Abstract:
An embodiment includes a mobile computing device determining user profile elements and user goals for a user; determining user activity levels corresponding to the user goals; determining peer group activity levels corresponding to the user profile elements, user goals, and user activity levels; determining a peer group activity level exceeds a user activity level; sensing an environmental condition corresponding to the user's current environment; and communicating a message to the user, which corresponds to a peer group activity, based on (a) determining a peer group activity level exceeds a user activity level, and (b) the sensed environmental condition. Other embodiments are described herein.
Abstract:
Techniques for forming and adjusting a magnetic tension mechanism are described herein. A system includes a first magnetic element in a first component of a computing device. The system includes a second magnetic element in a second component of the computing device, wherein the first magnetic component and the second magnetic component are to be held in tension by a magnetic force. The system also includes an adjustment mechanism to adjust the force required to decouple the magnetic elements.
Abstract:
Techniques for forming and adjusting a magnetic tension mechanism are described herein. A system includes a first magnetic element in a first component of a computing device. The system includes a second magnetic element in a second component of the computing device, wherein the first magnetic component and the second magnetic component are to be held in tension by a magnetic force. The system also includes an adjustment mechanism to adjust the force required to decouple the magnetic elements.
Abstract:
Techniques for forming and adjusting a magnetic tension mechanism are described herein. A system includes a first magnetic element in a first component of a computing device. The system includes a second magnetic element in a second component of the computing device, wherein the first magnetic component and the second magnetic component are to be held in tension by a magnetic force. The system also includes an adjustment mechanism to adjust the force required to decouple the magnetic elements.
Abstract:
Computer-readable storage media, apparatus and method associated with storing a copy of local data in a historical data store, among other embodiments, are disclosed herein. In embodiments, one or more computer-readable storage media may contain instructions which when executed by a computing device may provide access of local data to one or more applications on the computing device for contemporaneous processing by the one or more applications. The local data may be associated, at least in part, with one or more sensors of the computing device. In some embodiments, a copy of the local data may be transmitted to a remote historical data store where it may be categorized and correlated with data from computing devices associated with one or more other users for further processing.
Abstract:
Magnetic force adjustment mechanisms are described herein. An electronic device includes a base, a first magnet carried by the base, a lid and a second magnet carried by the lid. The first and second magnets secure the base and the lid together with a holding force. A hinge pivotally couples the lid and the base. A slider displaces at least one of the first or second magnets relative to the other of the first or second magnets to reduce the holding force.
Abstract:
Embodiments for providing brain computer interface (BCI) system based on gathered temporal and spatial patterns of biophysical signals are generally described herein. In some embodiments, stimuli are provided to a user. Temporal and spatial patterns of biophysical signals associated with brain activity of a user are gathered in response to providing the stimuli to the user. The gathered temporal and spatial patterns of biophysical signals associated with brain activity of the user are correlated to identify user brain signatures. A processor controlled function based on the user brain signatures identified through correlating of the gathered temporal and spatial patterns of biophysical signals associated with brain activity is performed.