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Spanish Mountain Gold Reports 1.18 g/t Gold Over 35.80 Metres and 1.28 g/t Gold Over 20.25 Metres in the First Two Drill Holes of the 2025 Fall Drill Program

Drill Results

Spanish Mountain Gold Reports 1.18 g/t Gold Over 35.80 Metres and 1.28 g/t

Gold Over 20.25 Metres in the First Two Drill Holes of the 2025 Fall Drill

Program

VANCOUVER, British Columbia--(BUSINESS WIRE)--November 3, 2025--Spanish Mountain

Gold Ltd. (the "Company" or "Spanish Mountain Gold") (TSX-V: SPA) (FSE: S3Y)

(OTCQB: SPAUF) is pleased to provide the first set of assay results from the initial two holes

drilled under its 2025 fall diamond drill program (“2025 Fall Drill Program”) for the Spanish

Mountain Gold (“SMG”) project, which is located in the Cariboo Gold Corridor, British

Columbia, Canada.

Peter Mah, Spanish Mountain Gold’s President & CEO commented, “The first set of infill drill

results validates the continuity of near surface, higher-grade gold mineralization within the pit

confined resource and confirmed the potential for adding more higher-grade gold mineralization

within the pit that could significantly increase the robustness of future gold production and the

project value. Our initial two drill holes in the 2025 Fall Drill Program show large intervals

with gold grades approaching 1 g/t, and in parts exceeding this threshold, that are well above

the Mineral Resource grades in a newly interpreted target, the Orca Fault area. The drilling

connects gold and sulphide mineralized structures over several closely spaced holes. This means

that the current results reinforce a high likelihood for closer spaced infill drilling to add higher

grade gold mineral potential within the early years of the proposed pit. The Spanish Mountain

Gold team, while working together with our contracting, community and First Nations partners,

continues to deliver significant upside to the project demonstrating our relentless commitment to

unlock benefits in the region and value for shareholders as the Company advances towards a

build decision in 2027.”

A total of 9,000 to 10,000 metres of drilling is planned under the 2025 Fall Drill Program.

Assays and geochemistry are pending on seven (7) additional drill holes completed on the newly

defined Orca Fault area.

Highlights:

 25-DH-1292 intersected 112.00 metres of 0.77 g/t gold from 84.00 to 196.00 metres, –

including 35.80 metres of 1.18 g/t gold with a subset of 10.20 metres of 1.80 g/t gold

 25-DH-1293 intersected 102.00 metres of 0.64 g/t gold from 94.00 to 196.00 metres, –

including 60.00 metres of 0.77 g/t gold, 20.25 metres of 1.28 g/t gold with a subset of

2.36 metres of 2.15 g/t gold

Key Findings:

 Current drilling has intersected significant higher-grade mineralization in areas

previously modeled as lower-grade and/or waste in the Mineral Resource Estimate block

model (see July 3, 2025 news release)

 Structural continuity has been confirmed beyond 25 metres through use of oriented drill

core and implementation of split tube that also has significantly increased core recovery,

allowing better interpretations

 Tighter spaced drilling has identified a network of northeast-trending structures that

appear to represent a major structural framework controlling gold and sulphide

distribution

Main Deposit – Newly Defined Orca Fault area

Drill holes 25-DH-1292 and 25-DH-1293 were designed to be infill drill holes with collar

spacings approximately 25 and 35 metres northwest of the 2025 Winter Drill Program drill holes,

25-DH-1281 and 25-DH-1282, respectively (see Figure 1). A key rationale for the 2025 Fall

Drill Program was following up 25-DH-1281 from this past winter, which intersected 123.00

metres grading 1.08 g/t gold from 102 metres, including 47.28 metres grading 2.29 g/t gold that

also contained 3.00 metres grading 4.65 g/t gold and 2.00 metres grading 10.41 g/t gold (see

April 21, 2025 news release).

Similarly, drill hole 25-DH-1282 intersected 211.90 metres grading 0.36 g/t gold, including

100.30 metres grading 0.52 g/t gold, containing 16.00 metres grading 1.43 g/t gold and 4.00

metres grading 2.76 g/t gold (see April 21, 2025 news release). It should be noted that these drill

holes from this past winter are not included the latest Mineral Resource Estimate (“MRE”) (see

July 3, 2025 news release), meaning their impact on gold distribution has not been integrated

into the deposit and the proposed mine plan mill feed in the recent PEA (see July 3, 2025 news

release).

During planning for the 2025 Fall Drill Program, an assessment of the geological interpretation

and high-grade controls was conducted that concluded there is a need for tighter-spaced diamond

drill information to potentially provide links between the higher-grade gold mineralization in a

three-dimensional model (see Figure 1). Core logging and the assay results of 25-DH-1292

(Table 1) and 25-DH-1293 (Table 2) have significantly enhanced the understanding of local

geology and structure of the Main deposit and validated the rationale for the tighter drill spacing.

The results have also allowed for the definition of structural features such as the newly described

Orca Fault that along with previous stratigraphic interpretation, appear to control the location of

the higher-grade gold mineralization in this area of the Main deposit. A preferred drilling

direction of azimuth 120⁰ is a key element to unlocking further higher-grade mineral potential in

the known Main deposit footprint. Another key element the Company hopes will come from the

2025 Fall Drill Program along the preferred orientation is delineating areas previously modeled

as either low-grade or waste in the last MRE update and converting them into mineralization

above the MRE cutoff grade of 0.15 g/t gold. Investors are cautioned that additional drilling is

required to unlock the mineral potential in these areas where there are gaps in historical drill

information, and there is no guarantee these areas will become part of the MRE (see July 3, 2025

news release).

Table 1: Assay Results for 25-DH-1292

Drill hole From (m) To (m) Width (m) Gold (g/t) Apparent True Thickness

25-DH-1292 27.84 38.80 10.96 0.17 Note 3)

47.00 59.20 12.20 0.27 Note 3)

including 47.00 51.50 4.50 0.46 Note 3)

including 60.50 63.50 3.00 0.17 Note 3)

84.00 196.00 112.00 0.77 Note 3)

including 84.00 119.80 35.80 1.18 Note 3)

including 84.00 101.40 17.40 1.51 Note 3)

including 91.20 101.40 10.20 1.80 Note 3)

including 101.00 101.40 0.40 6.60 Note 3)

including 110.00 118.00 8.00 1.59 Note 3)

including 110.00 113.30 3.30 2.66 Note 3)

including 130.00 196.00 66.00 0.66 Note 3)

including 130.00 137.00 7.00 0.72 Note 3)

including 143.50 145.00 1.50 6.54 Note 3)

including 153.00 159.00 6.00 0.98 Note 3)

including 168.00 172.37 4.37 1.80 Note 3)

including 181.52 182.02 0.50 1.27 Note 3)

including 191.35 192.00 0.65 2.08 Note 3)

Table 2: Assay Results for 25-DH-1293

Drill hole From (m) To (m) Width (m) Gold (g/t) Apparent True Thickness

25-DH-1293 31.45 35.00 3.55 0.21 Note 3)

52.00 58.67 6.67 0.19 Note 3)

94.00 196.00 102.00 0.64 Note 3)

including 94.00 154.00 60.00 0.77 Note 3)

including 112.00 132.25 20.25 1.28 Note 3)

including 129.00 132.25 3.25 1.80 Note 3)

including 150.00 152.36 2.36 2.15 Note 3)

including 162.00 191.00 29.00 0.44 Note 3)

including 186.00 187.08 1.08 6.24 Note 3)

including 186.58 187.08 0.50 10.75 Note 3)

Notes for Table 1 and 2:

1) Reported intersections are calculated using a 0.15 g/t Au cut -off grade.

2) The complete assay table is available on the Company’s website

3) True thickness of mineralization is unknown

When integrating the assay results from 25-DH-1292 and 25-DH-1293, it is clear there is

excellent continuity between the higher-grade intercepts from 25-DH-1281 and 25-DH-1282 (see

April 21, 2025 news release). The mineralization in these drill holes occurs in faults and quartz-

dominated veins that appear to extend for more than 25 meters beyond each drill hole. Two

dominant sets of veins were identified, high-angle and low-angle. The lower-angle veins (~45

degrees) occur in proximity to the Orca Fault. These veins display gold with base metal

associations that include galena, chalcopyrite, and sphalerite, as shown in Figure 2.

It should be noted that the drilling results also support the delineation of faults and other

structural features that are key factors controlling mineralization location in this part of the Main

deposit. The use of HQ3-sized drilling, coupled with the implementation of split tube core

barrels, has dramatically increased the overall core recovery, to in some cases, near 100%,

especially in faulted areas, but it is also providing better quality data for geomechanical (rock

mechanics) and structural oriented core measurements. The higher quality and recovery of the

drill core have enabled delineation of additional new faults striking NE and dipping at

approximately 45-degrees to the west. These new faults are believed to be some of the missing

controlling features for high-grade mineralization in the past interpretations for this area of the

deposit. Though it is very preliminary to draw conclusions, these structures might be a splay

associated with the previously recognized Faults 1 and 2.

Some of these structures have surface expressions that make them suitable for exploration at a

broader scale. As well, the current drilling has delineated a cataclastic to mylonite structure in

the upper part of the sequence that is associated with mineralization (Figure 1). Mineralization

occurs as deformed quartz and blebby pyrite that follow deformation planes. This structure is

possibly an extension of the cataclastic structure recognized in the Slipper Zone during the 2025

Winter Drill Program (refer to April 21, 2025).

Figure 3 illustrates the drill locations for the four drill hole results outlined in this news release

and the holes currently in the assay lab, or in progress. Drill collar location coordinates are

summarized for the 2025 Fall Drill Program in Table 3 at the end of this news release.

Other – Engagement of 6ix

The Company recently engaged 6ix, an independent services provider, for a duration 6-months at

a monthly fee of $5,000 per month to facilitate the distribution of company press releases, video

presentations, interviews, and public information updates.

Abbreviations: metres = m, grams per tonne = g/t, gold = Au

Drill Core Processing, Data Verification and Quality Assurance – Quality Control Program

(QAQC)

Once received from the drill and processed, all drill core samples were sawn in half, labeled, and

bagged. The remaining half of the drill core was securely stored on-site. Numbered security tags

were applied to sample shipments to ensure chain of custody compliance. The Company inserts

quality control (QC) samples at regular intervals, including blanks and reference materials, for

all sample shipments to monitor laboratory performance. Standards and blanks account for a

minimum of 20% of the samples in addition to the laboratory’s internal quality assurance

programs. The QAQC program was overseen by the Company’s Qualified Person, Julian Manco,

P.Geo, Director of Exploration (as described below).

The data verification process involved a multi-step approach to ensure accuracy and integrity.

This included a detailed quality control (QC) analysis of the data, which was performed using

both internal and external platforms, such as the MxDeposit™ software. These QC checks

involved the analysis of certified reference materials (CRMs), blanks, and duplicates to confirm

the reliability of the assay results. In addition, a field inspection of the specific drill intervals

mentioned in this release has been conducted to directly observe the geological features and

verified the nature of the results presented.

Drill core samples were submitted to MSALABS’ analytical facility in Prince George, British

Columbia, for sample preparation and PhotonAssayTM analysis. The MSALABS facilities are

accredited to the International Standards ISO/IEC 17025 and ISO 9001 standard for gold and

multi-element assays, with all analytical methods incorporating quality control materials at

defined frequencies and established data acceptance criteria. MSALABS Inc. is independent of

the Company.

PhotonAssayTM

The PhotonAssayTM method utilizes gamma ray analysis for gold detection using the Chrysos

PhotonAssayTM instrument (PA1408X). This non-destructive, fully automated technique offers

high accuracy for analyzing ores and pulps. Sample preparation begins with drying and crushing

up to 1 kg of material to achieve at least 70% passing through a 2-millimetre (mm) sieve. The

sample is then riffle split to obtain a suitable aliquot for 2 testing cycles (MSALABS Method

CPA-Au1).

The PhotonAssayTM instrument bombards 400- to 600-gram samples contained in sealed

containers with gamma rays. These containers remain sealed throughout the process, preserving

the sample for potential further testing. The analysis is performed robotically, with results that

integrate into existing laboratory management systems. Each sample is accompanied by a

reference disc traceable to a Certified Reference Material (CRM). Both the sample and reference

disc undergo gamma ray exposure, with signals detected and analyzed to ensure accurate and

reliable results. The method offers a gold detection range from 0.015 parts per million (ppm -

lower limit) to 10,000 ppm (upper limit). Quality control includes the use of reference materials

and blanks, with all results reviewed by a competent person before reporting.

Spanish Mountain Gold implemented two QAQC methodologies to validate the accuracy of

PhotonAssayTM results, both demonstrating good comparability: 1) comparative analysis of

diverse mineralization styles using Total Au screen metallic methods with both FAS-415

(gravimetric finish) and FAS-211 (AAS finish), and 2) comprehensive testing of both sample

aliquots and rejects using FAS-211 (AAS finish). QAQC Testing typically can include the

following spot checks: 1) Pulverizing tests to evaluate variability in sample preparation, 2)

Cross-analysis at external laboratories using screen metallic method, and 3) Four-cycle radiation

testing to identify and calibrate potential variability in gold results with variable radiation

intensity.

To effectively manage the nugget effect on high-grade gold samples MSALABS tested samples

to "extinction" (CPA-Au1E method). This approach divides samples into multiple splits,

analyzes each separately using PhotonAssayTM, and then calculates a weighted average of the

results. By testing various portions of the sample independently and combining their values

proportionally, this method provides significantly more representative gold values than

traditional single-split analysis for samples with a large nugget effect.

Multi-Elemental Analysis

For the 2025 drilling campaign Spanish Mountain Gold used IMS-230 method to provide multi-

element determination using a four-acid digestion followed by ICP-OES and ICP-MS analysis.

Key Process Steps:

Sample Preparation: Samples are dried and ground to a specific criterion (85% passing 75

microns (μm) for rocks and drill core; 180μm for soils and sediments). A homogeneous 10-gram

sample is required. Digestion: Samples undergo sequential digestion with nitric, perchloric,

hydrofluoric, and hydrochloric acids, followed by dilution with deionized water.

Analysis: The solution is analyzed via ICP-OES and ICP-MS for multi-element quantification.

Quality Control: The process includes reference materials, blanks, and duplicates, with

corrections for spectral interferences and thorough review before final reporting.

Qualified Person

Julian Manco, M.Sc., P.Geo., Director of Exploration with Spanish Mountain Gold, is the

Qualified Person as defined under National Instrument 43-101 who has reviewed the technical

information in this news release and has approved the content for dissemination.

About Spanish Mountain Gold Ltd.

Spanish Mountain Gold Ltd. is focused on advancing its 100%-owned Spanish Mountain Gold

Project (Project) towards construction of the next gold mine in the Cariboo Gold Corridor,

British Columbia. On August 18, 2025, the Company filed an NI 43-101 Technical Report on

SEDAR+ that sets out the Project’s de-risked and optimized Preliminary Economic Assessment

(PEA), with an updated Mineral Resource Estimate (MRE). We will continue to advance the

Project to position the Company to make a construction decision in or before 2027. We are

striving to be a leader in community and Indigenous relations by leveraging technology and

innovation to build the 'greenest' gold mine in Canada. The Relentless Pursuit for Better Gold

means seeking new ways to achieve optimal financial outcomes that are safer, minimize

environmental impact and create meaningful sustainability for communities. Details on the

Company are available on www.sedarplus.ca and on the Company's website:

www.spanishmountaingold.com.

On Behalf of the Board,

“Peter Mah”

President, Chief Executive Officer and Director

Spanish Mountain Gold Ltd.

Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is

defined in the policies of the TSX Venture Exchange) accepts responsibility for the

adequacy or accuracy of this release.

FORWARD-LOOKING INFORMATION:

Certain of the statements and information in this press release constitute "forward-looking

information". Any statements or information that express or involve discussions with respect to

predictions, expectations, beliefs, plans, projections, objectives, assumptions or future events or

performance (often, but not always, using words or phrases such as "expects", "anticipates",

"believes", "plans", "estimates", "intends", "targets", "goals", "forecasts", "objectives",

"potential" or variations thereof or stating that certain actions, events or results "may", "could",

"would", "might" or "will" be taken, occur or be achieved, or the negative of any of these terms

and similar expressions) are not statements of historical fact and may be considered forward-

looking information. The Company's forward-looking information is based on the assumptions,

beliefs, expectations and opinions of management as of the date of this press release and include

but are not limited to information with respect to, the potential for adding more higher-grade

gold mineralization within the pit that could significantly increase the robustness of future gold

production and the project value; and the timing and size (metres) of the Fall Drill Program,

and the results thereof. Other than as required by applicable securities laws, the Company does

not assume any obligation to update forward-looking information if circumstances or

management's assumptions, beliefs, expectations or opinions should change, or changes in any

other events affecting such statements or information. For the reasons set forth above, investors

should not place undue reliance on forward-looking information.

Table 3: Drill Collar Information for Drill Holes

Hole ID EAST NORTH ELEV AZIMUTH DIP DEPTH COMMENT

25-DH-1305 603657 5829226 919 120 -60 N/A In Progress

25-DH-1304 604536 5827986 1067 120 -60 N/A In Progress

25-DH-1303 603960 5828754 943 100 -55 156

Successfully completed per

design

25-DH-1302 604194 5828180 1066 120 -63 282

Successfully completed per

design

25-DH-1301 603708 5829029 929 150 -55 188

Successfully completed per

design

25-DH-1300 604388 5828063 1085 120 -60 274

Successfully completed per

design

25-DH-1299 604369 5828043 1093 120 -60 336

Successfully completed per

design

25-DH-1298 604402 5828088 1074 120 -59 334

Successfully completed per

design

25-DH-1297 604354 5828069 1084 120 -59 342

Successfully completed per

design

25-DH-1296 604484 5828054 1061 120 -50 180

Successfully completed per

design

25-DH-1295 604484 5828054 1061 120 -60 33

Ended early due to drill trace

spacing

25-DH-1294 604345 5828120 1075 120 -58 351

Successfully completed per

design

25-DH-1293 604284 5828149 1076 120 -60 453

Successfully completed per

design

25-DH-1292 604223 5828189 1068 120 -62 270

Successfully completed per

design

Contacts

For more information, contact:

Peter Mah

(604) 601-3651

[email protected]