1460718925-56e64cdb-2af2-4b86-88a8-efd137ec1008

1. A method comprising:
determining that a plurality of modifications are made within a collaborative environment to an area of an image, wherein the modifications are initiated by a plurality of members of a social network service;
retrieving a conflict rule specified by the social network service; and
selecting one of the modifications based on the conflict rule.
2. A method of claim 1, wherein the modifications are made according to a collaborative protocol that comprises,
a cooperation layer configured to synchronize the collaborative environment among a plurality of devices corresponding to the plurality of members; and
a communication layer configured to cause, at least in part, transmission of messages to the devices to support the synchronization.
3. A method of claim 2, wherein the collaborative protocol further comprises a representation layer configured to render a representation of the collaborative environment.
4. A method of claim 1, further comprising:
detecting that one of the plurality of modifications is an active modification;
associating the area with the initiating member of the one modification as being actively used by the initiating member; and
causing, at least in part, notifying at least a portion of the plurality of members of an activity performed on the area.
5. A method of claim 1, further comprising:
determining a social role rating of each of the members;
determining an activity level rating of each of the members;
determining a priority rating of each of the members based on the social role rating and the activity level rating, wherein the conflict rule specifies the determined priority rating for use in the selection of the one modification.
6. A method of claim 1, wherein the conflict rule specifies a threshold vote value for use in the selection of the one modification, the method further comprising:
requesting a vote input from devices associated with the plurality of members; and
comparing the vote input with the threshold vote value.
7. A method of claim 1, further comprising:
causing, at least in part, presentation of the selected modification on devices of a plurality of users that include the members andor a user other than the members.
8. An apparatus comprising:
at least one processor; and
at least one memory including computer program code,
the at least one memory and the computer program code configured to, with the at least one processor, cause the apparatus to perform at least the following,
determine that a plurality of modifications are made within a collaborative environment to an area of an image, wherein the modifications are initiated by a plurality of members of a social network service;
retrieve a conflict rule specified by the social network service; and
select one of the modifications based on the conflict rule.
9. An apparatus of claim 8, wherein the modifications are made according to a collaborative protocol that comprises,
a cooperation layer configured to synchronize the collaborative environment among a plurality of devices corresponding to the plurality of members; and
a communication layer configured to cause, at least in part, transmission of messages to the devices to support the synchronization.
10. An apparatus of claim 9, wherein the collaborative protocol further comprises a representation layer configured to render a representation of the collaborative environment.
11. An apparatus of claim 8, wherein the apparatus is further caused, at least in part, to:
detect that one of the plurality of modifications is an active modification;
associate the area with the initiating member of the one modification as being actively used by the initiating member; and
cause, at least in part, notifying at least a portion of the plurality of members of an activity performed on the area.
12. An apparatus of claim 8, wherein the apparatus is further caused to perform at least the following,
determine a social role rating of each of the members;
determine an activity level rating of each of the members;
determine a priority rating of each of the members based on the social role rating and the activity level rating, wherein the conflict rule specifies the determined priority rating for use in the selection of the one modification.
13. An apparatus of claim 8, wherein the conflict rule specifies a threshold vote value for use in the selection of the one modification, and the apparatus is further caused to perform at least the following,
request a vote input from devices associated with the plurality of members; and
compare the vote input with threshold vote value.
14. An apparatus of claim 8, wherein the apparatus is further caused, at least in part, to:
present the selected modification on devices of a plurality of users that include the members andor a user other than the members.
15. A computer-readable storage medium carrying one or more sequences of one or more instructions which, when executed by one or more processors, cause an apparatus to at least perform the following steps:
determining that a plurality of modifications are made within a collaborative environment to an area of an image, wherein the modifications are initiated by a plurality of members of a social network service;
retrieving a conflict rule specified by the social network service; and
selecting one of the modifications based on the conflict rule.
16. A computer-readable storage medium of claim 15, wherein the modifications are made according to a collaborative protocol that comprises,
a cooperation layer configured to synchronize the collaborative environment among a plurality of devices corresponding to the plurality of members; and
a communication layer configured to cause, at least in part, transmission of messages to the devices to support the synchronization.
17. A computer-readable storage medium of claim 16, wherein the collaborative protocol further comprises a representation layer configured to render a representation of the collaborative environment.
18. A computer-readable storage medium of claim 15, wherein the apparatus is caused, at least in part, to further perform:
detecting that one of the plurality of modifications is an active modification;
associating the area with the initiating member of the one modification as being actively used by the initiating member; and
causing, at least in part, notifying at least a portion of the plurality of members of an activity performed on the area.
19. A computer-readable storage medium of claim 1, wherein the apparatus is further caused to perform at least the following,
determining a social role rating of each of the members;
determining an activity level rating of each of the members;
determining a priority rating of each of the members based on the social role rating and the activity level rating, wherein the conflict rule specifies the determined priority rating for use in the selection of the one modification.
20. A computer-readable storage medium of claim 1, wherein the conflict rule specifies a threshold vote value for use in the selection of the one modification, and the apparatus is further caused to perform at least the following,
requesting a vote input from devices associated with the plurality of members; and
comparing the vote input with the threshold vote value.
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 gel electrolyte comprising a cyclic sulfonic acid ester represented by the general formula (1):
wherein in the general formula (1), R1 and R2 are each independently a hydrogen atom, an alkyl group having 1 to 5 carbon atoms, a halogen group or an amino group with the proviso that R1 and R2 are not hydrogen atoms at the same time; R3 represents a linkage group selected from the group consisting of an alkylene group having 1 to 5 carbon atoms, a carbonyl group, a sulfonyl group, a fluoroalkylene group having 1 to 6 carbon atoms, and a divalent group having 2 to 6 carbon atoms in which alkylene units or fluoroalkylene units are bonded through an ether group.
2. The gel electrolyte according to claim 1, wherein R1 in the general formula (1) is a hydrogen atom.
3. The gel electrolyte according to claim 1, wherein in the general formula (1), R1 is a hydrogen atom and R3 is \u2014(CH2)n\u2014 or \u2014(CF2)n\u2014 (n=1, 2, 3, 4 or 5).
4. The gel electrolyte according to claim 1, wherein in the general formula (1), R1 is a hydrogen atom, R2 is \u2014CmH2m\u22121 (m=1, 2 or 3) and R3 is \u2014CH2\u2014.
5. The gel electrolyte according to claim 1, further comprising a compound having one or more sulfonyl groups in addition to the cyclic sulfonic acid ester represented by the general formula (1).
6. The gel electrolyte according to claim 5, comprising, as the compound having a sulfonyl group, a sultone compound represented by the following general formula (2):
wherein in the general formula (2), n is an integer of 0 or more and 2 or less; and R1 to R6 are each independently selected from the group consisting of a hydrogen atom, an alkyl group having 1 or more and 12 or less carbon atoms, a cycloalkyl group having 3 or more and 6 or less carbon atoms and an aryl group having 6 or more and 12 or less carbon atoms.
7. The gel electrolyte according to claim 1, wherein the cyclic sulfonic acid ester represented by the general formula (1) is included in a content of 0.005% by mass or more and 10% by mass or less in relation to the total mass of the gel electrolyte.
8. The gel electrolyte according to claim 1, further comprising a vinylene carbonate or a derivative thereof.
9. The gel electrolyte according to claim 1, wherein the polymer constituting the gel electrolyte comprises one or two or more selected from the group consisting of poly(meth)acrylate, polyvinylidene fluoride, polyacrylonitrile and polyethylene oxide.
10. The gel electrolyte according to claim 1, comprising, as a nonaqueous solvent, one or more solvents selected from the group consisting of cyclic carbonates, linear carbonates, aliphatic carboxylic acid esters, \u03b3-lactones, cyclic ethers, linear ethers and the fluorine derivatives of these compounds.
11. The gel electrolyte according to claim 1, comprising, as a lithium salt, one or more materials selected from the group consisting of LiPF6, LiBF4, LiAsF6, LiSbF6, LiClO4, LiAlCl4, and LiN(CnF2n+1SO2)(CmF2m+1SO2) (n and m are each independently a natural number).
12. A polymer secondary battery comprising the gel electrolyte according to claim 1 in a secondary battery comprising at least a positive electrode and a negative electrode.
13. The polymer secondary battery according to claim 12, comprising, as a positive electrode active material, a lithium-containing composite oxide.
14. The polymer secondary battery according to claim 12, comprising, as a negative electrode active material, one or more materials selected from the group consisting of a material capable of occluding and releasing lithium, lithium metal, a metal material capable of forming an alloy with lithium and an oxide material.
15. The polymer secondary battery according to claim 14, comprising, as the negative electrode active material, a carbon material.
16. The polymer secondary battery according to claim 15, wherein the carbon material is graphite.
17. The polymer secondary battery according to claim 15, wherein the carbon material is amorphous carbon.
18. The polymer secondary battery according to claim 12, comprising a film outer package.
19. A battery for a vehicle comprising the secondary battery according to claim 12.
20. A vehicle using the battery for a vehicle according to claim 19.

1460718916-c06493a0-2034-4567-8689-4b475431d629

1. A light guide comprising:
a guiding layer having a light emitting surface, a bottom side opposite the light emitting surface and a light incident surface connecting the light emitting surface with bottom side; and
a reflective layer formed on the bottom side of the guiding layer;
wherein, the reflecting layer contains polyester polyols, isocyanic aci, butyl acetate and reflective powder.
2. The light guide of claim 1, wherein, weight percentages in the reflective layer is substantially 15%-30% polyester polyols and isocyanic aci; 50% butyl acetate; and 20%-35% reflective powder.
3. The light guide of claim 2, wherein, the weight percentages in the reflective layer is substantially 15% polyester polyols and isocyanic aci; 50% butyl acetate; and 35% reflective powder.
4. The light guide of claim 1, further comprising a plurality of micro-structures formed on the bottom surface and covered by the reflecting layer.
5. A light guide comprising:
a guiding layer having a light emitting surface, a bottom side opposite the light emitting surface and a light incident surface connecting the light emitting surface with bottom side; and
a reflective layer formed on the bottom side of the guiding layer;
wherein, the reflecting layer contains one or more curing agents and reflective powder.
6. The light guide of claim 5, wherein the one or more curing agents contains acrylic monomer, poly acrylate oligomer, polyester acrylic modified polyester oligomer and a photo initiator.
7. The light guide of claim 6, wherein weight percentages in the one or more curing agents is substantially 50% acrylic monomer, 30% polyurethane acrylate oligomer, 15% polyester acrylic modified polyester oligomer, and 5% photo initiator.
8. The light guide of claim 5, wherein weight percentages in the reflecting layer is substantially 80% curing agents and 20% reflective power; or 72% curing agents and 28% reflective power; or 70% curing agents and 30% reflective power; or 65% curing agents and 35% reflective power.
9. The light guide of claim 5, further comprising a plurality of micro-structures formed on the bottom surface and covered by the reflecting layer.
10. A manufacturing method of a light guide, comprising steps of:
providing a guiding layer comprising a light emitting surface and a bottom surface opposite to the light emitting surface;
providing a compound containing polyester polyols, isocyanic aci, butyl acetate and reflective powder;
coating the compound on the bottom surface; and
heating to harden the compound to form a reflecting layer adhered to the bottom surface.
11. The manufacturing method of claim 10, wherein the bottom surface comprising micro-structures covered by the reflecting layer.
12. The manufacturing method of claim 10, wherein a weight percentage between the sum of the polyester polyols and the isocyanic aci, the butyl acetate, and the reflective powder is 15%-30%:50%:20%-35%.
13. The manufacturing method of claim 12, wherein a weight percentage between the sum of the polyester polyols and the isocyanic aci, the butyl acetate, and the reflective powder is 15%:50%:35%.
14. A manufacturing method of a light guide, comprising steps of:
providing a guiding layer comprising a light emitting surface and a bottom surface opposite to the light emitting surface;
providing a compound containing curing agents and reflective powder, the curing agents containing acrylic monomer, polyurethane acrylate oligomer, polyester acrylic modified polyester oligomer, and photo initiator;
coating the compound on the bottom surface; and
irradiating to harden the compound by ultraviolet light to form a reflecting layer adhered to the bottom surface.
15. The manufacturing method of claim 14, wherein the bottom surface comprising micro-structures covered by the reflecting layer.
16. The manufacturing method of claim 14, wherein a weight percentage between the curing agents and the reflective powder is 80%:20%, 72%:28%, 70%:30%, or 65%:35%.
17. The manufacturing method of claim 14, wherein a weight percentage between the acrylic monomer, the polyurethane acrylate oligomer, the polyester acrylic modified polyester oligomer, and the photo initiator is 50%:30%:15%:5%.

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 computer-implemented method for processing raw reservoir data to reduce data size, the method comprising:
i. receiving a first series of raw data as a function of time from a first reservoir sensor;
ii. receiving a second series of raw data as a function of time from a second reservoir sensor;
iii. using a predetermined criteria to identify a plurality of subsets-of-interest within the first series of raw data;
iv. using time intervals associated with the plurality of subsets-of-interest within the first series of raw data to identify corresponding subsets-of-interest within the second series of raw data; and
v. generating a third series of data as a function of time using the second series of raw data comprising the corresponding subsets-of-interest, wherein the third series of data comprises a first data resolution for the corresponding subsets-of-interest and a second data resolution that is different from the first data resolution for data outside the corresponding subsets-of-interest.
2. The computer-implemented method of claim 1, wherein the first data resolution is greater than the second data resolution.
3. The computer-implemented method of claim 2, wherein the third series of data omits data outside the corresponding subsets-of-interest.
4. The computer-implemented method of claim 2, wherein the second series of raw data includes an original data resolution and the first data resolution is the same as the original data resolution.
5. The computer-implemented method of claim 1, further comprising:
repeating processes (ii), (iv), and (v) for at least one other reservoir sensor.
6. The computer-implemented method of claim 1, wherein the first reservoir sensor is a valve sensor.
7. The computer-implemented method of claim 1, wherein the second reservoir sensor is a pressure sensor.
8. The computer-implemented method of claim 1, wherein the third series of data comprises averaged data outside the corresponding subsets-of-interest.
9. The computer-implemented method of claim 1, further comprising:
compressing the first series of raw data and the second series of raw data.
10. The computer-implemented method of claim 1, further comprising:
acquiring the second series of raw data from the second reservoir sensor at an acquisition rate.
11. The computer-implemented method of claim 10, further comprising:
temporarily increasing the acquisition rate when the first series of raw data meets the predetermined criteria.
12. The computer-implemented method of claim 1, wherein the predetermined criteria includes a plurality of criteria.
13. The computer-implemented method of claim 1, wherein the predetermined criteria is selected from the group consisting of
a threshold temperature,
a threshold pressure,
a threshold pressure gradient,
threshold sensor noise,
an opened valve,
a closed valve, and
some combination thereof.
14. The computer-implemented method of claim 1, further comprising:
adjusting the predetermined criteria.
15. The computer-implemented method of claim 1, further comprising:
time stamping the first series of raw data and the second series of raw data.
16. The computer-implemented method of claim 1, further comprising:
displaying at least a portion of the third series of data using a computer or portable device.
17. The computer-implemented method of claim 1, further comprising:
displaying at least a portion of the third series of data as a plot.
18. The computer-implemented method of claim 1, further comprising:
interpreting at least a portion of the third series of data to derive a reservoir parameter.
19. The computer-implemented method of claim 18, further comprising:
interpreting at least a portion of the third series of data to determine a change in the derived reservoir parameter.
20. The computer-implemented method of claim 18, further comprising:
tracking the derived reservoir parameter.
21. The computer-implemented method of claim 1, further comprising:
generating a fourth series of data as a function of time using the first series of raw data comprising the plurality of subsets-of-interest, wherein the fourth series of data comprises a third data resolution for the plurality of subsets-of-interest and a fourth data resolution that is different from the first data resolution for data outside the plurality of subsets-of-interest.
22. The computer-implemented method of claim 1, wherein
(i) a predetermined criteria comprises a joint predetermined criteria,
(ii) the joint predetermined criteria is used to identify the plurality of subsets-of-interest within the first series of raw data and to identify a second plurality of subsets-of-interest within the second series of raw data, and
(iii) the time intervals associated with the plurality of subsets-of-interest within the first series of raw data and time intervals associated with the second plurality of subsets-of-interest within the second series of raw data are used to identify the corresponding subsets-of-interest within the second series of raw data.