Case studies · By industry

Three strategic sectors, three ways of looking beneath the surface.

Case studies · Mining

More than 30 projects, more than 10 years of experience. Findings without drilling.

From the Arizona desert to the Peruvian Andes: gold, silver and copper read from orbit and confirmed in the laboratory. Depths, dimensions and tonnages are established before mobilization to site.

Case 01 · Arizona 2026

King Global Ventures — gold, silver and copper

17 areas with Au shows  ·  12.4 sq mi (32 km²)  ·  11 tectonic faults

Commissioned by King Global Ventures Inc. to evaluate a licensed area of 12.4 sq mi (32 km²) in the Black Canyon area of Yavapai County, Arizona. Stage I of the remote survey delineated 17 areas with gold shows at the surface and the network of 11 tectonic faults that controls them, without drilling any boreholes.

March — April 2026Au · Ag · CuTurkey Creek mining district · Black Canyon
View King Global publication
12.4sq mi
Licensed area · 32 km²
17
Areas with Au shows
11
Tectonic faults
68
Mapped boundary points
8
Core sampling reference points
0
Boreholes drilled
Stage I result · Arizona

Seventeen areas with gold shows, tied to the fault network.

The survey was carried out on satellite imagery of different frequency bands — visible, ultraviolet and infrared — transformed into analog plates and treated with chemical reagents specific to each metal. The recognition samples come from the American Assay Laboratories reports and were checked against eight core sampling reference points supplied by King Global. Infrared processing revealed the network of tectonic faults that crosses the block, and the gold occurrences are confined to it: a structural correlation that supports the prospectivity of the area for industrial anomalies of gold and associated metals.

Arizona — Au scatter halos and boundary points

17 areas with shows (SH-1 to SH-17) · background concentration CAu = 0.02 g/t · network of 11 tectonic faults

Arizona — halos de dispersión de oro, King Global Ventures
Licensed area boundary (12.4 sq mi / 32 km²)
Area with Au shows (SH-1 to SH-17)
Tectonic fault (11)
Boundary point (SH-1 to SH-17 series)
Licence vertex (01–09)
Plate No. 3A · schematic. Outlines of the 17 areas with gold scattering haloes within the 12.4 sq mi (32 km²) licensed area, together with the boundary points used to map them. Redrawn from the plate in the Stage I Exploration Report on a schematic base; the geographic coordinates and the satellite backdrop have been removed for publication. Data shown is for illustrative purposes.
What was delivered · Arizona

A structural map of the block and a prioritized plan for Stage II.

Deliverables

  • 1

    Cartography of 17 areas with gold shows

    Outlines of areas SH-1 to SH-17 at the background concentration threshold, plotted on satellite imagery with their boundary points.

  • 2

    Network of tectonic faults

    Eleven faults identified from infrared imagery, crossing the block from north to south and from northwest to south.

  • 3

    Georeferenced reference tables

    Boundary points of the areas, points along the faults and vertices of the licensed area, all in the WGS84 datum.

  • 4

    Structure — mineralization correlation

    The gold occurrences are confined to the fault network, which raises the likelihood of industrial anomalies forming near those structures.

Stage II — next steps

  • ·

    Delimitation of industrial anomalies

    Contours at the cut-off content of 1 g/t Au or more within the halos already identified.

  • ·

    Depth and thickness of the mineralization

    Schematic deep sections at the measurement points, down to depths of 9,840 ft (3,000 m).

  • ·

    Separate identification of silver and copper

    Delineation of Ag and Cu mineralization with industrial content in the ore.

  • ·

    Selection of drilling points

    Prioritized targets to intersect the highest-ranked anomalies.

Case 02 · Colombia 2025

Gloriosa Block — epithermal gold

6 anomalies @ ≥ 1 g/t Au  ·  1.4 sq mi (3.6 km²)  ·  114.3 Mt forecast  ·  16,410 ft (5,003 m) maximum depth

Commissioned by Cóndor Precious Metals to evaluate 1.4 sq mi (3.6 km²) in the Cauca-Patía inter-Andean valley. Two consecutive stages of remote exploration detected 6 industrial gold anomalies with a forecast ore volume of 45.7 million m³ (≈ 114.3 million tonnes at CAu ≥ 1 g/t).

June — September 2025 Au epithermal system Romeral suture · Kali-Patía fault
1.4sq mi
Block investigated · 3.6 km²
6
Industrial anomalies
19
Stratiform bodies
16,410ft
Maximum depth · 5,003 m
114Mt
Forecast ore
30
Drilling targets
The geological context

An epithermal system in an under-explored metallogenic belt.

The challenge

The Cauca-Patía inter-Andean valley constitutes a metallogenic belt of epithermal gold with favorable geological conditions: young magmatism, an omnipresent fault network (Romeral suture to the east, Kali-Patía system to the west), reactive rocks and documented hydrothermal alteration.

That said, the belt remains insufficiently characterized in comparison with the Cauca belt to the west. Cóndor Precious Metals accordingly commissioned a remote prospecting study intended to resolve two questions in parallel: the presence of detectable gold mineralization within the block and, if confirmed, the dimensions, depths and volumes to be forecast prior to committing investment to drilling.

The Inside Earth approach

Two consecutive stages were executed over four months by means of satellite remote sensing and laboratory spectral processing alone (Saturno-4 EPM spectrophotometer, patented gels, sputtering technique).

Stage I (June-August): identified three Au dispersion halos at the background concentration CAu = 0.06 g/t and mapped the network of three tectonic faults crossing the area.

Stage II (August-September): within the halos detected six industrial bodies at the threshold CAu = 1 g/t, measuring depth, thickness, dip angle and calculating forecast volumes for each anomaly.

Map 1 · Both stages on a single sheet

From 3 halos to 6 industrial anomalies on the same block.

Pale yellow shows the Stage I halos (background concentration, CAu ≥ 0.06 g/t). Bold red marks the six industrial bodies of Stage II (CAu ≥ 1 g/t). The fault network and the AOI outline complete the geological context.

Colombia — Gloriosa Block · Aurum-3.6

6 industrial gold anomalies · CAu ≥ 1 g/t · 3 contextual halos (Stage I, ≥ 0.06 g/t) · 3 tectonic faults

Mapa overview Colombia — Bloque Gloriosa
AOI boundary (1.4 sq mi / 3.6 km²)
Industrial anomaly CAu ≥ 1 g/t (Stage II)
Au halo CAu ≥ 0.06 g/t (Stage I, context)
Tectonic fault
AOI corner (PA, P1–P4)
Stage II measurement point (~50 points)
Plate 1. Plan view of the Gloriosa Block. Red polygons: industrial anomalies AP-1Au, AP-2Au, AP-3Au, AP-4Au (small bodies, dimensions a × L verified in Stage II, ~7.4–99 acres (~30,000–400,000 m²) each) and the large AP-5Au and AP-6Au (47 acres / 190,240 m² and 30 acres / 121,603 m² respectively). Pale halos: Stage I outlines at the 0.06 g/t threshold. Violet dashed lines: 3 tectonic faults (R1-x, R2-x = E-W; R3-x = NE-SW). Data shown is for illustrative purposes.
The 6 industrial anomalies

Four compact bodies and two stratiform deposits at great depth.

The first four are single bodies with ~75-80° dip towards the south. The last two — AP-5Au with 11 stratiform bodies and AP-6Au with 8 — are the principal findings: deep deposits of stacked stratiform architecture, with multiple mineralized horizons concentrating the bulk of the forecast resource.

Single body · ~75-80° S

AP-1Au

Depth
148 — 1,560 ft (45 — 477 m)
Width · length
180 × 287 ft (54.9 × 87.5 m)
Mean thickness
21 ft (6.4 m)
Resources
240,800 t

Five measurements on the N-S profile (1-1A, 1-1, 1-2, 1-3, 1-3A) + two E-W edge points. Clean lenticular body.

Single body + tray

AP-2Au

Depth
361 — 1,480 ft (110 — 450 m)
Width · length
280 × 424 ft (85.2 × 129.2 m)
Mean thickness
17 ft (5.2 m)
Resources
257,400 t

Dipping N-S profile + horizontal level at ~1,160 ft (~354 m) visible on the E-W cross section (Figure 6A). Complex geometry.

Single body · ~75-80° S

AP-3Au

Depth
148 — 1,740 ft (45 — 529 m)
Width · length
216 × 445 ft (65.7 × 135.5 m)
Mean thickness
17 ft (5.2 m)
Resources
390,000 t

The deepest among the compact bodies. Mineralization detected almost at surface (148 ft / 45 m). Suitable shallow drilling target.

Single body · ~75-80° S

AP-4Au

Depth
335 — 1,600 ft (102 — 488 m)
Width · length
139 × 318 ft (42.4 × 97 m)
Mean thickness
17 ft (5.25 m)
Resources
186,375 t

The smallest of the four compact bodies. Isolated to the west of the block, within the Stage I AP-1 halo.

★ Main finding · 11 stratiform bodies

AP-5Au — the dominant deposit

Depth
164 — 16,410 ft (50 — 5,003 m)
Width · length
922 × 2,510 ft (281 × 766 m)
Bodies
11 stratiform
Resources
90,994,750 t

The principal discovery of the study. Eleven stratiform bodies stacked from ~262 ft (~80 m) to the technology's detection limit (16,410 ft / 5,003 m). The system is structured into two tectonic blocks separated by discontinuities at ~7,220 ft (~2,200 m) and ~15,090 ft (~4,600 m) depth. S = 47 acres (190,240 m²) of effective mineralized area · ≈ 91 million tonnes forecast at CAu ≥ 1 g/t.

★ 8 stratiform bodies

AP-6Au

Depth
220 — 14,150 ft (67 — 4,314 m)
Width · length
909 × 1,560 ft (277 × 475.7 m)
Bodies
8 stratiform
Resources
22,212,375 t

The second large deposit, east of AP-5Au. Similar stratiform structure but with smaller vertical extent. ≈ 22 million tonnes forecast.

Map 3 · N-S vertical sections

3D geometry documented — from 148 ft (45 m) down to 16,410 ft (5,003 m) depth.

The four compact bodies (AP-1Au — AP-4Au) are single 16-23 ft (5-7 m) thick lenses with a 75-80° dip to the south. AP-5Au and AP-6Au reveal stratified structures with multiple layers separated by hundreds to thousands of meters of barren rock.

Colombia — Depth sections

6 industrial gold anomalies · N-S profiles · CAu ≥ 1 g/t · depths verified down to 16,410 ft (5,003 m)

Cortes verticales Colombia
Plate 3. Six N-S vertical sections extracted from Annex 4 of the Final Report (Figures 5, 6, 7, 8, 9, 10). The first four anomalies (simple lenticular bodies, 0–1,970 ft / 0–600 m scale). The last two (stacked stratiform bodies, scale up to 16,400 ft / 5,000 m). In AP-5Au, the two tectonic blocks are separated by red lines at 7,220 ft (2,200 m) and 15,090 ft (4,600 m). Depths preserved verbatim from the report. Data shown is for illustrative purposes.

Summary table — forecast resources per anomaly (Table 4, Final Report)

View table
AnomalyDepth H (m)a (m)L (m)S (m²)V (m³)Resources (t)
AP-1Au45 – 4777043030,10096,320240,800
AP-2Au110 – 450110360391,600102,960257,400
AP-3Au45 – 52912050060,000156,000390,000
AP-4Au102 – 4888035528,40074,550186,375
AP-5Au50 – 5,003 (11 bodies)28176616,768,50036,397,90090,994,750
AP-6Au67 – 4,314 (8 bodies)277475,73,411,3008,884,95022,212,375
Total · CAu ≥ 1 g/t · ρ = 2.5 t/m³20,689,90045,712,680114,281,700
Total forecast resource
114Mt

45.7 million m³ of forecast ore at CAu ≥ 1 g/t across the six anomalies (ρ = 2.5 t/m³).

Maximum verified depth
16,410ft

Mineralization detected at AP-5Au at the technology's detection limit depth (measurements made down to 22,970 ft / 7,000 m).

Drilling depth
80–300m

Recommended minimum drill-hole depth range to confirm the surface anomalies.

3D model · Interactive visualization

19 mineralized bodies, volumetrically reconstructed.

Geometry, depth and thickness obtained without drilling or prior boreholes — the operator can visualize what lies beneath each point of the block before investing a single meter of drilling.

Volumetric view · mineralized bodies
19 bodies · 164 to 16,500 ft (50 to 5,030 m)
shallow · 164 ft (50 m)
deep · 16,400 ft (5,000 m)

Data shown is for illustrative purposes.

Horizontal slice · –656 ft (–200 m)
shallow zone
Horizontal slice · –4,590 ft (–1,400 m)
intermediate zone
Horizontal slice · –9,840 ft (–3,000 m)
deep zone

Data shown is for illustrative purposes.

Bodies delineated
19

11 in AP-5Au · 8 in AP-6Au — each with top, bottom, length, width and thickness measured.

Forecast resources
113,207t

Total tonnage at CAu ≥ 1 g/t calculated anomaly by anomaly (Table 5, Annex 3).

Vertical range covered
164–16,500ft

From shallow mineralization (164 ft / 50 m) down to the technology's detection limit.

Projection footprint
77acres

Combined footprint of AP-5Au + AP-6Au over the Gloriosa block (311,843 m²).

Each body in the model corresponds to a mapped gold mineralization whose spatial position reflects the measurements taken during the remote campaign. The chromatic gradient encodes depth: warm tones identify the shallowest bodies, and therefore the most accessible for a first stage of exploitation. The three horizontal slices section the volume at –656 ft (–200 m), –4,590 ft (–1,400 m) and –9,840 ft (–3,000 m), showing the active spatial footprint at each elevation.

What was delivered · Colombia

Complete catalog of forecast resources and prioritized drilling plan.

Deliverables

  • 1

    Stage I + II cartography — 3 halos + 6 georeferenced anomalies

    Coordinates of the contours at the 0.06 g/t threshold (dispersion halos) and at the 1 g/t industrial threshold (anomalies).

  • 2

    3D geometry — 9 depth sections

    Figures 5, 6, 6A, 7, 8, 9, 9A, 10, 10A: N-S and E-W cross sections for each anomaly with top, bottom and thickness per measurement point.

  • 3

    Forecast resource estimation

    Volume V (m³) and tonnage P (t) calculated for each anomaly. Total 114.3 Mt at CAu ≥ 1 g/t (Table 4 + Table 5, Annex 3).

  • 4

    30 recommended drilling points

    Five prioritized targets per anomaly (points No. 1, 2, 3, 4, 5) with coordinates and minimum drill depth of 262-984 ft (80-300 m).

Key benefits

  • ·

    Two stages in four months

    From a practically unknown zone to a complete resource catalog in less than a quarter, with no invasive field work.

  • ·

    No ground disturbance during exploration

    No roads, no platforms, no drilling muds — relevant in the sensitive territory of the inter-Andean valley with vegetation and communities.

  • ·

    Drilling informed by prior characterization

    Each of the 30 confirmation wells targets an anomaly with already known dimensions and depth. Optimized drilling investment.

  • ·

    Integrated geological view

    Stage I halos + Stage II industrial bodies + structural network in a single georeferenced framework, ready to integrate into the client's GIS.

Case 03 · Peru 2022

Peruvian Andes — porphyry copper

15 anomalies @ ≥ 0.2% Cu  ·  4 zones  ·  ≈ 11.6 sq mi (≈ 30 km²)  ·  7 vertical sections

Four license zones, ≈ 11.6 sq mi (≈ 30 km²) of investigated area, 83 surface measurement points and 25 underground exploration points — the entire subsurface characterized at the 0.2% Cu threshold via remote NMR, without drilling any boreholes.

June 2022 Cu porphyry deposit Active open-pit operation
4
License zones
~30km²
Investigated area · ≈ 11.6 sq mi
83
Surface measurement points
25
Underground points
15
Cu ≥ 0.2% anomalies
7
Vertical sections
The context

Extending exploration around an active operation, without interrupting it.

The challenge

A mining operator in the Peruvian high plateau needed to expand the geological knowledge of its license area after several years of open-pit production. The question was direct: how far does copper mineralization extend around the existing operations, and at what depth?

Conventional tools — extensive diamond drilling campaigns — would have meant six to twelve months of field work, dozens of drilling rigs, opening of access roads through steep terrain and, above all, partial interruption of production in active zones.

The Inside Earth approach

Proprietary remote nuclear magnetic resonance was deployed across the four zones. Acquisition was completed in a few weeks, combining two modes:

83 surface measurement points along closed traverses (P, Q, R, T series) plus 25 underground measurement points (U-P, U-R, U-S, U-T) in zones with mineralization suspected from geological background. Result: full subsurface characterization — plan-view contours, depth elevations and structural network — without drilling a single physical hole.

Map 1 · Survey geometry

Coverage, anomalies and structural network on a single plate.

License polygons, the 83 measurement points, the 25 underground points, the 15 anomaly contours at the 0.2% Cu threshold and the fault network correlated with mineralization.

Peru — Copper anomaly survey

Boundaries of 4 license zones · 15 anomaly contours at CCu ≥ 0.2% · tectonic fault network

Mapa de geometría — Perú 2022
License zone boundary
Cu anomaly ≥ 0.2%
Tectonic fault
Measurement point P · Q · R · T
Underground exploration point
Plate 1. Plan view of the Peru 2022 survey. Red polygons: license zones. Yellow circles: surface measurement points. Green squares: underground points. Orange polygons: copper anomalies ≥ 0.2% Cu. Black dashed lines: tectonic faults. Labels AP1-1 through AP4-3 preserved verbatim from the original report. Data shown is for illustrative purposes.
Results · 15 anomalies

Copper above the economic threshold across all four concessions.

Zone 1 · south-western

Five perimeter lenses

  • AP1-1
  • AP1-2
  • AP1-3
  • AP1-4
  • AP1-5

Five relatively small anomalies distributed along the perimeter of the zone — typical of a peripheral halo around the main body.

Zone 2 · north-western

Three concentrated anomalies

  • AP2-1
  • AP2-2
  • AP2-3

Three elongated lenses of moderate extent, aligned with the dominant structural direction. Associated with a main NW–SE fault.

Zone 3 · north-central

The dominant system

  • AP3-1
  • AP3-2
  • AP3-3
  • AP3-4

AP3-1 is an arc ≈ 0.9 mi (≈ 1.5 km) long — geometry characteristic of a developed porphyry system. AP3-2, AP3-3 and AP3-4 accompany it as satellites.

Zone 4 · eastern

Deep mineralization

  • AP4-1
  • AP4-2
  • AP4-3

AP4-3 shows stacked lenticular bodies extending down to 1,410 ft (430 m) depth — the deepest segment of the survey.

Map 2 · Grade distribution

Visualization of the Cu field interpolated from the underground points.

The 0.2% threshold appears as a thick white contour. The main hotspot concentrates in the western sector of AP3-1 — where R3-6, R3-7 and R3-8 exceed 1.2% Cu and reach a maximum of 1.85% — with a second isolated focus in AP4-3 to the south-east (core at 1.05% in T1-2).

Peru — Cu grade field map

IDW interpolation across 24 underground exploration points · scale 0 — 1.5% Cu · anomaly threshold ≥ 0.2%

Mapa de campo de Cu — Perú 2022 (Paleta Cóndor full)
Plate 2 · illustrative. Copper grade field built by IDW interpolation from 24 underground points, with edge samples at 0.2% along each anomaly contour. Data shown is for illustrative purposes.
Map 3 · Vertical sections

Documented three-dimensional geometry — seven profiles, depths verified in meters.

Mineralization is defined by a top, a bottom and a geometry. The NMR analysis provided the vertical elevations for the most significant anomalies.

Peru — Depth sections of Cu anomalies

Annex 4 · 7 vertical sections through the AP1-2, AP3-1, AP3-2, AP3-3, AP3-4 and AP4-3 anomalies

Cortes verticales Perú 2022
Plate 3. Seven vertical sections (Annex 4 of the report). Each section shows the top and bottom of the mineralized body along vertical measurement lines. All elevations in meters from surface. AP4-3 shows two stacked lenses on each profile — geometry characteristic of mineralization in shear zones. Data preserved verbatim from the report. Data shown is for illustrative purposes.

Vertical elevation table — Annex 4 data

View table
AnomalyLineTop (m)Bottom (m)Thickness (m)
AP1-2 · Site 1 · Figure 5
AP1-2P1-14913081
AP1-2P1-221284263
AP1-2P1-39818688
AP3-1 western · Site 3 · Figure 6
AP3-1R3-683223140
AP3-1R3-755266211
AP3-1R3-887222135
AP3-1 central · Site 3 · Figure 7
AP3-1R3-473282209
AP3-1R3-546217171
AP3-2 · Site 3 · Figure 8
AP3-2R1-151206155
AP3-2R1-287262175
AP3-2R1-312321794
AP3-3 · Site 3 · Figure 9
AP3-3R2-184250166
AP3-3R2-254203149
AP3-4 · Site 3 · Figure 10
AP3-4R4-1140273133
AP3-4R4-279342263
AP3-4R4-3170347177
AP4-3 · Site 4 · Figure 11 (stacked bodies)
AP4-3T1-1 upper24231472
AP4-3T1-1 lower34343087
AP4-3T1-2 upper18726376
AP4-3T1-2 lower28932536
AP4-3T1-3 upper40221181
AP4-3T1-3 lower28137089
Thickest body
263m

Vertical thickness in P1-2 (AP1-2) and R4-2 (AP3-4) — the lenticular bodies of greatest vertical extent recorded in the survey.

Maximum depth
430m

Mineralization detected at T1-1 (AP4-3, lower lens) — the deepest segment of the survey.

Shallowest top
21m

Mineralization detected almost at surface in P1-2 (AP1-2) — accessible without major stripping.

3D model · Interactive visualization

The deposit as a volume, not as a table.

Those values correspond to a three-dimensional volume. Move the camera, toggle layers, and see how the 15 copper anomalies, 4 license zones, 83 surface measurement points and 25 underground points sit inside the 5.0 × 4.0 mi (8 × 6.4 km) block — with the 7 highest-priority anomalies reconstructed with their real top and bottom elevations taken verbatim from Annex 4. Depth reference planes every 328 ft (100 m), and three tectonic faults rendered as inclined planes.

Volumetric view · 15 copper anomalies
5.0 × 4.0 mi (8 × 6.4 km) · 0 to –1,640 ft (0 to –500 m)
shallow · 69 ft (21 m)
deep · 1,410 ft (430 m)

Data shown is for illustrative purposes.

Model layers
tap to toggle
Camera presets
drag plot to free-orbit
Legend
six entity classes
License zones (Z1–Z4)
Surface measurement points · 83
Underground points · 25
Anomaly body (depth-graded)
Tectonic faults · NW–SE
Depth reference (every 328 ft / 100 m)
Anomalies in 3D
15

Volumetrically reconstructed; 7 with verbatim top/bottom from Annex 4.

Measurement points
83

Surface traverses P01–P27, Q01–Q15, R01–R37 and T01–T04 (4 series, closed loops).

Underground points
25

U-points placed at depth on the prioritized anomalies — ready to lay out future campaigns.

Vertical sections
7 · 0 boreholes

Real depth profiles for AP1-2, AP3-1 W, AP3-1 C, AP3-2, AP3-3, AP3-4 and AP4-3 — without a single drilled meter.

What was delivered · Peru

A catalog of prioritized drilling targets, with 3D geometry before any drilling investment.

Deliverables

  • 1

    Discrete cartography — 15 georeferenced polygons

    Vertex-by-vertex coordinates of every anomaly contour at the 0.2% Cu threshold.

  • 2

    3D geometry — 7 vertical sections

    Top and bottom elevations for each mineralized body in the prioritized anomalies.

  • 3

    Structural cartography

    Tectonic fault network correlated with the mineralization.

  • 4

    Absolute coordinates of the U-points

    Annex 5 with the exact position of each underground point, ready to lay out future campaigns.

Key benefits

  • ·

    Timeline: weeks instead of months

    Acquisition and processing in a fraction of the time of an equivalent drilling campaign.

  • ·

    No terrain disturbance

    No roads, no platforms, no muds — relevant in Andean territory with sensitive environmental conditions.

  • ·

    Production not interrupted

    Field work in parallel with the active operation, without stoppages or equipment diversions.

  • ·

    Prioritized targets

    De "queremos saber qué hay alrededor" a 15 objetivos con geometría conocida, listos para informar la decisión sobre dónde perforar.

Underground mining · Accident prevention

The same method, applied to firedamp gas.

Remote nuclear magnetic resonance also maps the deep gas sources and the migratory faults that feed firedamp into the galleries. Validated against real drilling data in Donetsk (2010) and Kuzbass (2022), with 98.4% predictive accuracy.

View accident prevention
Have a similar case?

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Where an operation would benefit from rapid subsurface characterization without physical drilling, from shallow haloes to forecast resources at kilometric depth, the feasibility of the area can be assessed by the Inside Earth technical team in a first meeting, without obligation.

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