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Red Metal's Carrizal IP Survey Defines a Chargeability Trend Across All Six Consecutive Lines, Open at Depth

(Positive)
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Red Metal Resources (CSE: RMES, OTC: RMESF) reported preliminary results from a 3D induced polarization survey over the southern block of its Carrizal copper-gold-cobalt property near Vallenar, Chile. The survey defined a continuous chargeability trend across six 2 km IP lines (L0–L1000), spaced 200 m apart, extending roughly 1 km and remaining open along strike and at depth.

A secondary chargeability trend was identified on the eastern portions of Lines L800 and L1000 at depth, coincident with a mapped and sampled vein. Historic drilling coincides with a chargeability high and reduced resistivity zone, considered favourable for sulphide mineralization. Drilling to date has not tested the highest IP anomalies. Red Metal plans to integrate full survey results into a 3D model to refine and prioritize drill targets.

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Positive

  • Continuous IP chargeability trend traced across six lines over ~1 km, open along strike and at depth
  • Secondary chargeability trend at depth on eastern L800 and L1000 coincides with a mapped and sampled vein
  • Chargeability high with reduced resistivity coincides spatially with historic drilling, a favourable sulphide indicator per survey design
  • True 3D IP dataset acquired using overlapping blocks and a 3D distributed array, enabling detailed subsurface modelling
  • Company planning drilling to test highest-priority IP targets after integrating geophysics with historical drilling and surface data

Negative

  • Highest IP anomalies on the Carrizal property remain untested by drilling completed so far
  • Northern block survey results are still pending before full 3D integration and final drill targeting

News Market Reaction – RMESF

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Vancouver, British Columbia--(Newsfile Corp. - July 16, 2026) - RED METAL RESOURCES LTD. (CSE: RMES) (OTC PINK: RMESF) (FSE: I660) ("Red Metal" or the "Company") is pleased to report preliminary results from the three-dimensional ("3D") induced polarization ("IP") survey announced on April 28th. The initial results over the southern block of its Carrizal Copper-Gold-Cobalt Property ("Carrizal" or the "Property"), near Vallenar in Chile's Atacama Region, returned clear chargeability anomalies across all six lines. Chargeability response aligns with two structures that have been sampled at surface and one that has been sampled and drill tested (see news release dated April 28, 2026).

Highlights

  • Chargeability trend defined across all six consecutive IP lines (Lines L0, L200, L400, L600, L800 and L1000), spaced 200 metres apart, traced across the southern block over approximately one kilometre and open along strike and at depth.

  • A secondary chargeability trend identified in the eastern portion of Lines L800 and L1000 at depth coinciding with a mapped and sampled vein.

  • Drilling completed so far on the Property has not tested the highest IP anomalies outlined in this survey.

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Figure 1. Location of the 3D IP survey lines (L0-L1000) over the Carrizal southern block. 

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IP Survey

The IP survey was completed by Geophysical Studies Chile as a true three-dimensional survey acquired through overlapping data blocks. The southern block comprises six survey lines (L0, L200, L400, L600, L800 and L1000), each approximately 2,000 metres in length and spaced 200 metres apart. The IP survey was designed to target the primary sulphide zone from 100m depth to 500m depth.

At the southern block, a chargeability high that coincides with historic drilling is spatially coincident with a zone of reduced resistivity. Coincident elevated chargeability and reduced resistivity is considered a favourable indicator of disseminated to semi-massive sulphide mineralization. The trend is interpreted to be continuous across all six lines, is open at depth on the northern lines of the block. A secondary chargeability trend is evident in the eastern half of the block most significantly in Lines L800 and L1000 at depth (Figures 2 through 7).

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Figure 2 - Chargeability and Resistivity Inversion; Line L0

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Figure 3 - Chargeability and Resistivity Inversion; Line L200

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Figure 4 - Chargeability and Resistivity Inversion; Line L400

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Figure 5 - Chargeability and Resistivity Inversion; Line L600

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Figure 6 - Chargeability and Resistivity Inversion; Line L800

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Figure 7 - Chargeability and Resistivity Inversion; Line L1000

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The Carrizal Farellon IP program consisted of a pole-dipole IP resistivity study in the time domain, using a 3D distributed array with offset (GS'DAS-DCIP3D) based on a MultiRx system manufactured by GDD. The grid consisted of six 2.0 km lines spaced 200 m apart, with an in-line Rx spacing of 125 m, while the infinite current electrode was located approximately 3.0 km from the area of ​​interest. The current was injected by a GDD-Tx4 transmitter (5000 W / 2400 V / 20 A) through transmitter poles located between each pair of receiver electrodes. During injection along a primary line, adjacent lines simultaneously recorded the signal on 32 channels using two dual 16-channel GDD receivers. By leveraging multiple overlapping acquisition blocks, this configuration enabled the acquisition of true 3D data with an online n level of up to 20.

Red Metal Resources President and CEO, Caitlin Jeffs, P.Geo., stated, "These preliminary IP results are very encouraging. We have a strong chargeability anomaly that is coincident with mapped and sampled structures. This gives us compelling, drill-ready targets as we integrate geophysics with our historical drilling and surface geology."

Next Steps

  • Once the results from the northern block of the survey grid are available, integrate all IP results into a 3D model with historical drilling, mapping and geochemistry to refine and prioritize drill targets; and

  • Plan drilling to test the highest-priority targets aligning IP, structural interpretation, surface mapping and historic drill results.

Cautionary Statement

IP results disclosed in this news release are preliminary and are based on geophysical inversion modelling. Geophysical anomalies, including coincident chargeability and resistivity features, are interpretive and do not, on their own, represent mineralization. Drilling is required to test whether the interpreted anomalies are associated with mineralization.

Qualified Person

The technical and scientific information contained in this news release has been reviewed and approved by Caitlin Jeffs, P.Geo., President and CEO of Red Metal Resources, who is a Qualified Person ("QP") as defined in National Instrument 43-101, Standards of Disclosure for Mineral Projects. The three-dimensional induced polarization survey and the associated data processing and preliminary inversion modelling were completed by Geophysical Studies Chile, an independent geophysical contractor engaged by the Company. The QP has reviewed the geophysical data and preliminary inversion products provided by Geophysical Studies Chile and considers them reliable for the purposes disclosed herein. The results remain preliminary and are subject to final data processing, quality control and inversion.

About Red Metal Resources Ltd.

Red Metal Resources is a mineral exploration company focused on growth through acquiring, exploring and developing clean energy and strategic mineral projects. The Company's current portfolio includes the Company's Chilean projects, located in the prolific Candelaria Iron Oxide Copper-Gold (IOCG) belt of Chile's coastal Cordillera, as well as claims in Quebec and Ontario, Canada.

Red Metal is quoted on the Canadian Securities Exchange under the symbol RMES, on the OTC Link alternative trading system on the OTC Pink marketplace under the symbol RMESF, and on the Frankfurt Stock Exchange under the symbol I660.

For more information, please visit www.redmetalresources.com.

Contact:
Red Metal Resources Ltd. 
Caitlin Jeffs
President & CEO
1-866-907-5403
invest@redmetalresources.com
www.redmetalresources.com

Forward-Looking Statements - All statements in this press release, other than statements of historical fact, are "forward-looking information" within the meaning of applicable securities laws. Red Metal provides forward-looking statements for the purpose of conveying information about current expectations and plans relating to the future and readers are cautioned that such statements may not be appropriate for other purposes. By its nature, this information is subject to inherent risks and uncertainties that may be general or specific, and which give rise to the possibility that expectations, forecasts, predictions, projections or conclusions will not prove to be accurate, that assumptions may not be correct and that objectives, strategic goals and priorities will not be achieved. These risks and uncertainties include but are not limited to the ability to raise adequate financing, receipt of required approvals, as well as those risks and uncertainties identified and reported in Red Metal's public filings under its SEDAR+ profile at www.sedarplus.ca. Although Red Metal has attempted to identify important factors that could cause actual actions, events or results to differ materially from those described in forward-looking information, there may be other factors that cause actions, events or results not to be as anticipated, estimated or intended. There can be no assurance that such information will prove to be accurate as actual results and future events could differ materially from those anticipated in such statements. Red Metal disclaims any intention or obligation to update or revise any forward-looking information, whether as a result of new information, future events or otherwise unless required by law.

Neither the Canadian Securities Exchange nor the Market Regulator (as that term is defined in the policies of the Canadian Securities Exchange) accepts responsibility for the adequacy or accuracy of this release.

To view the source version of this press release, please visit https://www.newsfilecorp.com/release/305403

FAQ

What did Red Metal Resources (RMESF) announce about the Carrizal IP survey on July 16, 2026?

Red Metal Resources reported preliminary 3D IP survey results defining a continuous chargeability trend across six lines on the Carrizal southern block. According to Red Metal, these anomalies align with mapped, sampled and historically drilled structures, creating new drill-targeting information for copper-gold-cobalt exploration.

How extensive is the chargeability trend defined at Red Metal’s Carrizal copper-gold-cobalt property (RMESF)?

The main chargeability trend extends across all six 2 km IP lines, spaced 200 metres apart, over roughly one kilometre. According to Red Metal, this trend remains open along strike and at depth on the northern lines of the southern survey block.

What is the significance of the secondary chargeability trend in the Carrizal IP survey for RMESF shareholders?

The survey outlined a secondary chargeability trend in the eastern parts of Lines L800 and L1000 at depth. According to Red Metal, this trend coincides with a mapped and sampled vein, providing an additional geophysical feature to guide future drilling on the property.

Have the highest IP anomalies at Red Metal’s Carrizal project (RMESF) been drill tested yet?

No, drilling completed so far on the Carrizal property has not tested the highest IP anomalies. According to Red Metal, upcoming work will focus on integrating survey data to refine and prioritize drill targets before new drilling is planned.

What are the next exploration steps for Red Metal Resources (RMESF) following the Carrizal IP results?

Red Metal plans to integrate northern and southern IP results into a 3D model with historical drilling, mapping and geochemistry. According to Red Metal, this will be used to refine and prioritize drill targets, then plan drilling on the highest-priority anomalies.

What geophysical method did Red Metal use in the Carrizal IP program and why is it important for RMESF?

Red Metal used a pole-dipole time-domain IP resistivity study with a true 3D distributed array configuration. According to Red Metal, this approach generated overlapping 3D data blocks, enabling detailed imaging of chargeability and resistivity from about 100 to 500 metres depth.