Gold intersections reported in five of seven holes at Stortjärnhobben, and the results will be included in the updated Mineral Resource expected at the end of October

Lappland Guldprospektering AB (publ) (the "Company") reports results from seven diamond core holes at Stortjärnhobben in the municipality of Storuman, with gold intersections in five of them. The intersection containing the most gold is 5.1 metres at 1.76 grams of gold per tonne in STH2026003, and the longest is 7 metres at 1.03 grams of gold per tonne in STH2025022. The gold intersections lie between 14 and 279 metres down-hole, that is, both close to surface and far down the holes. The results will be included in the updated Mineral Resource, which the Company expects to be able to report at the end of October 2026. The Inferred Mineral Resource at Stortjärnhobben currently amounts to 4.6 tonnes of gold. Drilling at Stortjärnhobben continues this autumn. The seven holes total 1,749.25 metres and were drilled at the end of 2025 and during the first half of 2026. The purpose was partly to infill earlier drilling and partly to test the mineralisation (the part of the bedrock that carries gold) at greater depth. No assay results from the seven holes have been reported before.

Background

This release covers seven diamond core holes totalling 1,749.25 metres at Stortjärnhobben. Six of the holes lie in the southern part of the exploitation concession. STH2025021 lies about 460 metres north of the northernmost of them. The holes are between 141.20 and 289.70 metres long. In core drilling a full cylinder of rock is recovered from the hole, sawn lengthwise and assayed, which allows grades to be tied to an exact depth in the hole.

No assay results from any of the seven holes have been reported before. The programme had two purposes. The first was to drill more closely between existing holes within the Inferred Mineral Resource, so that the basis for the next resource estimate rests on more holes at shorter spacing. The second was to reach the mineralisation further down than the Company had drilled in the southern part until now.

Both purposes were communicated earlier. In the press release of 19 November 2025 the Company stated that drilling would continue in the southern part with holes up to 300 metres deep in order to reach the mineralisation at greater depth. In the interim report for the second quarter of 2026, published on 25 August 2026, the Company stated that the five 2026 holes are approximately 250 metres long and oriented to cross the mineralisation at approximately 200 metres depth.

The Inferred Mineral Resource at Stortjärnhobben amounts to 4.6 tonnes of gold in 2.65 million tonnes of rock at an average grade of 1.73 grams of gold per tonne, reported in December 2025. That is the resource now being updated with the results from the seven holes. The Company first stated that the updated Mineral Resource would be ready during the first half of 2026, and thereafter during the third quarter. A cold winter delayed the drilling, and the Company now expects to be able to report an updated Mineral Resource at the end of October 2026.

Comment from the CEO

"We drilled to answer one question: is there gold further down as well? There is. Five of the seven holes gave intersections we report, and the deepest lie further down than we have reported from Stortjärnhobben before. The one containing the most gold is 5.1 metres at 1.76 grams of gold per tonne, in line with the average grade of the Mineral Resource we already have. Finding that grade so far down is what I take away from this drilling. We keep drilling this autumn, and the drill results go into the updated Mineral Resource, which we expect to be able to report at the end of October."

Fredrik Johansson, Chief Executive Officer, Lappland Guldprospektering AB (publ)

Results

Intersections are reported from five of the seven holes: STH2025021, STH2025022, STH2026001, STH2026003 and STH2026004. In STH2026002 and STH2026005 there is no interval to report. The maximum single sample grade in the two holes is 0.45 grams of gold per tonne in STH2026002 and 0.45 in STH2026005.

The five 2026 holes are spread over about 240 metres north to south within the Inferred Mineral Resource. Twelve intersections are reported. The one containing the most gold is 5.1 metres at 1.76 grams of gold per tonne in STH2026003, between 219 and 224.1 metres down-hole. Within it lies one metre at 4.99 grams of gold per tonne, the highest single sample grade in the reporting. The longest intersection is 7 metres at 1.03 grams of gold per tonne in STH2025022, between 150 and 157 metres down-hole. For comparison, the average grade of the Inferred Mineral Resource is 1.73 grams of gold per tonne.

STH2025022 shows gold at five levels between 14 and 231 metres down-hole, that is, both close to surface and far down the hole. The highest average grade for a whole intersection is in that hole: one metre at 2.23 grams of gold per tonne between 230 and 231 metres.

The deepest intersection lies between 275 and 279 metres down-hole in STH2026004 and carries 1.17 grams of gold per tonne over 4 metres. The same hole has gold at three separate levels between 242 and 279 metres. The gold in that hole therefore does not sit in a single continuous zone.

Drill hole
From (m)
To (m)
Length (m)
Average (g Au/t)
Maximum single sample grade (g Au/t)
STH2025021
102.00
106.00
4.00
0.55
0.89
STH2025022
14.00
16.00
2.00
1.79
2.98
incl.
14.00
15.00
1.00
2.98
STH2025022
150.00
157.00
7.00
1.03
2.24
incl.
152.85
154.35
1.50
2.24
STH2025022
163.00
167.00
4.00
0.62
0.83
STH2025022
194.00
198.65
4.65
0.95
2.05
incl.
194.00
195.00
1.00
2.05
STH2025022
230.00
231.00
1.00
2.23
2.23
STH2026001
177.00
183.00
6.00
0.58
1.20
incl.
179.00
180.00
1.00
1.20
STH2026003
219.00
224.10
5.10
1.76
4.99
incl.
222.00
223.00
1.00
4.99
STH2026003
263.00
268.00
5.00
0.56
0.80
incl.
263.00
264.00
1.00
0.80
STH2026004
242.00
246.00
4.00
1.16
1.88
incl.
242.00
245.00
3.00
1.37
STH2026004
262.00
263.42
1.42
0.64
0.68
STH2026004
275.00
279.00
4.00
1.17
1.67

Rows marked "incl." are parts of higher grade within the intersection above. The average applies to the whole intersection, including the lower grades inside it, and is weighted by sample length. Maximum single sample grade is the grade of the highest individual sample within each intersection. Average grades are reported to two decimal places. All assay values are set out in Appendix 1.

The intersections are down-hole lengths, that is, lengths along the drill hole and not straight through the mineralisation. The true width of the mineralisation cannot be determined from the existing drill holes, and that figure is therefore not given. The reported intersections are significant intercepts selected by the Competent Person. No fixed cut-off grade has been applied.

The mineralisation is open to the north, to the south and at depth. Further drilling is required to delineate it.

The grades lie within the variability known for the deposit, and they do not change the geological interpretation of the mineralisation. The dataset is being incorporated into the geological model, and the grade variability will be evaluated further in the continued drilling to give a more confident picture of how grades are distributed locally.

The results will be included in the updated Mineral Resource, which the Company expects to be able to report at the end of October 2026. The Company continues drilling at Stortjärnhobben during the autumn of 2026, once the two new diamond core holes at Nya Gilleberget are complete.

Qualification

Exploration Results are individual assay values from drill holes. They are not a Mineral Resource, that is, not an estimate of how much gold is in the ground, and they do not determine whether the gold can be mined profitably. That question is answered first by a Mineral Resource estimate and by the economic studies that follow it.

It is reasonably expected that the majority of Inferred Mineral Resources could be upgraded to Indicated Mineral Resources with continued exploration; however, it cannot be assumed that such upgrading would always occur. Inferred Mineral Resources must not be converted to Mineral Reserves.

Upcoming milestones

The following represents the Company's expectation at the time of this press release. The timings are assessments and not undertakings.

Milestone
Timing
Follow-up core drilling at Nya Gilleberget, two holes totalling 600 metres
Autumn 2026
Continued core drilling at Stortjärnhobben
Autumn 2026
Decision on the environmental permit for trial mining at Stortjärnhobben
Autumn 2026
Updated Mineral Resource for Stortjärnhobben
End of October 2026
Preliminary Economic Assessment (scoping study) for Stortjärnhobben
Q4 2026
Follow-up chip drilling at Löparen on a tighter grid
Winter 2026/2027

The timing of the decision on the environmental permit for trial mining is governed by the processing of the application, the decision itself and any appeals.

Market Abuse Regulation

This information is information that Lappland Guldprospektering AB (publ) is obliged to make public pursuant to the EU Market Abuse Regulation (MAR). The information was submitted for publication, through the agency of the contact person set out below, on 4 September 2026 at 16:15 CEST.

For further information

Fredrik Johansson, Chief Executive Officer

Lappland Guldprospektering AB (publ)

Phone: +46 70 300 31 70

Email: fredrik.johansson@lapplandguld.se

www.lapplandguld.se

Competent Person according to PERC

The Exploration Results reported in this press release have been reviewed and approved by Lazaros Dalampiras, MAusIMM CP(Geo), a Competent Person according to PERC.

This press release is published simultaneously in Swedish and English. Swedish is the Company's main language for regulatory information and the English version is a translation. The English version has been reviewed and approved by Lazaros Dalampiras.

About the Company

Lappland Guldprospektering AB (publ) is a Swedish exploration company focused on gold in Sweden. The Company's main project is Stortjärnhobben in southern Lapland, for which an exploitation concession has been granted and where an Inferred Mineral Resource of 4.6 tonnes of gold has been reported according to the PERC Reporting Standard¹.

In addition to Stortjärnhobben, the Company holds seven exploration permits for gold and two for copper, zinc and silver. The Company is listed on the Spotlight Stock Market under the ticker LGOLD B, with its registered office in Stockholm and head office in Skellefteå.

¹ PERC refers to the PERC Reporting Standard (2021 edition), the pan-European standard for the reporting of mineral resources and mineral reserves. The Inferred Mineral Resource at Stortjärnhobben amounts to 4.6 tonnes of gold in 2.65 million tonnes of rock at 1.73 grams of gold per tonne. Inferred means that quantity and grade are estimated with low geological confidence. Cut-off grade: 0.8 grams of gold per tonne. Top-cut for individual high grades: 20 grams of gold per tonne. The Stortjärnhobben Mineral Resource was reported by Lazaros Dalampiras, MAusIMM CP(Geo). It is not affected by this press release and stands unchanged until an updated estimate is published.

Glossary

Mineralisation: the part of the bedrock that contains the metal being sought, here gold.

Core drilling: a drilling method in which a full cylinder of rock is recovered from the hole and sawn lengthwise, so that grades can be tied to an exact depth in the hole.

Chip drilling: a drilling method in which the rock is crushed and the cuttings are collected at the collar. Faster and cheaper than core drilling, but without the same precision in depth.

Inferred Mineral Resource: the lowest of three classes in the PERC Reporting Standard. Quantity and grade are estimated with low geological confidence.

Appendix 1. Drill holes, intersections and assay values

The drill holes

Drill hole
East
North
Elevation (m)
Length (m)
Azimuth (°)
Dip (°)
STH2025021
624,339
7,202,888
327.97
141.20
90
46.7
STH2025022
624,456
7,202,259
364.63
251.60
90
55.5
STH2026001
624,466
7,202,191
364.99
289.70
90
55.6
STH2026002
624,421
7,202,337
363.56
231.15
90
49.8
STH2026003
624,368
7,202,380
369.23
280.60
90
51.4
STH2026004
624,348
7,202,430
370.33
282.00
90
56.7
STH2026005
624,422
7,202,302
365.54
273.00
90
50.6

East, north and elevation are planned coordinates in SWEREF 99 TM, not surveyed. The azimuth in the table is planned azimuth. Lengths are down-hole lengths and sum to 1,749.25 metres.

All assay values

All 467 assay values from the seven holes. A duplicated sample for STH2026001 between 205 and 206.08 metres down-hole has been removed at the Competent Person's instruction, and the interval is therefore reported once. Lengths are down-hole lengths, grades gold in grams per tonne.

Drill hole
From (m)
To (m)
Length (m)
Gold (g/t)
STH2025021
3.6
5
1.4
0.003
STH2025021
5
6
1
0.002
STH2025021
6
7
1
0.005
STH2025021
7
8
1
0.011
STH2025021
17
18
1
0.007
STH2025021
18
19
1
0.006
STH2025021
19
20
1
0.004
STH2025021
20
21
1
0.005
STH2025021
29
30
1
0.006
STH2025021
30
31
1
0.035
STH2025021
31
32
1
0.197
STH2025021
32
33.03
1.03
0.013
STH2025021
33.03
33.76
0.73
0.011
STH2025021
33.76
35
1.24
0.008
STH2025021
59
60
1
0.057
STH2025021
60
61
1
0.141
STH2025021
61
62
1
0.026
STH2025021
62
63
1
0.448
STH2025021
63
64
1
0.097
STH2025021
64
65
1
0.023
STH2025021
65
66
1
0.11
STH2025021
66
67
1
0.177
STH2025021
93
94
1
0.055
STH2025021
94
95
1
0.086
STH2025021
95
96
1
0.061
STH2025021
96
97
1
0.091
STH2025021
97
98
1
0.304
STH2025021
98
99
1
0.604
STH2025021
99
100
1
0.053
STH2025021
100
101
1
0.009
STH2025021
101
102
1
0.259
STH2025021
102
103
1
0.504
STH2025021
103
103.9
0.9
0.885
STH2025021
103.9
105
1.1
0.116
STH2025021
105
106
1
0.76
STH2025021
106
107
1
0.072
STH2025021
107
108
1
0.148
STH2025021
108
109
1
0.078
STH2025021
110
111
1
0.029
STH2025021
111
112
1
0.006
STH2025021
112
113
1
0.003
STH2025021
113
114
1
0.003
STH2025021
114
115
1
0.006
STH2025021
115
116
1
0.006
STH2025021
116
117
1
0.084
STH2025021
117
118
1
0.063
STH2025021
118
119
1
0.026
STH2025021
119
120
1
0.012
STH2025022
13
14
1
0.008
STH2025022
14
15
1
2.98
STH2025022
15
16
1
0.6
STH2025022
16
17
1
0.01
STH2025022
17
18
1
0.014
STH2025022
28
29
1
0.008
STH2025022
29
29.77
0.77
0.006
STH2025022
29.77
30.9
1.13
0.012
STH2025022
30.9
32
1.1
0.003
STH2025022
32
33
1
0.013
STH2025022
55
56
1
0.002
STH2025022
56
57
1
0.028
STH2025022
57
58
1
0.544
STH2025022
58
59
1
0.023
STH2025022
59
60
1
0.017
STH2025022
60
61
1
0.074
STH2025022
61
62
1
0.018
STH2025022
62
63
1
0.032
STH2025022
63
64
1
0.026
STH2025022
64
65
1
0.005
STH2025022
65
66
1
0.159
STH2025022
129
130
1
0.113
STH2025022
130
131
1
0.036
STH2025022
131
132
1
0.085
STH2025022
132
133
1
0.045
STH2025022
148.35
149
0.65
0.093
STH2025022
149
150
1
0.118
STH2025022
150
151
1
0.706
STH2025022
151
152
1
0.781
STH2025022
152
152.85
0.85
0.902
STH2025022
152.85
154.35
1.5
2.24
STH2025022
154.35
155
0.65
0.801
STH2025022
155
156
1
0.471
STH2025022
156
157
1
0.625
STH2025022
157
158
1
0.252
STH2025022
158
159
1
0.304
STH2025022
159
160
1
0.418
STH2025022
160
161
1
0.285
STH2025022
161
162
1
0.276
STH2025022
162
163
1
0.436
STH2025022
163
164
1
0.633
STH2025022
164
165
1
0.341
STH2025022
165
166
1
0.827
STH2025022
166
167
1
0.663
STH2025022
167
168
1
0.273
STH2025022
168
169
1
0.223
STH2025022
169
170
1
0.157
STH2025022
170
171
1
0.14
STH2025022
171
172
1
0.141
STH2025022
172
173
1
0.303
STH2025022
173
174
1
0.154
STH2025022
174
175
1
0.149
STH2025022
175
176
1
0.102
STH2025022
176
177
1
0.078
STH2025022
177
178
1
0.044
STH2025022
178
179
1
0.076
STH2025022
179
180
1
0.071
STH2025022
180
181
1
0.067
STH2025022
181
182
1
0.101
STH2025022
182
183
1
0.197
STH2025022
183
184.17
1.17
0.687
STH2025022
186.85
188
1.15
0.806
STH2025022
188
189
1
0.49
STH2025022
189
190
1
0.324
STH2025022
190
191
1
0.236
STH2025022
191
192
1
0.164
STH2025022
192
193
1
0.113
STH2025022
193
194
1
0.428
STH2025022
194
195
1
2.05
STH2025022
195
196
1
0.852
STH2025022
196
197
1
0.549
STH2025022
197
198
1
0.393
STH2025022
198
198.65
0.65
0.867
STH2025022
198.65
200.1
1.45
0.279
STH2025022
225
226
1
0.041
STH2025022
226
227
1
0.13
STH2025022
227
228
1
0.016
STH2025022
228
229
1
0.023
STH2025022
229
230
1
0.088
STH2025022
230
231
1
2.23
STH2025022
231
232
1
0.058
STH2025022
232
233
1
0.051
STH2025022
233
234.2
1.2
0.034
STH2026001
30
31.2
1.2
0.018
STH2026001
31.2
32
0.8
0.048
STH2026001
32
33
1
0.032
STH2026001
33
33.95
0.95
0.083
STH2026001
33.95
35
1.05
0.09
STH2026001
55
56.4
1.4
0.135
STH2026001
56.4
57.15
0.75
0.096
STH2026001
57.15
58
0.85
0.115
STH2026001
123
124
1
0.013
STH2026001
124
125
1
0.018
STH2026001
125
126
1
0.013
STH2026001
126
127
1
0.009
STH2026001
127
128
1
0.006
STH2026001
128
129
1
0.02
STH2026001
129
130
1
0.026
STH2026001
130
131
1
0.012
STH2026001
131
132
1
0.003
STH2026001
132
133
1
0.04
STH2026001
133
134
1
0.019
STH2026001
134
135
1
0.023
STH2026001
135
136
1
0.013
STH2026001
136
137
1
0.005
STH2026001
137
138
1
0.006
STH2026001
138
139
1
0.008
STH2026001
139
140
1
0.006
STH2026001
140
141
1
0.008
STH2026001
141
142
1
0.006
STH2026001
142
143
1
0.004
STH2026001
143
144
1
0.007
STH2026001
144
145
1
0.002
STH2026001
145
145.38
0.38
0.00025
STH2026001
145.38
146
0.62
0.006
STH2026001
146
147
1
0.001
STH2026001
147
148
1
0.002
STH2026001
148
149
1
0.003
STH2026001
149
150
1
0.00025
STH2026001
150
151
1
0.01
STH2026001
151
152
1
0.014
STH2026001
152
153
1
0.006
STH2026001
153
154
1
0.005
STH2026001
154
155
1
0.00025
STH2026001
155
156
1
0.003
STH2026001
156
157
1
0.00025
STH2026001
157
158
1
0.00025
STH2026001
158
159
1
0.006
STH2026001
159
160
1
0.043
STH2026001
160
161
1
0.032
STH2026001
161
162
1
0.002
STH2026001
162
163
1
0.00025
STH2026001
163
164
1
0.027
STH2026001
164
165
1
0.00025
STH2026001
165
166
1
0.00025
STH2026001
166
167
1
0.00025
STH2026001
167
168.3
1.3
0.002
STH2026001
168.3
169
0.7
0.009
STH2026001
169
171
2
0.153
STH2026001
171
172
1
0.171
STH2026001
172
172.97
0.97
0.126
STH2026001
172.97
174
1.03
0.014
STH2026001
174
175
1
0.009
STH2026001
175
175.78
0.78
0.056
STH2026001
175.78
177
1.22
0.09
STH2026001
177
178
1
0.553
STH2026001
178
179
1
0.277
STH2026001
179
180
1
1.2
STH2026001
180
181
1
0.343
STH2026001
181
182
1
0.509
STH2026001
182
183
1
0.592
STH2026001
183
184
1
0.057
STH2026001
184
185
1
0.101
STH2026001
185
186
1
0.061
STH2026001
186
187
1
0.069
STH2026001
187
188
1
0.057
STH2026001
188
189
1
0.057
STH2026001
189
190
1
0.074
STH2026001
190
191
1
0.075
STH2026001
191
192
1
0.048
STH2026001
192
193
1
0.087
STH2026001
193
194
1
0.038
STH2026001
194
195
1
0.034
STH2026001
195
196
1
0.053
STH2026001
196
197
1
0.027
STH2026001
197
198
1
0.027
STH2026001
198
199
1
0.016
STH2026001
199
200
1
0.016
STH2026001
200
201
1
0.043
STH2026001
201
202
1
0.039
STH2026001
202
203
1
0.177
STH2026001
203
204
1
0.036
STH2026001
204
205
1
0.034
STH2026001
205
206.08
1.08
0.133
STH2026001
223
224
1
0.009
STH2026001
224
225
1
0.03
STH2026001
225
226
1
0.05
STH2026001
226
227
1
0.011
STH2026002
29
30
1
0.023
STH2026002
30
30.53
0.53
0.035
STH2026002
30.53
31
0.47
0.273
STH2026002
31
32.05
1.05
0.083
STH2026002
32.05
33
0.95
0.035
STH2026002
47
48
1
0.005
STH2026002
48
49
1
0.006
STH2026002
49
49.75
0.75
0.019
STH2026002
49.75
51
1.25
0.052
STH2026002
51
51.5
0.5
0.036
STH2026002
51.5
52
0.5
0.067
STH2026002
52
53
1
0.012
STH2026002
65
66.45
1.45
0.004
STH2026002
66.45
67.25
0.8
0.016
STH2026002
67.25
68
0.75
0.03
STH2026002
123
124
1
0.039
STH2026002
124
125
1
0.033
STH2026002
125
126
1
0.087
STH2026002
126
127
1
0.041
STH2026002
127
128
1
0.04
STH2026002
128
129
1
0.023
STH2026002
129
130
1
0.023
STH2026002
130
131
1
0.022
STH2026002
131
132
1
0.018
STH2026002
132
133
1
0.031
STH2026002
133
134
1
0.008
STH2026002
134
135
1
0.009
STH2026002
135
136
1
0.016
STH2026002
136
137
1
0.033
STH2026002
137
138
1
0.026
STH2026002
138
139
1
0.015
STH2026002
139
140
1
0.009
STH2026002
140
141
1
0.13
STH2026002
141
142
1
0.049
STH2026002
142
143
1
0.039
STH2026002
143
143.78
0.78
0.448
STH2026002
150.86
152
1.14
0.073
STH2026002
152
153
1
0.008
STH2026002
153
154
1
0.005
STH2026002
154
155
1
0.004
STH2026002
155
156
1
0.007
STH2026002
156
157
1
0.012
STH2026002
157
158
1
0.001
STH2026002
158
159
1
0.002
STH2026002
159
160
1
0.003
STH2026002
160
161
1
0.001
STH2026002
161
162
1
0.01
STH2026002
162
163
1
0.007
STH2026002
163
164
1
0.009
STH2026002
164
165
1
0.018
STH2026002
165
166
1
0.018
STH2026002
166
167
1
0.009
STH2026002
167
168
1
0.009
STH2026002
168
169
1
0.002
STH2026002
169
170
1
0.002
STH2026002
170
171
1
0.018
STH2026002
171
172.07
1.07
0.013
STH2026002
190.45
191
0.55
0.013
STH2026002
191
192
1
0.039
STH2026002
192
193
1
0.038
STH2026002
193
194
1
0.137
STH2026002
194
195
1
0.041
STH2026002
195
196.25
1.25
0.027
STH2026002
199
200
1
0.013
STH2026002
200
201
1
0.059
STH2026002
201
202
1
0.025
STH2026002
227
228
1
0.002
STH2026002
228
229
1
0.003
STH2026002
229
230
1
0.005
STH2026002
230
231.15
1.15
0.004
STH2026003
84
85
1
0.027
STH2026003
85
86
1
0.013
STH2026003
86
87
1
0.018
STH2026003
87
88
1
0.01
STH2026003
88
89
1
0.008
STH2026003
89
90
1
0.007
STH2026003
90
91
1
0.035
STH2026003
91
92
1
0.008
STH2026003
92
93
1
0.007
STH2026003
111
112
1
0.019
STH2026003
112
113
1
0.014
STH2026003
113
114
1
0.015
STH2026003
114
115
1
0.005
STH2026003
115
116
1
0.005
STH2026003
116
117
1
0.004
STH2026003
117
118
1
0.008
STH2026003
160
161
1
0.014
STH2026003
161
162
1
0.009
STH2026003
162
163
1
0.02
STH2026003
192
193
1
0.005
STH2026003
193
194
1
0.006
STH2026003
194
194.45
0.45
0.004
STH2026003
194.45
195.7
1.25
0.017
STH2026003
195.7
197.25
1.55
0.038
STH2026003
197.25
198.25
1
0.157
STH2026003
198.25
199
0.75
0.622
STH2026003
199
200
1
0.069
STH2026003
200
201
1
0.061
STH2026003
201
202
1
0.03
STH2026003
202
203
1
0.023
STH2026003
203
204
1
0.015
STH2026003
204
205
1
0.064
STH2026003
205
206
1
0.028
STH2026003
206
207
1
0.04
STH2026003
207
208
1
0.056
STH2026003
208
209
1
0.065
STH2026003
209
210
1
0.151
STH2026003
210
211
1
0.048
STH2026003
211
212
1
0.113
STH2026003
212
213
1
0.14
STH2026003
213
214
1
0.178
STH2026003
214
215
1
0.107
STH2026003
215
216
1
0.136
STH2026003
216
217
1
0.261
STH2026003
217
218
1
0.182
STH2026003
218
219
1
0.267
STH2026003
219
220
1
0.563
STH2026003
220
221
1
0.712
STH2026003
221
222
1
0.581
STH2026003
222
223
1
4.99
STH2026003
223
224.1
1.1
1.93
STH2026003
224.1
225
0.9
0.273
STH2026003
225
226
1
0.077
STH2026003
226
227
1
0.083
STH2026003
227
227.9
0.9
0.172
STH2026003
244.2
245
0.8
0.122
STH2026003
245
246
1
0.232
STH2026003
246
247
1
0.034
STH2026003
247
248
1
0.125
STH2026003
248
249
1
0.066
STH2026003
249
250
1
0.304
STH2026003
250
251
1
0.377
STH2026003
251
252
1
0.149
STH2026003
252
253
1
0.063
STH2026003
253
254
1
0.065
STH2026003
254
255
1
0.056
STH2026003
255
256
1
0.079
STH2026003
256
257
1
0.08
STH2026003
257
258
1
0.187
STH2026003
258
259
1
0.082
STH2026003
259
260
1
0.096
STH2026003
260
261
1
0.052
STH2026003
261
262
1
0.048
STH2026003
262
263
1
0.201
STH2026003
263
264
1
0.804
STH2026003
264
265
1
0.522
STH2026003
265
266
1
0.434
STH2026003
266
267
1
0.494
STH2026003
267
268
1
0.527
STH2026003
268
269
1
0.15
STH2026003
269
270
1
0.118
STH2026004
21
22
1
0.136
STH2026004
22
23
1
0.04
STH2026004
23
24
1
0.01
STH2026004
44.85
46
1.15
0.135
STH2026004
46
47
1
0.027
STH2026004
47
48
1
0.006
STH2026004
149
150
1
0.005
STH2026004
150
151
1
0.003
STH2026004
151
152
1
0.003
STH2026004
152
153
1
0.003
STH2026004
182
183
1
0.011
STH2026004
183
184.5
1.5
0.011
STH2026004
184.5
185
0.5
0.032
STH2026004
185
185.35
0.35
0.058
STH2026004
185.35
186
0.65
0.021
STH2026004
186
186.9
0.9
0.028
STH2026004
186.9
187.39
0.49
0.066
STH2026004
187.39
188
0.61
0.014
STH2026004
188
189
1
0.021
STH2026004
189
190
1
0.037
STH2026004
239.2
240
0.8
0.036
STH2026004
240
241
1
0.164
STH2026004
241
242
1
0.163
STH2026004
242
243
1
1.04
STH2026004
243
244
1
1.875
STH2026004
244
245
1
1.19
STH2026004
245
246
1
0.538
STH2026004
246
247
1
0.079
STH2026004
247
248
1
0.029
STH2026004
248
249
1
0.028
STH2026004
249
250
1
0.019
STH2026004
250
251
1
0.035
STH2026004
251
252
1
0.025
STH2026004
252
253
1
0.06
STH2026004
253
254
1
0.03
STH2026004
254
255
1
1.165
STH2026004
255
256
1
0.923
STH2026004
256
257
1
0.033
STH2026004
257
258
1
0.108
STH2026004
258
259
1
0.013
STH2026004
259
260
1
0.042
STH2026004
260
261
1
0.02
STH2026004
261
262
1
0.115
STH2026004
262
263
1
0.677
STH2026004
263
263.42
0.42
0.556
STH2026004
273.6
275
1.4
0.053
STH2026004
275
276
1
0.6
STH2026004
276
277
1
1.565
STH2026004
277
278
1
1.665
STH2026004
278
279
1
0.838
STH2026004
279
280
1
0.366
STH2026004
280
281
1
0.249
STH2026004
281
282
1
0.141
STH2026005
50
51
1
0.004
STH2026005
51
52
1
0.006
STH2026005
52
53
1
0.006
STH2026005
53
54.1
1.1
0.005
STH2026005
54.1
55
0.9
0.006
STH2026005
55
56
1
0.008
STH2026005
56
57
1
0.009
STH2026005
71
72
1
0.02
STH2026005
72
72.6
0.6
0.025
STH2026005
72.6
73.1
0.5
0.029
STH2026005
73.1
73.8
0.7
0.445
STH2026005
73.8
75.1
1.3
0.068
STH2026005
75.1
76
0.9
0.171
STH2026005
76
77
1
0.158
STH2026005
77
78
1
0.018
STH2026005
78
79
1
0.004
STH2026005
79
80
1
0.003
STH2026005
175.6
176
0.4
0.052
STH2026005
176
177
1
0.04
STH2026005
177
178
1
0.17
STH2026005
178
179
1
0.237
STH2026005
179
180
1
0.213
STH2026005
180
181
1
0.103
STH2026005
181
182
1
0.055
STH2026005
182
183
1
0.374
STH2026005
183
184
1
0.243
STH2026005
184
185
1
0.113
STH2026005
185
186
1
0.379
STH2026005
186
187
1
0.037
STH2026005
187
188
1
0.127
STH2026005
188
189
1
0.041
STH2026005
189
190
1
0.024
STH2026005
190
191
1
0.016
STH2026005
191
192
1
0.026
STH2026005
192
193
1
0.054
STH2026005
193
194
1
0.034
STH2026005
194
195
1
0.238

Appendix 2. Method and supporting data

Technical detail. Not required in order to understand the news above.

Significant intercepts

The reported intersections are significant intercepts selected by the Competent Person. No fixed cut-off grade has been applied. The average grade for each intersection is weighted by sample length and reported to two decimal places. Rows marked "incl." are parts of higher grade within the intersection.

Sampling, assay method and quality control

The description below applies to all seven holes. The drill core is NQ diameter, a standard size giving a core 47.6 millimetres across. The core has been split in half, one half assayed and the other retained for future reference. Sample intervals are one metre, shorter where lithological contacts or alteration boundaries are crossed, so that a sample does not mix different mineral compositions. Sampling has been directed at logged and visible mineralisation.

The assays are carried out by ALS in Piteå, which holds the contract. Core cutting, sample preparation and part of the sample work are carried out in Piteå, while the concluding part of the assays is carried out at the ALS laboratory in Ireland. Gold has been determined by ALS method AU-ICP21, fire assay on a 30 gram sample with an ICP-AES finish. Thirty-four elements have been analysed by method ME-ICP61 in the 2026 programme. The ALS laboratory in Piteå is accredited to ISO 17025 through Swedac.

Quality control samples in the form of blanks, duplicates and certified reference material have been inserted at a rate of 12.5 per cent in the 2026 programme, that is approximately every eighth sample. Duplicates are quarter core. The certified reference material is supplied by OREAS. All assays have been reviewed for analytical accuracy and precision. The Competent Person considers the assay data to be reliable for the reporting given here.

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