Picture_x0020_21" o:spid="_x0000_i1029" type="#_x0000_t75" style='width:356.25pt; 1854 1853 height:316.5pt;visibility:visible;mso-wrap-style:square'> 1855 <v:imagedata src="Magnetic-IV_files/image0 47.png" o:title=""/>1854 <v:imagedata src="Magnetic-IV_files/image035.png" o:title=""/> 1856 1855 </v:shape><![endif]--><![if !vml]><img border=0 width=475 height=422 1857 src="Magnetic-IV_files/image0 50.gif" v:shapes="Picture_x0020_21"><![endif]></span></p>1856 src="Magnetic-IV_files/image036.gif" v:shapes="Picture_x0020_21"><![endif]></span></p> 1858 1857 1859 1858 <p class=MsoNormal>I show the plot with <span class=SpellE><span class=GramE>sqrt</span></span><span … … 1881 1880 id="Picture_x0020_22" o:spid="_x0000_i1028" type="#_x0000_t75" style='width:5in; 1882 1881 height:201pt;visibility:visible;mso-wrap-style:square'> 1883 <v:imagedata src="Magnetic-IV_files/image0 49.png" o:title=""/>1882 <v:imagedata src="Magnetic-IV_files/image037.png" o:title=""/> 1884 1883 </v:shape><![endif]--><![if !vml]><img border=0 width=480 height=268 1885 src="Magnetic-IV_files/image0 52.gif" v:shapes="Picture_x0020_22"><![endif]></span></p>1884 src="Magnetic-IV_files/image038.gif" v:shapes="Picture_x0020_22"><![endif]></span></p> 1886 1885 1887 1886 <p class=MsoNormal>Do <b style='mso-bidi-font-weight:normal'><span … … 1893 1892 id="Picture_x0020_23" o:spid="_x0000_i1027" type="#_x0000_t75" style='width:276.75pt; 1894 1893 height:222.75pt;visibility:visible;mso-wrap-style:square'> 1895 <v:imagedata src="Magnetic-IV_files/image0 39.png" o:title=""/>1894 <v:imagedata src="Magnetic-IV_files/image027.png" o:title=""/> 1896 1895 </v:shape><![endif]--><![if !vml]><img border=0 width=369 height=297 1897 src="Magnetic-IV_files/image0 42.gif" v:shapes="Picture_x0020_23"><![endif]></span></p>1896 src="Magnetic-IV_files/image028.gif" v:shapes="Picture_x0020_23"><![endif]></span></p> 1898 1897 1899 1898 <p class=MsoNormal>We already tried the 1<sup>st</sup> one; now select the 2<sup>nd</sup> … … 1905 1904 id="Picture_x0020_24" o:spid="_x0000_i1026" type="#_x0000_t75" style='width:281.25pt; 1906 1905 height:92.25pt;visibility:visible;mso-wrap-style:square'> 1907 <v:imagedata src="Magnetic-IV_files/image0 51.png" o:title=""/>1906 <v:imagedata src="Magnetic-IV_files/image039.png" o:title=""/> 1908 1907 </v:shape><![endif]--><![if !vml]><img border=0 width=375 height=123 1909 src="Magnetic-IV_files/image0 54.gif" v:shapes="Picture_x0020_24"><![endif]></span></p>1908 src="Magnetic-IV_files/image040.gif" v:shapes="Picture_x0020_24"><![endif]></span></p> 1910 1909 1911 1910 <p class=MsoNormal>In this case, the <span class=SpellE>Mn</span> atom has … … 1924 1923 id="Picture_x0020_25" o:spid="_x0000_i1025" type="#_x0000_t75" style='width:355.5pt; 1925 1924 height:209.25pt;visibility:visible;mso-wrap-style:square'> 1926 <v:imagedata src="Magnetic-IV_files/image0 53.png" o:title=""/>1925 <v:imagedata src="Magnetic-IV_files/image041.png" o:title=""/> 1927 1926 </v:shape><![endif]--><![if !vml]><img border=0 width=474 height=279 1928 src="Magnetic-IV_files/image0 65.gif" v:shapes="Picture_x0020_25"><![endif]></span></p>1927 src="Magnetic-IV_files/image042.gif" v:shapes="Picture_x0020_25"><![endif]></span></p> 1929 1928 1930 1929 <p class=MsoNormal>Select the Atoms tab & set <span class=SpellE>Mx</span> -
Tutorials/Magnetic-IV/Magnetic-IV_files/filelist.xml
r3644 r3701 5 5 <o:File HRef="themedata.thmx"/> 6 6 <o:File HRef="colorschememapping.xml"/> 7 <o:File HRef="image001.png"/> 8 <o:File HRef="image002.gif"/> 9 <o:File HRef="image003.png"/> 10 <o:File HRef="image004.gif"/> 7 11 <o:File HRef="image005.png"/> 8 12 <o:File HRef="image006.gif"/> … … 17 21 <o:File HRef="image015.png"/> 18 22 <o:File HRef="image016.gif"/> 23 <o:File HRef="image017.png"/> 24 <o:File HRef="image018.gif"/> 19 25 <o:File HRef="image019.png"/> 20 <o:File HRef="image02 9.gif"/>26 <o:File HRef="image020.gif"/> 21 27 <o:File HRef="image021.png"/> 22 <o:File HRef="image0 31.gif"/>28 <o:File HRef="image022.gif"/> 23 29 <o:File HRef="image023.png"/> 30 <o:File HRef="image024.gif"/> 31 <o:File HRef="image025.png"/> 32 <o:File HRef="image026.gif"/> 33 <o:File HRef="image027.png"/> 34 <o:File HRef="image028.gif"/> 35 <o:File HRef="image029.png"/> 36 <o:File HRef="image030.gif"/> 37 <o:File HRef="image031.png"/> 24 38 <o:File HRef="image032.gif"/> 25 39 <o:File HRef="image033.png"/> 26 40 <o:File HRef="image034.gif"/> 27 <o:File HRef="image0 27.png"/>28 <o:File HRef="image03 5.gif"/>29 <o:File HRef="image03 6.png"/>41 <o:File HRef="image035.png"/> 42 <o:File HRef="image036.gif"/> 43 <o:File HRef="image037.png"/> 30 44 <o:File HRef="image038.gif"/> 31 <o:File HRef="image03 7.png"/>45 <o:File HRef="image039.png"/> 32 46 <o:File HRef="image040.gif"/> 33 <o:File HRef="image0 39.png"/>47 <o:File HRef="image041.png"/> 34 48 <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"/>49 49 <o:File HRef="filelist.xml"/> 50 50 </xml> -
Tutorials/Magnetic-IV/Magnetic-IV_files/props049.xml
r3644 r3701 1 1 <?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>
Note: See TracChangeset
for help on using the changeset viewer.