Abstract:
An ultrasonic source configured to emit one or more sound pulses in a direction of a surface in order to obtain one or more reflected sound pulses that are used to determine one or more properties of the surface. The ultrasonic source receives one or more control signals based on the one or more properties of the surface that are determined. Further, the ultrasonic source emits one or more ultrasonic sound waves in the direction of the surface based upon the one or more control signals. The one or more ultrasonic sound waves exert a force which causes particles to move to modify an appearance of the surface.
Abstract:
A controller controls an ultrasonic source to cause the ultrasonic source to emit one or more sound pulses in a direction of a surface in order to obtain reflected sound pulses that are used to determine one or more properties of the surface, receive control signals from the controller, based on the one or more properties of the surface that are determined, and emit ultrasonic sound waves in the direction of the surface based upon the control signals. The ultrasonic sound waves exert a force which causes visible particles within a region proximate the surface to move to achieve a desired appearance with respect to the surface.
Abstract:
A method includes coordinating delivery by a selected delivery agent to a delivery recipient. A geographical receiving location for a delivery recipient is determined. A delivery agent, of a plurality of potential delivery agents, is identified and selected that is capable of delivering a specific product to the delivery recipient at the geographical location for the delivery recipient, in which the identifying includes analyzing planned geographical routes for each of the plurality of potential delivery agents to determine the delivery agent. A network communications address of the delivery recipient is determined and an electronic communication exchange is established between an entity responsible for providing the product to the delivery recipient and the network communications address of the delivery recipient. The specific product is assigned for delivery to the delivery recipient based on the communications exchange.
Abstract:
A service is provided over a communication network. Initially, information indicative of physical characteristics of an item specified by a requester is received along with a request to generate a physical three dimensional model for the item. The information is transformed into model data used to generate the three dimensional model. Components for generating the physical three dimensional model are obtained from storage. A physical three dimensional model for the item specified by the remote requestor is generated, and imagery descriptive of the physical three dimensional model is sent to the remote requestor via the communication network. The components used to generate the physical three dimensional model are returned to storage.
Abstract:
An ultrasonic source controlled by a controller to cause the ultrasonic source to emit one or more sound pulses in a direction of a surface in order to obtain one or more reflected sound pulses that are used to determine one or more properties of the surface. The ultrasonic source receives one or more control signals based on the one or more properties of the surface that are determined. Further, the ultrasonic source emits one or more ultrasonic sound waves in the direction of the surface based upon the one or more control signals. The one or more ultrasonic sound waves exert a force which causes visible particles within a region proximate the surface to move to achieve a desired appearance with respect to the surface.
Abstract:
An ultrasonic source controlled by a controller to cause the ultrasonic source to emit one or more sound pulses in a direction of a surface in order to obtain one or more reflected sound pulses that are used to determine one or more properties of the surface. The ultrasonic source receives one or more control signals based on the one or more properties of the surface that are determined. Further, the ultrasonic source emits one or more ultrasonic sound waves in the direction of the surface based upon the one or more control signals. The one or more ultrasonic sound waves exert a force which causes visible particles to move to modify an opacity of the surface.
Abstract:
A service is provided over a communication network. Initially, information indicative of physical characteristics of an item requested by a requester is received along with a request to generate a physical three dimensional model for the item. The information is transformed into model data used to generate the three dimensional model. Components for generating the physical three dimensional model are obtained from storage. A physical three dimensional model for the item specified by the remote requestor is generated, and imagery descriptive of the physical three dimensional model to the remote requestor via the communication network, and returning the components used to generate the physical three dimensional model to storage after the imagery of the physical three dimensional model is sent to the remote requester.
Abstract:
The emission of variable ultrasonic sound waves from a plurality of sound sources is controlled based on controlled signals generated by a controller. The plurality of sound sources emit ultrasonic waves towards a surface based on the control signals, creating a force which causes particles within a region proximate the surface to move in a desired manner with respect to the surface. The movement of the particles with respect to the surface changes the appearance of the surface. In this manner, the appearance of the surface may be changed in a desired manner to suit needs for home automation and security.