[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"detail-sidebar-cat-1-en-105":3,"doc-seo-189592-105":53,"doc-detail-189592-en":127},{"code":4,"msg":5,"data":6},0,"success",[7,14,19,24,29,34,39,44,49],{"id":8,"doc_module":9,"doc_module_name":10,"category_name":11,"show_sort_weight":12,"slug":13},11,1,"Template","Presentations",90,"presentations",{"id":15,"doc_module":9,"doc_module_name":10,"category_name":16,"show_sort_weight":17,"slug":18},12,"Resumes",80,"resumes",{"id":20,"doc_module":9,"doc_module_name":10,"category_name":21,"show_sort_weight":22,"slug":23},14,"Invoices",70,"invoices",{"id":25,"doc_module":9,"doc_module_name":10,"category_name":26,"show_sort_weight":27,"slug":28},15,"Posters",60,"posters",{"id":30,"doc_module":9,"doc_module_name":10,"category_name":31,"show_sort_weight":32,"slug":33},16,"Social Media",50,"social-media",{"id":35,"doc_module":9,"doc_module_name":10,"category_name":36,"show_sort_weight":37,"slug":38},17,"Forms",40,"forms",{"id":40,"doc_module":9,"doc_module_name":10,"category_name":41,"show_sort_weight":42,"slug":43},18,"Letters",30,"letters",{"id":45,"doc_module":9,"doc_module_name":10,"category_name":46,"show_sort_weight":47,"slug":48},21,"Paper Templates",5,"papers-templates",{"id":50,"doc_module":9,"doc_module_name":10,"category_name":51,"show_sort_weight":4,"slug":52},158,"General","general-158",{"code":4,"msg":54,"data":55},"ok",{"site_id":56,"language":57,"slug":58,"title":59,"keywords":60,"description":61,"schema_data":62,"social_meta":120,"head_meta":122,"extra_data":124,"updated_unix":126},105,"en","paper-template-ieee-standard","Paper-Template-IEEE-Standard","","This document provides a conversion table for magnetic quantities from Gaussian and CGS EMU units to SI units. It details the symbols, quantities, and corresponding conversion factors for magnetic flux, magnetic flux density, magnetic field strength, magnetic moment, magnetization, specific magnetization, magnetic dipole moment, magnetic polarization, susceptibility, mass susceptibility, permeability, relative permeability, energy density, and demagnetizing factor. The table is crucial for researchers and engineers working with magnetic materials and measurements, ensuring accurate data interpretation and consistency across different unit systems. Additionally, the document includes visual representations of the magnetization versus applied field in one of its figures, demonstrating a typical hysteresis loop or magnetization curve, further supporting the understanding of magnetic properties and their measurement in SI units. The provided images, including portraits and a graph, suggest that this document may be part of a larger publication or presentation related to physics or engineering research, possibly including author affiliations and experimental data.",{"@graph":63,"@context":119},[64,80,102],{"@type":65,"itemListElement":66},"BreadcrumbList",[67,71,74,77],{"item":68,"name":69,"@type":70,"position":9},"https://docshare.wps.com","Home","ListItem",{"item":72,"name":10,"@type":70,"position":73},"https://docshare.wps.com/template/",2,{"item":75,"name":46,"@type":70,"position":76},"https://docshare.wps.com/template/paper-templates/",3,{"item":78,"name":59,"@type":70,"position":79},"https://docshare.wps.com/template/paper-template-ieee-standard/189592/",4,{"url":78,"name":59,"@type":81,"image":82,"author":87,"headline":59,"publisher":90,"fileFormat":93,"inLanguage":57,"description":61,"dateModified":94,"datePublished":95,"encodingFormat":93,"isAccessibleForFree":96,"interactionStatistic":97},"DigitalDocument",{"url":83,"@type":84,"width":85,"height":86},"https://docshare.wps.com/thumbnails/paper-template-ieee-standard/189592.png","ImageObject",442,249,{"name":88,"@type":89},"River Wang","Person",{"url":68,"name":91,"@type":92},"DocShare","Organization","application/pdf","2026-10-02","2026-09-03",true,{"@type":98,"interactionType":99,"userInteractionCount":101},"InteractionCounter",{"@type":100},"ViewAction",7,{"@type":103,"mainEntity":104},"FAQPage",[105,111,115],{"name":106,"@type":107,"acceptedAnswer":108},"What are the SI units for magnetic flux density?","Question",{"text":109,"@type":110},"The SI unit for magnetic flux density is the Tesla (T). 1 Gauss (G) is equal to 10^-4 Tesla.","Answer",{"name":112,"@type":107,"acceptedAnswer":113},"How is magnetic field strength converted from Oe to A/m?",{"text":114,"@type":110},"1 Oersted (Oe) is approximately equal to 10^3 / (4π) Amperes per meter (A/m).",{"name":116,"@type":107,"acceptedAnswer":117},"What is the SI unit for magnetization?",{"text":118,"@type":110},"The SI unit for magnetization is Amperes per meter (A/m). 1 erg/(G·cm³) or 1 emu/cm³ is equivalent to 10³ A/m.","https://schema.org",{"og:url":78,"og:type":121,"og:title":59,"og:site_name":91,"og:description":61},"article",{"robots":123,"canonical":78},"index,follow",{"doc_id":125,"site_id":56},189592,1790023340,{"code":4,"msg":5,"data":128},{"doc_id":125,"user_id":129,"nickname":88,"user_avatar":130,"doc_module":9,"category_id":45,"category_name":46,"doc_title":59,"doc_description":61,"doc_content":131,"file_id":132,"file_url":133,"file_type":134,"file_size":135,"view_count":101,"is_deleted":4,"is_public":9,"is_downloadable":9,"audit_status":9,"page_count":136,"language":137,"language_code":57,"site_id":56,"html_lang":57,"table_of_contents":138,"faqs":139,"seo_title":140,"seo_description":61,"update_tm":141,"read_time":76},1099514067438,"https://ap-avatar.wpscdn.com/avatar/100002539ee87300030?x-image-process=image/resize,m_fixed,w_180,h_180&k=1780474512215547542","| Symbol | Quantity | Conversion from Gaussian and CGS EMU to SI a |\n| --- | --- | --- |\n| 􀀩 | magnetic flux | 1 Mx 􀁯 10􀀐8 Wb = 10􀀐8 V· s |\n| B | magnetic flux density, magnetic induction | 1 G 􀁯 10􀀐4 T = 10􀀐4 Wb/m2 |\n| H | magnetic field strength | 1 Oe 􀁯 103/(4􀁓) A/m |\n| m | magnetic moment | 1 erg/G = 1 emu\u003Cbr>􀁯 10􀀐3 A·m2 = 10􀀐3 J/T |\n| M | magnetization | 1 erg/(G·cm3) = 1 emu/cm3 􀁯 103 A/m |\n| 4􀁓M | magnetization | 1 G 􀁯 103/(4􀁓) A/m |\n| 􀁖 | specific magnetization | 1 erg/(G·g) = 1 emu/g 􀁯 1 A·m2/kg |\n| j | magnetic dipole moment | 1 erg/G = 1 emu\u003Cbr>􀁯 4􀁓 􀁵 10􀀐10 Wb·m |\n| J | magnetic polarization | 1 erg/(G·cm3) = 1 emu/cm3 􀁯 4􀁓 􀁵 10􀀐4 T |\n| 􀁆, 􀁎􀁆􀁕􀁐 | susceptibility mass susceptibility permeability | 1 􀁯 4􀁓\u003Cbr>1 cm3/g 􀁯 4􀁓 􀁵 10􀀐3 m3/kg\u003Cbr>1 􀁯 4􀁓 􀁵 10􀀐7 H/m = 4􀁓 􀁵 10􀀐7 Wb/(A·m) |\n| 􀁐r | relative permeability | 􀁐 􀁯 􀁐r |\n| w, W | energy density | 1 erg/cm3 􀁯 10􀀐1 J/m3 |\n| N, D | demagnetizing factor | 1 􀁯 1/(4􀁓) |","cbCaitcA9d63M8nT","https://ap.wps.com/l/cbCaitcA9d63M8nT","pdf",698683,9,"English","# Conversion from Gaussian and CGS EMU to SI\n## Magnetic flux\n## Magnetic flux density\n## Magnetic field strength\n## Magnetic moment\n## Magnetization\n## Specific magnetization\n## Magnetic dipole moment\n## Magnetic polarization\n## Susceptibility\n## Permeability\n## Relative permeability\n## Energy density\n## Demagnetizing factor","[{\"question\":\"What are the SI units for magnetic flux density?\",\"answer\":\"The SI unit for magnetic flux density is the Tesla (T). 1 Gauss (G) is equal to 10^-4 Tesla.\"},{\"question\":\"How is magnetic field strength converted from Oe to A/m?\",\"answer\":\"1 Oersted (Oe) is approximately equal to 10^3 / (4π) Amperes per meter (A/m).\"},{\"question\":\"What is the SI unit for magnetization?\",\"answer\":\"The SI unit for magnetization is Amperes per meter (A/m). 1 erg/(G·cm³) or 1 emu/cm³ is equivalent to 10³ A/m.\"}]","Paper-Template-IEEE-Standard | PDF",1788397927]