{"id":1436,"date":"2017-10-13T03:59:04","date_gmt":"2017-10-13T03:59:04","guid":{"rendered":"http:\/\/landviser.biz\/dotcomsandbox\/?page_id=1436"},"modified":"2026-08-02T13:46:45","modified_gmt":"2026-08-02T18:46:45","slug":"faq","status":"publish","type":"page","link":"http:\/\/landviser.biz\/dotcomsandbox\/faq\/","title":{"rendered":"FAQs"},"content":{"rendered":"<div id=\"pl-1436\"  class=\"panel-layout\" ><div id=\"pg-1436-0\"  class=\"panel-grid panel-no-style\" ><div id=\"pgc-1436-0-0\"  class=\"panel-grid-cell\" ><div id=\"panel-1436-0-0-0\" class=\"widget_text so-panel widget widget_custom_html panel-first-child panel-last-child\" data-index=\"0\" ><div class=\"textwidget custom-html-widget\"><h4>How to convert conductivity to&nbsp;<strong>resistivity?<\/strong><\/h4><p class=\"rtejustify\">Electrical resistivity (ER) is reciprocal to conductivity (EC) and results can be easily recalculated using formula EC=1\/ER or vice versa ER=1\/EC. Electrical resistivity is more convenient to use on non-saline soils, where conductivity can be mSm\/m, while resitivity measures in 10<sup>2<\/sup>-10<sup>3<\/sup>&nbsp;Ohm m range. 1000 Ohm m equals 1 mSm\/m. You can find&nbsp;<a href=\"http:\/\/landviser.net\/webfm_send\/15\">more conversions to ppm, TDS, grains of salt in this flyer<\/a>.<\/p><h2><strong><a name=\"compare equipment\"><\/a><\/strong><img decoding=\"async\" src=\"http:\/\/landviser.net\/webfm_send\/152\" alt=\"LandMapper - fast, portable, versatile, affordable EC ER SP meter\"><\/h2><h4><strong>Is there any difference between LandMapper ERM-01 and other equipment available on the market?<\/strong><\/h4><p class=\"rtejustify\">LandMapper ERM-01 is based on pulsating DC current, which principle fully accounts for spontaneous polarization arising at the electrode contacts with soil. This allows to measure electrical resistivity fast (4 sec at one location) and with great accuracy. Geonics EM-series uses electromagnetic induction principle and AC current to measure electrical conductivity without any contact with the ground. Although such measurements are very fast they are subjected to electrical interference from nearby metals and sources of electricity. Besides, not a single modification of EM method can evaluate soil layer shallower than 0.5 m. Soil EC mapping systems supplied by Veris Technologies, Inc. imply the same four-electrode principle as LandMapper ERM-01, but their equipment is tailored to precision farming market and can be used only with motorized vehicle on arable fields. LandMapper ERM-01 is more compact and versatile and can be used anywhere where a person can walk, i.e. in forestry, wetland and road assessments, construction sites, golf courses, etc. Ground penetrating radar (GPR) evaluates profile differentiation of soil electrical conductivity in shallow subsurface, but its application is limited on soils with high conductivity, such as salty and clay soils (Liner and Liner, 1997). LandMappers, both ERM-01 and ERM-02 models,&nbsp;<a href=\"http:\/\/landviser.net\/webfm_send\/15\">measure EC and ER in widest range<\/a>&nbsp;occuring from solid rocks and ultra-pure water to saline soils and ocean waters! Our LandMapper ERM-02 device also can&nbsp;<a href=\"http:\/\/landviser.biz\/dotcomsandbox\/electrical-potential-self-potential-measurements-with-landmapper-erm-02\/\">measure natural electrical potential (self-potential) in soils, plants and other biological objects<\/a>. LandMapper was recently featured in&nbsp;<a href=\"http:\/\/landviser.net\/webfm_send\/76\">Encyclopedia of Solid Earth Geophysics (2011)<\/a>.<\/p><h4><strong><a name=\"four-electrode principle\"><\/a>How the equipment calculates electrical resistivity?<\/strong><\/h4><p class=\"rtejustify\">LandMapper applies a pulsating current (I) through electrodes A and B and measures arising potential (\u0394U) on electrodes MN in well-known&nbsp;<a href=\"http:\/\/landviser.biz\/dotcomsandbox\/wp-content\/uploads\/2017\/08\/emethods_theory-3.pdf\">four-electrode principle<\/a>&nbsp;described by van der Pauw and Wenner. Electrical resistivity calculated from the Ohm\u2019s law as<\/p><p align=\"center\"><img decoding=\"async\" src=\"http:\/\/landviser.net\/webfm_send\/155\"><\/p><p>where K is the geometrical coefficient of the array. The equipment calculates ER automatically if the user enters an appropriate coefficient into the device memory.<\/p><h4><strong><a name=\"geometrical coefficient\"><\/a>How to calculate geometrical coefficient K?<\/strong><\/h4><p class=\"rtejustify\">If you using the equipment with the supplied array or laboratory cuvette, the right coefficient are already calculated. However, if you want to use&nbsp;<a href=\"http:\/\/landviser.net\/webfm_send\/14\">your own array<\/a>, the geometrical coefficient can be calculated from the distances between electrodes as follows.<\/p><p>For any array:<\/p><p align=\"center\"><img decoding=\"async\" src=\"http:\/\/landviser.net\/webfm_send\/153\"><\/p><p>For center-symmetric array:<\/p><p class=\"rtecenter\"><img decoding=\"async\" src=\"http:\/\/landviser.net\/webfm_send\/154\" alt=\"\"><\/p><h4><strong><a name=\"EC vs soil properties\"><\/a>Does electrical resistivity correlate with any soil properties?<\/strong><\/h4><p>Electrical resistivity is correlated with a number of soil properties, which influence density of mobile electrical charges. For saline soils these properties are the total salinity and sodium adsorption ratio (SAR). For non-saline soils the relationships have been developed with soil texture, stone content, cation exchange capacity, humus content, Ca+Mg, etc. It is important to understand that soil electrical resistivity or conductivity are complex characteristics of soil and should be used together with other conventional methods of soil analysis. The usual path is to delineate the soil survey area into regions with different resistivity and than sample those areas to determine what properties are causing these differences. In some cases only one or two soil properties primarily influence electrical resistivity, and field electrical methods can be used to evaluate those properties in-situ. See \"<a href=\"http:\/\/landviser.net\/webfm_send\/6\">Soil Electrical Properties<\/a>\" - Ph.D. Thesis by L. Pozdnyakova or papers attached to this page.<\/p><h4><strong>Can your equipment measure electrical resistivity\/conductivity in soil and water samples?<\/strong><\/h4><h4><strong><img fetchpriority=\"high\" decoding=\"async\" class=\"alignleft\" src=\"http:\/\/landviser.net\/webfm_send\/166\" alt=\"four-electrode lab cell\" width=\"319\" height=\"239\"><\/strong><\/h4><p>Yes. The optional 4-electrode cell can be purchased from us or obtained from AGI, Inc., or other companies providing standard geophysical equipment, or can be constructed by user. Using the cell you can measure electrical resistivity or conductivity in soil samples, soil pastes and suspensions, or water, juices, etc.<\/p><h4><strong>How to determine the depth of the measurements?<\/strong><\/h4><p>For the Wenner array, when all the electrodes are equally spaced (AM=MN=NB=a) the depth of the measurements is approximately equal to the distance between electrodes (a), for Schlumberger center-symmetric arrays (MN&lt;<ab) the=\"\" depth=\"\" of=\"\" measuring=\"\" is=\"\" about=\"\" \u00bc=\"\" to=\"\" 1=\"\" 6=\"\" ab=\"\" distance=\"\" (barker,=\"\" 1989).=\"\" depends=\"\" on=\"\" electrical=\"\" resistivity=\"\" soil=\"\" as=\"\" well=\"\" from=\"\" distances=\"\" among=\"\" electrodes.=\"\" thus,=\"\" exact=\"\" can=\"\" be=\"\" obtained=\"\" through=\"\" computer=\"\" interpretation=\"\" vertical=\"\" sounding.=\"\" free=\"\" programs=\"\" for=\"\" 1d=\"\" sounding=\"\" supplied=\"\" with=\"\" equipment.=\"\" full=\"\" 2d=\"\" and=\"\" 3d=\"\" we=\"\" recommend\u00a0<a=\"\" href=\"http:\/\/landviser.biz\/dotcomsandbox\/res2dinv\/\">RES2DINV&nbsp;and&nbsp;<a href=\"http:\/\/landviser.net\/node\/235\">RES3DINV<\/a>&nbsp;software by GeoTOMO Software, very functional DEMO of each is available on this website.<\/ab)><\/p><h4><strong>Need more help?<\/strong><\/h4><p>Post your question as a comment below:<\/p><ul><li>Call Landviser, LLC at <a href=\"tel:16094120555\">609-412-0555<\/a> or send us a&nbsp;<a href=\"mailto:info@landviser.com?subject=question%20from%20FAQ\">email<\/a>.<\/li><li>Register to receive our newsletters and featured discussions and get access to peer-review paper reprints.<\/li><\/ul><\/div><\/div><\/div><\/div><\/div>","protected":false},"excerpt":{"rendered":"<p>How to convert conductivity to&nbsp;resistivity?Electrical resistivity (ER) is reciprocal to conductivity (EC) and results can be easily recalculated using formula EC=1\/ER or vice versa ER=1\/EC. Electrical resistivity is more convenient to use on non-saline soils, where conductivity can be mSm\/m, while resitivity measures in 102-103&nbsp;Ohm m range. 1000 Ohm m equals 1 mSm\/m. You can find&nbsp;more conversions to ppm, TDS, grains of salt in this flyer.Is there any difference between LandMapper ERM-01 and other equipment&hellip; <a href=\"http:\/\/landviser.biz\/dotcomsandbox\/faq\/\" class=\"more-link\">Read more <span class=\"screen-reader-text\">about FAQs<\/span><\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_genesis_hide_title":false,"_genesis_hide_breadcrumbs":false,"_genesis_hide_singular_image":false,"_genesis_hide_footer_widgets":false,"_genesis_custom_body_class":"","_genesis_custom_post_class":"","_genesis_layout":"","footnotes":""},"class_list":["post-1436","page","type-page","status-publish","entry"],"_links":{"self":[{"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/pages\/1436","targetHints":{"allow":["GET"]}}],"collection":[{"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/comments?post=1436"}],"version-history":[{"count":13,"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/pages\/1436\/revisions"}],"predecessor-version":[{"id":6360,"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/pages\/1436\/revisions\/6360"}],"wp:attachment":[{"href":"http:\/\/landviser.biz\/dotcomsandbox\/wp-json\/wp\/v2\/media?parent=1436"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}