1460739946-627138d9-6173-42d6-a4d6-a35d2dadd4a2

1. An electronic device communicatively coupled to at least one video camera during a video conference, comprising:
a touchscreen display comprising video conference participant representations displayed on the touchscreen display;
a haptics feedback system integrated into the touchscreen display and responsive to a user’s touching the video conference participant representations displayed on the touchscreen display; and
a speech-to-text controller for converting video conference participants speech into text and creating an identification tag for each video conference participant;
an ongoing commentary controller that provides feedback on non-verbal cues about the video conference participants.
2. The electronic device according to claim 1 further comprising a means for prioritizing the non-verbal cues feedback.
3. The electronic device according to claim 1 further comprising partitioned regions on the touchscreen to include at least a first region displaying local video conference participants, a second region displaying non-local video conference participants, a third region displaying a speaking video conference participant, and a fourth region displaying feedback and commentary on the non-verbal cues about feedback, wherein the non-verbal cues include audio or Braille tags.
4. The electronic device according to claim 1, wherein the fourth region displays commentary on non-verbal cues corresponding to speaking video conference participants and non-speaking video conference participants.
5. The electronic device according to claim 1, wherein the third region is split into two display windows when two video conference participants are speaking to one another.
6. A method for describing video conference participants on a touchscreen display, comprising the steps of:
monitoring and recording video conference participants as they join a video conference;
identifying and categorizing video conference participants;
displaying the identified and categorized video conference participants within a first partitioned display window;
displaying video conference participant’s conversation within a second partitioned display window; and
displaying, via audio or Braille tags, feedback and commentary on non-verbal cues of the video conference participant.
7. The method according to claim 6, further comprising the step of prioritizing the feedback and commentary on the non-verbal cues of the video conference participant.
8. The method according to claim 6, wherein the second partitioned display window is divided when at least two participants are speaking to one another.
9. The method according to claim 6, further comprising the step of displaying commentary on non-verbal cues corresponding to speaking video conference participants and non-speaking video conference participants.
10. A non-transitory machine readable storage device, having stored thereon a computer program that includes a plurality of code sections comprising:
code for monitoring and recording video conference participants as they join a video conference;
code for identifying and categorizing video conference participants;
code for displaying the identified and categorized video conference participants within a first partitioned display window;
code for displaying video conference participant’s conversation within a second partitioned display window; and
code for displaying, via audio or Braille tags, feedback and commentary on non-verbal cues of the video conference participant.
11. The non-transitory machine readable storage device claimed in claim 10, further comprising:
code for prioritizing the feedback and commentary on the non-verbal cues of the video conference participant.
12. The non-transitory machine readable storage device claimed in claim 10, further comprising:
code for displaying commentary on non-verbal cues corresponding to speaking video conference participants and non-speaking video conference participants.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A catalytic process of carbonaceous matter liquid or gas conversion to a mixture containing hydrogen H2 and the carbon monoxide CO, the mixture accompanied by methane CH4 and ethylene C2H4, the conversion achieved by a partial oxidization of the carbonaceous matter with the elementary oxygen O2 content in a gas combustive added to the carbonaceous matter, the process comprising the steps of:
the carbonaceous matter and gas combustive entering in contact with a strong catalytic refractory for which the point fusion point exceeds 1250\xb0 C. and comprising dispersed nickel, metallic and oxidized, wherein the partial oxidization takes place in a temperature between 600\xb0 C. and 1000\xb0 C.
2. A device for achieving the conversion according to claim 1, the device comprising two zones in series in relation to a flux of reagents entering by a tube and turning successively into the mixture, the first zone sheltering an electric discharge and the second zone filled by a strong catalytic refractory wherein a point of fusion either passes 1250\xb0 C., the refractory comprising the dispersed nickel, metallic oxidized, and the filling letting pass through it and in contact with the flux of reagents or of products.
3. The process of claim 1, wherein the carbonaceous matter is liquid or gaseous, has water or steam initially present or added, and is of a fossil or renewable origin.
4. The process of claim 1, wherein the gas combustive containing O2, and comprising air, air enriched by the oxygen or the technical quality oxygen, and the gas combustive further comprising steam.
5. The process of claim 1, wherein the catalytic zone is filled by a refractory porous solid for which the point of fusion passes 1250\xb0 C., the refractory comprising oxides of nickel dispersed, these oxides of nickel being put down to the surface of the refractory previously and inside by an impregnation of this in a solution concentrated of a compound of nickel followed by calcinations in air, what transforms this initial compound of nickel in oxides of nickel, wherein such a filling of the catalytic zone is in intimate contact with the flux of reagents while letting pass the aforesaid flux at the same time freely by the filling.
6. The process of claim 1, wherein a catalytic partial oxidization that starts with a temperature of between 600 and 1000\xb0 C., and in achieving the temperature, at least in the first layer of the catalytic filling of the zone, the one in contact with the zone to electric discharges, wherein this contact starts the partial oxidization of a carbonaceous matter.
7. The process of claim 1, wherein the complete stop of the catalytic conversion of a fuel comprising: the total cut off of the fuel flow, follow-up immediately by the one of the electric power, then by a strong reduction of the combustive flow that makes therefore oxidize all compounds of nickel contents progressively in the zone in oxides of NiO nickel and Ni2O3.
8. The process of claim 1, wherein the putting on hold the catalytic conversion of a fuel is comprising: a reduction of the fuel flow, follow-up immediately by the total cut off of the electric power, then by a strong reduction of the combustive flow until to reach a sufficient level to maintain a total combustion of fuel.
9. The process of claim 7, wherein the total stop or hold of the conversion of fuel, comprising a reduced flux of combustive passing by the zone of discharge filled by a refractory catalytic nickel basis.
10. The process of claim 1, wherein the optimal composition of exit gas is followed while observing a diffusion flame in air, this flame being formed while taking continually this gas, comprising the optimal partial oxidization of a fuel appears by a steady flame, either almost-invisible either blue, presenting a slightly sallow superior extremity, what permits to adjust easily mass combustive fuel in order to avoid a no optimal conversion of fuel, appearing by an unsteady or non-existent flame when this report is too big or by a steady flame but yellow when the aforesaid report is too big, indicating a process of deposition of the carbon or the soot then on the filling of the catalytic zone.