Abstract:
A second communication device is detected in proximity to a first communication device engaged in a call. A substantially uninterrupted transfer of the call is provided from the first communication device to the second communication device. At least a part of the first communication device is placed into a sleep mode in response to transfer of the call to the second communication device.
Abstract:
A method and system provides arrangements creating a relationship between a real-world entity and a virtual world environment. A participant or player can participate in various virtual world activities including transactions to acquire virtual products, virtual services, and/or virtual items of value. Feedback may be provided and records kept regarding the virtual world activities and transactions. The participant or player may also have an opportunity of engaging in related real-world activities and transactions. In some implementations, multiple players at different locations can be involved in the virtual world and real-world activities and transactions. Some embodiments include arrangements for real-world informational data to be made available in the virtual world environment to a participant or player, based on virtual world activities related to a topic of interest to a real-world entity. Other embodiments provide for making a profile record for use by a real-world entity, wherein the profile record may include particular types of participation activity by a participant or player in the virtual world environment.
Abstract:
A system may include and/or involve a first device, a second device, and logic to effect pairing of the first and second devices upon detection of physical contact between the devices.
Abstract:
A method and system are described for receiving, at a first node, provenance data including at least a handle relating to a first software program active on a second node and executing one or more instructions received from the second node, on the first node.
Abstract:
One aspect of the present disclosure relates to receiving by at least one mote device a request to provide an impulse-mote-position-indication; and indicating at least partially using the impulse-mote-position-indication of the at least one mote device positional information about the at least one mote device at least partially in response to the request to provide the impulse-mote-position-indication. Another aspect of the disclosure related to receiving by a communication device an impulse-mote-position-indication of at least one mote device; and deriving a geographic location of the at least one mote device at least partially in response to the receiving by the communication device the impulse-mote-position-indication of the at least one mote device.
Abstract:
A computationally implemented method includes, but is not limited to: determining which of a plurality of end users are to be presented with a message, the plurality of end users having access to one or more non-communication applications through one or more non-communication application interfaces; and providing a modified non-communication application interface for accessing at least one of the one or more non-communication applications to one or more end users who have been determined to be presented with the message, the modified non-communication application interface including at least a channel to access the message. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A computationally implemented method includes, but is not limited to: providing at least to one or more associated end users from a group of associated end users a non-communication (NC) productivity application interface including a channel for accessing messages; and presenting to the one or more associated end users, via the channel, at least a first one or more messages and a second one or more messages, the first one or more messages being associated with the group of associated end users and the second one or more messages being independent of the group of associated end users. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A computationally implemented method includes, but is not limited to: detecting one or more occurrences of one or more specific patterns of usage of one or more non-communication (NC) productivity applications by one or more end users; and providing to the one or more end users, in response to said detecting, access to one or more particular messages through one or more channels of one or more NC productivity application interfaces, the one or more NC productivity application interfaces for accessing the one or more NC productivity applications by the one or more end users. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A computationally implemented method includes, but is not limited to acquiring subjective user state data including data indicating incidence of at least a first subjective user state associated with a first user and data indicating incidence of at least a second subjective user state associated with a second user; acquiring objective occurrence data including data indicating incidence of at least a first objective occurrence and data indicating incidence of at least a second objective occurrence; and correlating the subjective user state data with the objective occurrence data. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.