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Torq Resources Inc V.TORQ

Alternate Symbol(s):  TRBMF

Torq Resources Inc. is a Canada-based copper and gold exploration company with a portfolio of holdings in Chile. Its projects include Santa Cecilia, Margarita and Andrea. The Santa Cecilia project is located approximately 100 kilometers (km) east of the city of Copiapo, Chile, in the southern region of the Maricunga belt and immediately north of the El Indio belt. The property covers over 3,250 hectares (ha) and is immediately adjacent to the Norte Abierto project. The Margarita Iron-Oxide-Copper-Gold (IOCG) project is situated in Chile, over 65 km north of the city of Copiapo. The Margarita project is comprised of approximately 1,245 ha. The Andrea copper porphyry project is situated in northern Chile, over 100 km east of the city of La Serena. The property is located at the western margin of the Miocene aged El Indio belt that hosts the El Indio and Pascua Lama epithermal gold and silver deposits. The Andrea project covers over 1,200 ha at elevations ranging from 3900-4900 meters.


TSXV:TORQ - Post by User

Bullboard Posts
Post by curlyloubison Feb 15, 2008 3:41pm
208 Views
Post# 14381639

This makes more sense!

This makes more sense! A system of radio reception for suppressed-carrier systems of radiotelephony, in which the receiver generates a voltage having the original carrier frequency and combines it with the incoming signal. Also known as zero-beat reception. or:Homodyne detection is a method of detecting frequency-modulated radiation by non-linear mixing with radiation of a reference frequency, the same principle as for heterodyne detection. or: In optical interferometry, homodyne signifies that the reference radiation (the local oscillator) is derived from the same source as the signal before the modulating process. For example, in a laser scattering measurement, the laser beam is split into two parts. One is the local oscillator and the other is sent to the system to be probed. The scattered light is then mixed with the local oscillator on the detector. This arrangement has the advantage of being insensitive to fluctuations in the frequency of the laser. Usually the scattered beam will be weak, in which case the (nearly) steady component of the detector output is a good measure of the instantaneous local oscillator intensity and therefore can be used to compensate for any fluctuations in the intensity of the laser. Sometimes the local oscillator is frequency-shifted to allow easier signal processing or to improve the resolution of low-frequency features.[citation needed] In radio technology, the distinction is not the source of the local oscillator, but the frequency used. In heterodyne detection, the local oscillator is frequency-shifted, while in homodyne detection it has the same frequency as the radiation to be detected. See direct conversion receiver.
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