"TX/RX schedules" tab ====================== The **TX/RX schedules** tab contains the sheets with the coordinates of the generated electrodes, with details on n-poles and measurements pseudo-plots. .. _fig_tab_TX_RX: .. figure:: tab_TX_RX.png :scale: 50% :alt: Tab with sensor properties and pseudo-plots. :align: center     Tab with sensor properties and pseudo-plots.     The tab consists of a topmost section with the toggle commands for selecting schedules to be displayed and a lower portion hosting the graphs. Transceivers schedule ---------------------- .. figure:: tab_TRX.png :scale: 70% :alt: List with the properties of the transceivers. :align: center     List with the properties of the transceivers. The list of the transceivers contains information on the box electrodes: * Multisource box identifier. * Electrode number (1, 2 or 3). * X, Y and Z UTM coordinates in meters. * Geographic coordinates: longitude and latitude in degrees and decimals of degree.     TX multi-poles schedule ------------------------ .. figure:: tab_TX.png :scale: 70% :alt: List with the properties of the TX multi-poles. :align: center     List with the properties of the TX multi-poles. The list of TX multi-poles contains information on the TX combinations: * Identifiers of the group of TX boxes. * TX+ (A) box electrode. * TX- (B) box electrode.     Dataset schedule --------------------- The list of measurements contains information on the total set of TX/RX combinations. Each row displays: * The TX boxes combinations. * The electrodes of each box working as TX+ (A) and TX- (B). * The RX box. * The electrodes of the RX box working as M and N. * The **maximum depth of investigation** of the n-pole (in meters). * The depth at which the **maximum sensitivity** of the n-pole is recorded (in meters). * The **K geometric factor** of the n-pole. * The expected **Vmn signal** (mV). * The value of the **injected current** at TX (mA) that produces the potential Vmn at the receiving dipole. * The **apparent resistivity** (Ohm m) for the measurement. .. figure:: tab_TX_RX.png :scale: 50% :alt: List with the properties of n-poles. :align: center     List with the properties of n-poles. **The list of n-poles is the only one that has interactive features**: selecting one table row allows **to highlight the measurement** in the pseudo-plot view: only the electrodes of the n-pole are colored (red for TX, green for RX) and the measurement is emphasized by a highlighter circle. Remaining electrodes and measurements are represented in transparency. In addition, if the **Display sensitivity plot** checkbox is checked, the sensitivity plot for that n-pole is shown. To remove the transparency of the quadrupoles from the graphs click on the command **Refresh view** of :numref:`fig_update`. .. _fig_update: .. figure:: update_all_icon.png :scale: 100% :alt: Refresh view command. :align: center     Refresh view command. The XY, YZ, XZ buttons allow to define the views on each of the three planes of the space. Pseudo-plot ----------- .. figure:: tab_TX_RX_plots2.png :scale: 70% :alt: Example of pseudo-plot. :align: center     Example of pseudo-plot. The pseudo-plot sumarizes the salient features of n-poles in terms of coverage, depth of investigation and signal strength. The plot displays the position of the sensors. The n-poles (colored points) are defined on the basis of the graphic properties described below. * On the xy plane, then-pole is conventionally placed at the **center of the RX dipole**. * The n-pole is placed at the z depth corresponding to the **maximum depth of investigation**. * The color scale assigned to the measurements is the one defined by the range of **absolute values ​​of the Vmn** signal. Sensitivity plot for the quadrupole ----------------------------------- .. figure:: sensitivity.png :scale: 70% :alt: Example of sensitivity plot. :align: center     Example of sensitivity plot. This plot shows the behavior of the **sensitivity of n-pole with depth**. This is the function that is integrated for the calculation of the maximum depth of investigation.