Abstract:
An apparatus to modify an incident free space electromagnetic wave includes a block of an artificially structured material having an adjustable spatial distribution of electromagnetic parameters (e.g., ∈, μ, η, σ, and n). A controller applies control signals to dynamically adjust the spatial distribution of electromagnetic parameters in the material to introduce a time-varying path delay d(t) in the modified electromagnetic wave relative to the incident electromagnetic wave.
Abstract:
A processor is adapted to manage security risk by updating and monitoring a taint storage element in response to receipt of taint indicators, and responding to predetermined taint conditions detecting by the monitoring. The processor can be operable to execute instructions of a defined instruction set architecture and comprises an instruction of the instruction set architecture operable to access data from a source and operable to receive a taint indicator indicative of potential security risk associated with the data. The processor can further comprise a taint storage element operable for updating in response to receipt of the taint indicator and logic. The logic can be operable to update the taint storage element, process the taint storage element, determine a security risk condition based on the processing of the taint storage element, and respond to the security risk condition.
Abstract:
A computationally-implemented method comprises obtaining at least a portion of data from a data source, determining a content of the data, determining an acceptability of an effect of content of the data at least in part via at least two virtual machine representations of at least a part of a real machine having at least one end-user specified preference, at least one of the at least two virtual machine representations operating at least in part on an individual core of a multi-core system, and displaying at least one data display option based on the determining an acceptability of a content of the data.
Abstract:
One or more computers are configured to determine a human stress condition corresponding to one or more physical or physiological parameters extracted from one or more micro-impulse radar (MIR) signals.
Abstract:
A hybrid propulsive technique includes providing at least some first thrust associated with a flow of a working fluid through at least a portion of an at least one axial flow jet engine. The hybrid propulsive technique includes extracting energy from the working fluid that is at least partially converted into electrical power, and converting at least a portion of the electrical power to torque. The hybrid propulsive technique further includes rotating an at least one independently rotatable propeller/fan of at least one rotatable propeller/fan assembly at least partially responsive to the converting the at least a portion of the electrical power to torque, wherein the rotating of the at least one independently rotatable propeller/fan of the at least one rotatable propeller/fan assembly is arranged to produce at least some second thrust.
Abstract:
A method includes, but is not limited to: obtaining status information about one or more physical attributes associated with one or more first physical entities and one or more second physical entities, the one or more physical attributes each being perceived by one or more humans as being capable of having one or more effects upon one or more physical environments, obtaining input information from at least one of the one or more humans through at least in part one or more social networking services, the input information associated with at least one of the one or more physical attributes, and determining assessment information comparing the one or more first physical entities with the one or more second physical entities based at least in part upon the status information and based at least in part upon the input information. In addition to the foregoing, other related method/system aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
One aspect relates to at least a portion of at least one Compton scattered X-ray visualizer, imager, or information provider configured to receive an at least one Compton scattered X-ray that has scattered through a substantial scattering depth range to one or more substantial prescribed scattering depths within an at least one matter of an at least a portion of an individual based at least in part on a set of scattering characteristics, the set of scattering characteristics at least partially corresponding to the at least one matter of the least the portion of the individual; the at least the portion of the at least one Compton scattered X-ray visualizer, imager, or information provider being configured for providing an at least one Compton scattered X-ray visualization, imaging, or information providing through one or more visualization, imaging, or information providing depth ranges to one or more visualization, imaging, or information providing prescribed depths into the at least one matter of the least the portion of the individual.
Abstract:
The present disclosure relates generally to systems for rewarding influencers in a Web 2.0 environment. More specifically, in some implementations, a system is configured to assess an influence of an electronically-accessed content on an involvement between an accessor and a third party, and may also be configured to facilitate a reward to one or more influencers based on one or more assessed influences.
Abstract:
An embodiment or embodiments of an information handling apparatus can use an entitlement vector to simultaneously manage and activate entitlement of objects and processes to various resources independently from one another. An information handling apparatus can comprise an entitlement vector operable to specify resources used by at least one object of a plurality of object. The information handling apparatus can further comprise a scheduler operable to schedule a plurality of threads based at least partly on entitlement as specified by the entitlement vector.