LONDON, United Kingdom, Oct. 12, 2015 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore" or "the Company") is pleased to report the completion of a Mineral Potential Investigation on the Junior Lake Nickel-Copper-PGE Project, Ontario, Canada. Mineral Potential Investigation: Landore retained the services of RPA Inc. (RPA) independent engineers of [...]
LONDON, United Kingdom, Sept. 21, 2015 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore" or "the Company") is pleased to report the completion of a Geophysics Review of the Junior Lake Nickel-Copper-PGE Property, Ontario, Canada. Geophysics Review: Landore retained the services of Alan King M.Sc., Professional Geophysicist, an independent [...]
LONDON, July 7, 2015 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore" or "the Company") is pleased to report commencement of an independent review of the Junior Lake Nickel-Copper-PGE Property, Ontario, Canada. Corporate Strategy: Landore is focussing on the highly prospective Junior Lake nickel-copper-cobalt-PGEs project, with the aim of [...]
LONDON, April 13, 2015 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore Resources" or "the Company") is pleased to report drilling results from the winter exploration campaign on the Junior Lake Nickel-Copper-PGE Property, Ontario, Canada. Alpha Zone: The recently completed drilling campaign at the B4-7 nickel-copper cobalt-PGEs deposit has [...]
(AIM Ticker: LND.L) LONDON, UK, Jan. 29 2015 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore Resources" or "the Company") today announces the commencement of the winter exploration campaign on the Junior Lake Nickel-Copper-PGE Property, Ontario, Canada. A review of existing data has established that the Alpha Zone immediately adjacent to the [...]
Landore Resources today announces a drilling update on the Junior Lake Nickel-Copper-PGE Property. Highlights: The recently completed drill programme, targeting several prospective areas identified by geophysics, has successfully intersected highly promising mineralisation including: A down dip extension of the main B4-7 massive sulphide zone 140 [...]
Landore Resources today announces a drilling update on the B4-7 East area of the Junior Lake Nickel-Copper Property. Highlights: A preliminary drill programme, consisting of 16 drill holes (0414-477 to 0414-492) for 4,201 metres, has been completed over the prospective area from the B4-7 Nickel-Copper-Cobalt-PGEs deposit eastwards for 1,500 metres [...]
Landore Resources is pleased to announce it has raised, through its broker Hume Capital Securities plc, gross proceeds of £2.6 million through an oversubscribed placing of 36,600,000 new ordinary shares of 1p each in the Company and subscription of 67,400,000 new ordinary shares of 1p each in the Company each at a price of 2.5 pence per New [...]
(AIM Ticker: LND.L) LONDON, April 23, 2014 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore Resources" or "the Company") today announces new potential nickel sulphide mineralization zones identified on the Junior Lake Nickel-Copper Property, Ontario, Canada. Highlights: DC Resistivity results from the recently completed 3D DCIP + MT ground [...]
(AIM Ticker: LND.L) LONDON, UK, Feb. 18, 2014 /CNW/ - Landore Resources Ltd. (AIM:LND) ("Landore Resources" or "the Company") today announces the completion of a 3D DCIP + MT geophysics survey on the Junior Lake Property, Ontario, Canada. Highlights: Landore Resources has completed a deep-penetrating Quantec ORION 3D "Direct Current Induced [...]
Landore Resources today announces the commencement of a 3D DCIP + MT geophysics survey on the Junior Lake Property. Highlights: Landore has initiated a deep-penetrating Quantec ORION 3D "Direct Current Induced Polarization" and "Magnetotellurics" (DCIP + MT) geophysical survey over the highly prospective B4-7 and VW Nickel Trends. The survey is [...]
LONDON, United Kingdom, Jan. 13, 2014 /CNW/ - Landore Resources Plc (AIM:LND) ("Landore Resources" or "the Company") today announced a geophysics update on the Junior Lake Property, Ontario, Canada. Highlights: Three significant near-surface anomalies with a combined length of 1,500 metres and up to 35 metres in width have been identified by [...]