Generated by All in One SEO v5.0.1.1, this is an llms.txt file, used by LLMs to index the site. # Geotronics Consulting Inc. Exploration done right. ## Sitemaps - [XML Sitemap](https://geotronics.ca/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [Drone Imaging & Contouring](https://geotronics.ca/drone-imaging-contouring/) - Drone Imaging & Contouring One of the other services Geotronics offers with its Drone Program is: High Resolution Photos Georeferenced Orthomosaics 3D Models High Definition ContouringMultispectral imaging (like the Iron Oxide Index) These services can let you prospect a wide area, generate a high definition map (including for promotional purposes), look at an accurate 3D - [UAV Magnetic Surveying](https://geotronics.ca/uav-magnetic-surveying/) - UAV (Drone) Magnetometer Surveying UAV mag surveying hits the sweet spot between ground-based and airborne magnetometer surveying. You are able to get the mag sensor much closer to the ground over traditional airborne magYou can achieve a much line density over airborne mag (as little as 5-10 meter line spacing)You can cover a much great area - [3D Interpretation](https://geotronics.ca/3d-interpretation/) - 3D InterpretationMagnetic, Gravity & IP SurveysWe can both conduct magnetic, gravity and induced polarisation (IP) surveys to make 3D interpretation particularly suitable and conduct the 3D modelling and visualization ourselves.Much of 3D interpretation is comprised of (relatively) new techniques that has become possible with the hugely increased processing power of personal computers. It allows data to be viewed - [Gravity Surveying](https://geotronics.ca/gravity-surveying/) - GravityGeotronics is also able to conduct gravity surveying. - [Ground Penetrating Radar](https://geotronics.ca/ground-penetrating-radar/) - Ground Penetrating Radar (GPR)Ground penetrating radar, or GPR, is in principle related to reflection seismic methods. A transmitter (Tx) emits a signal into the surface of investigation. The back-scattered signal is detected and registered by a receiver (Rx). In contrast to seismic methods, GPR uses electromagnetic waves instead of acoustic waves. EM-waves will in general - [Induced Polarization and Resistivity](https://geotronics.ca/induced-polarization-resistivity/) - Induced Polarization (IP) and ResistivityInduced polarization (IP) and resistivity surveying works due to the ground’s ability to transmit electricity even in the absence of metallic-type conductors. Through a transmitter, voltage is applied to the ground and electrical current flows. If certain mineral particles that transport current by electrons (mostly sulphides, some oxides and graphite) are - [Magnetic Surveying](https://geotronics.ca/magnetic/) - Magnetic SurveyingMagnetic surveying works by detecting disturbances in the earth’s magnetic field – in mineral exploration these disturbances are usually caused by magnetite and pyrrhotite, the only two commonly occurring magnetic minerals. It works by detecting the presence of these minerals in varying concentrations, as follows:Magnetite and pyrrhotite may occur with economic mineralization on a - [Seismic Reflection](https://geotronics.ca/seismic-reflection/) - Seismic Reflection There are two types of seismic surveys we have run for decades – refraction and reflection. Both types of seismic surveys work by measuring the travel time of energy from a surficial shot (usually an explosive in the case of refraction, and a hammer hitting a plate in reflection) to an array of - [Seismic Refraction](https://geotronics.ca/seismic-refraction/) - Seismic Refraction The seismic refraction method of geophysical surveying is one which measures the velocities of shock waves traveling through materials. Shock waves are generated by an energy source such as hammer blows on a steel plate for very shallow depths or explosives for greater depths. Through this method, basically two properties are determined,- (1) - [Self-Potential Surveying](https://geotronics.ca/self-potential/) - Self-Potential Surveying Self-potential is a very old geophysical technique designed to measure the electrical potential differences between pairs of electrodes that contact the surface of the earth. Anomalous surface potentials, measured in millivolts against a base station, are typically detected near pyrite, chalcopyrite, pyrrhotite, sphalerite, and graphite. In self-potential surveys we conduct the data is - [Very Low Frequency Electromagnetic](https://geotronics.ca/very-low-frequency/) - Very Low Frequency Electromagnetic (VLF-EM) VLF-EM surveying is carried out with a combination magnetometer and VLF-EM receiver. This instrument is designed to measure the electromagnetic component of the very low frequency field (VLF-EM) which is transmitted from various stations within North America. In all electromagnetic prospecting, a transmitter induces an alternating magnetic field (called the - [Rock Geochemistry](https://geotronics.ca/rock-geochemistry/) - Rock Geochemistry Rock geochemistry is the process of taking rock samples from interesting sites and analyzing those samples for their mineralization content. This type of surveying takes place during the reconnaissance phase. - [MMI Soil Sampling](https://geotronics.ca/mmi-soil-sampling/) - Mobile Metal Ion (MMI) Soil Sampling MMI soil sampling is an advance geochemical exploration technique proven in finding mineral deposits, particularly at depth where it has a distinct advantage over standard soil sampling. Its advantages include: few false anomalies, sharply defined anomalies, repeatability, defined metal zones and associations, detection of deeply buried mineralization, low noise, - [Standard Soil Sampling](https://geotronics.ca/soil-sampling/) - Standard Soil Sampling Like MMI, standard soil sampling is surveying for anomalous metal values in surficial deposits (such as glacial till, colluvium, fluvial deposits, etc.). The main differences between MMI and standard soil samplingare the sampling procedure and the type and breadth of analysis performed in the lab. - [Tree Bark Sampling](https://geotronics.ca/tree-bark-sampling/) - Tree Bark Sampling In rare cases where conditions on the ground discourage other types of geochemical surveying it may be necessary to sample tree bark. Tree bark in appropriate zones is harvested and tested for mineralization much like soil samples. Due to the biological nature of the samples, careful interpretation is required and only certain - [Report Writing](https://geotronics.ca/report-writing/) - Report Writing Geotronics provides high quality reports backed both by our extensive experience in mineral exploration and a strong writing ability. A common problem we hear from clients is issues they’ve had with unintelligible and poorly written reports that are difficult to decipher. We pride ourselves on the professionalism in our reporting, and this is - [Downhole IP](https://geotronics.ca/downhole-ip/) - Downhole Induced Polarisation (IP) We’ll have a write up and description of Downhole Induced Polarisation (IP) soon. - [Horizontal Loop Electromagnetics (EM)](https://geotronics.ca/horizontal-loop-em/) - Horizontal Loop Electromagnetics (EM) We’ll have a write up and description of Horizontal Loop EM soon. ## Pages - [Home](https://geotronics.ca/) - Geotronics Consulting Inc. Exploration Done Right Check out our UAV Mag Program UAV mag surveying hits the sweet spot between ground-based and airborne magnetometer surveying. You are able to get the mag sensor much closer to the ground over traditional airborne magYou can achieve a much line density over airborne mag (as little as 5-10 meter line - [Contact Us](https://geotronics.ca/contact-us/) - Contact Us 778-908-4021 geo@geotronics.ca 132 Saddlehorn Dr.Kaleden, BCV0H 1K0 - [Programs](https://geotronics.ca/programs/) - ProgramsEvery survey type is a response to a specific problem. You might be trying to find mineral gold or placer gold, or attempting to map bedrock, or have a property with confusing geology. Often our clients want to identify potential drill locations. So we offer the following surveys to attempt to solve these varied problems.We also - [Discoveries](https://geotronics.ca/discoveries/) - Some of Our Discoveries Reiseter Property, Smithers area, BC – A combination of IP, MMI, and magnetic anomalies indicate a large porphyry copper deposit. Drill holes have shown the IP and MMI anomalies to be caused by sulphide mineralization, namely chalcopyrite, molybdenite, sphalerite, galena, and arsenopyrite.Viewland Property, Likely area, BC – a large copper MMI - [Privacy Policy](https://geotronics.ca/privacy-policy/) - Privacy Policy Last updated: March 11, 2021 This Privacy Policy describes Our policies and procedures on the collection, use and disclosure of Your information when You use the Service and tells You about Your privacy rights and how the law protects You. We use Your Personal data to provide and improve the Service. By using - [About Us](https://geotronics.ca/about/) - About GeotronicsWho are we?Our ethos at Geotronics is 3 things:We are enjoyable to deal with – We like people and we make the process easy.We are trustworthy – We are trusted advisors to our clients. Only trust makes this possible.We deliver top quality work – We have experience, knowledge, and a hunger to provide the best work with the most cutting edge techniques.Backstory Founded in - [Services](https://geotronics.ca/services/) - Services Geochemical Surveys Tree Bark Sampling Standard Soil Sampling MMI Soil Sampling Rock Geochemistry Geophysical Surveys Drone Imaging & Contouring UAV Magnetic Surveying Horizontal Loop Electromagnetics (EM) Downhole IP Very Low Frequency Electromagnetic Self-Potential Surveying Seismic Refraction Seismic Reflection Magnetic Surveying Induced Polarization and Resistivity Ground Penetrating Radar Gravity Surveying Interpretation Report Writing 3D Interpretation ## Categories - [Services](https://geotronics.ca/category/services/) - [Geochemical](https://geotronics.ca/category/services/geochemical/) - [Geophysical](https://geotronics.ca/category/services/geophysical/) - [Interpretation](https://geotronics.ca/category/services/interpretation/) ## Tags - [3D](https://geotronics.ca/tag/3d/) - [3D interpretations](https://geotronics.ca/tag/3d-interpretations/) - [3rd Party Data](https://geotronics.ca/tag/3rd-party-data/) - [bedrock](https://geotronics.ca/tag/bedrock/) - [conductors](https://geotronics.ca/tag/conductors/) - [downhole](https://geotronics.ca/tag/downhole/) - [electromagnetic](https://geotronics.ca/tag/electromagnetic/) - [electromagnetics](https://geotronics.ca/tag/electromagnetics/) - [em](https://geotronics.ca/tag/em/) - [geochemistry](https://geotronics.ca/tag/geochemistry/) - [geophysics](https://geotronics.ca/tag/geophysics/) - [government](https://geotronics.ca/tag/government/) - [gpr](https://geotronics.ca/tag/gpr/) - [gravity](https://geotronics.ca/tag/gravity/) - [ground penetrating radar](https://geotronics.ca/tag/ground-penetrating-radar/) - [horizontal loop](https://geotronics.ca/tag/horizontal-loop/) - [horizontal loop electromagnetics](https://geotronics.ca/tag/horizontal-loop-electromagnetics/) - [I.P.](https://geotronics.ca/tag/i-p/) - [induced polarisation](https://geotronics.ca/tag/induced-polarisation/) - [induced polarization](https://geotronics.ca/tag/induced-polarization/) - [interpretation](https://geotronics.ca/tag/interpretation/) - [Inversion](https://geotronics.ca/tag/inversion/) - [IP](https://geotronics.ca/tag/ip/) - [magnetic](https://geotronics.ca/tag/magnetic/) - [magnetics](https://geotronics.ca/tag/magnetics/) - [magnetite](https://geotronics.ca/tag/magnetite/) - [mineralization](https://geotronics.ca/tag/mineralization/) - [mmi](https://geotronics.ca/tag/mmi/) - [mobile metal ions](https://geotronics.ca/tag/mobile-metal-ions/) - [modelling](https://geotronics.ca/tag/modelling/) - [out-phase](https://geotronics.ca/tag/out-phase/) - [pyrrhotite](https://geotronics.ca/tag/pyrrhotite/) - [refraction](https://geotronics.ca/tag/refraction/) - [report](https://geotronics.ca/tag/report/) - [reports](https://geotronics.ca/tag/reports/) - [resistivity](https://geotronics.ca/tag/resistivity/) - [rock geochemistry](https://geotronics.ca/tag/rock-geochemistry/) - [seismic](https://geotronics.ca/tag/seismic/) - [seismic reflection](https://geotronics.ca/tag/seismic-reflection/) - [self-potential](https://geotronics.ca/tag/self-potential/) - [soil sampling](https://geotronics.ca/tag/soil-sampling/) - [SP](https://geotronics.ca/tag/sp/) - [standard soil sampling](https://geotronics.ca/tag/standard-soil-sampling/) - [subsurface](https://geotronics.ca/tag/subsurface/) - [surveying](https://geotronics.ca/tag/surveying/) - [travel time](https://geotronics.ca/tag/travel-time/) - [tree bark sampling](https://geotronics.ca/tag/tree-bark-sampling/) - [very low frequency](https://geotronics.ca/tag/very-low-frequency/) - [very low frequency electromagnetic](https://geotronics.ca/tag/very-low-frequency-electromagnetic/) - [visualization](https://geotronics.ca/tag/visualization/) - [VLF](https://geotronics.ca/tag/vlf/) - [VLF-EM](https://geotronics.ca/tag/vlf-em/) - [writing](https://geotronics.ca/tag/writing/)