Abstract:
Computationally implemented methods and systems include detecting presence of a plurality of functional devices within the communication range of a wearable computing device; and selecting, from the plurality of functional devices, one or more functional devices for providing to the wearable computing device one or more functionalities. In addition to the foregoing, other aspects are described in the claims, drawings, and text.
Abstract:
A heating apparatus includes a gas supply for providing a base gas, a generator configured to excite the base gas to produce a metastable gas mixture that includes a metastable gas, and a housing. The housing includes a wall shaped to contain the metastable gas mixture and selectively enclose a reactive element of a target component. Interaction between the metastable gas and at least one of a coupling material and the reactive element transfers energy to selectively heat the at least one of the coupling material and the target component.
Abstract:
Computationally implemented methods and systems include facilitating a head wearable computing device to receive one or more solicitations via one or more solicitation signals that solicit to provide to a limb wearable computing device gesture indicative data that is indicative of one or more user gestures, the head wearable computing device being designed to be worn on a head of a user and the limb wearable computing device being designed to be worn around a limb of a user; and directing the head wearable computing device to transmit to the limb wearable computing device the gesture indicative data via one or more low-power gesture indicative data signals, the limb wearable computing device being within communication range of the head wearable computing device. In addition to the foregoing, other aspects are described in the claims, drawings, and text.
Abstract:
Methods, apparatuses, computer program products, devices and systems are described that carry out receiving level-two encrypted data and at least one associated hash; storing the level-two encrypted data and at least one associated hash; and transmitting the level-two encrypted data and at least one associated hash in response to a request for at least one of the level-two encrypted data or the at least one associated hash.
Abstract:
The present disclosure provides systems and methods associated with determining velocity and/or acceleration information using ultrasound. A system may include one or more ultrasonic transmitters and/or receivers. An ultrasonic transmitter may be configured to transmit ultrasound into a region bounded by one or more surfaces. The ultrasonic receiver may detect a Doppler shift of reflected ultrasound to determine an acceleration and/or velocity associated with an object. The velocity and/or acceleration information may be utilized to modify the state of a gaming system, entertainment system, infotainment system, and/or other device. The velocity and/or acceleration date may be used in combination with a mapping or positioning system that generates positional data associated with the objects.
Abstract:
A method substantially as shown and described the detailed description and/or drawings and/or elsewhere herein. A device substantially as shown and described the detailed description and/or drawings and/or elsewhere herein.
Abstract:
Computationally implemented methods and systems that are designed for transmitting a request for one or more identities of a transportation vehicle unit for transporting a first end user; receiving the one or more identities of the transportation vehicle unit for transporting the first end user, the transportation vehicle unit currently en route to or is currently transporting a second end user and having been identified based, at least in part, on a determination that the transportation vehicle unit is able to accommodate transport of the first end user while transporting the second end user; and directing the identified transportation vehicle unit to rendezvous with the first end user in order to transport the first end user. In addition to the foregoing, other aspects are described in the claims, drawings, and text.
Abstract:
Computationally implemented methods and systems that are designed for receiving one or more package delivery directives that direct a transportation vehicle unit to deliver one or more packages; receiving one or more end user transport directives that direct the transportation vehicle unit to transport one or more end users; and verifying that the one or more end user transport directives do not conflict with the one or more package delivery directives such that transport of the one or more end users by the transportation vehicle unit in accordance with the one or more end user transport directives will not violate one or more package delivery obligations of the transportation vehicle unit to deliver the one or more packages in accordance with the one or more package delivery directives. In addition to the foregoing, other aspects are described in the claims, drawings, and text.
Abstract:
Computationally implemented methods and systems that are designed for receiving one or more first directives that direct a transportation vehicle unit to transport a first end user; receiving, while the transportation vehicle unit is en route to or is transporting the first end user, one or more second directives that direct the transportation vehicle unit to transport a second end user while transporting the first end user, the transportation vehicle unit having been determined to be able to accommodate transport of the second end user while transporting the first end user; and verifying that compliance with the one or more second directives will not conflict with one or more obligations to transport the first end user by the transportation vehicle unit. In addition to the foregoing, other aspects are described in the claims, drawings, and text.
Abstract:
Computationally implemented methods and systems that are designed for transmitting a request for one or more identities of a transportation vehicle unit for transporting a first end user; receiving the one or more identities of the transportation vehicle unit for transporting the first end user, the transportation vehicle unit currently en route to or is currently transporting a second end user and having been identified based, at least in part, on a determination that the transportation vehicle unit is able to accommodate transport of the first end user while transporting the second end user; and directing the identified transportation vehicle unit to rendezvous with the first end user in order to transport the first end user. In addition to the foregoing, other aspects are described in the claims, drawings, and text.