Abstract:
The invention relates to the soybean variety designated 4858197. Provided by the invention are the seeds, plants and derivatives of the soybean variety 4858197. Also provided by the invention are tissue cultures of the soybean variety 4858197 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 4858197 with itself or another soybean variety and plants produced by such methods.
Abstract:
The invention relates to the soybean variety designated 4540394. Provided by the invention are the seeds, plants and derivatives of the soybean variety 4540394. Also provided by the invention are tissue cultures of the soybean variety 4540394 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 4540394 with itself or another soybean variety and plants produced by such methods.
Abstract:
The invention relates to the soybean variety designated 4778469. Provided by the invention are the seeds, plants and derivatives of the soybean variety 4778469. Also provided by the invention are tissue cultures of the soybean variety 4778469 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 4778469 with itself or another soybean variety and plants produced by such methods.
Abstract:
A method and system are disclosed for creating dynamic models of etch processes in semiconductor manufacturing. In one embodiment, a method comprises modeling an etch process used in semiconductor manufacturing to generate a dynamic process model. The dynamic process model is used to determine input values that result in a desired output value. A process recipe is optimized for the etch process with the input values.
Abstract:
Methods, systems, and computer program products for managing and selectively distributing routing information in a routing node are disclosed. In one implementation, a method for selectively distributing routing information in a routing node includes organizing internal signaling resources are organized so as to facilitate the efficient mapping of signaling system 7 (SS7) message transfer part (MTP) signaling protocol attributes to Internet protocol (IP)-based signaling resources. A routing status information sharing hierarchy is defined, which enables routing status information to be efficiently shared among members of a signaling mateset group. Members of a signaling mateset replicate and distribute SS7 MTP network management information across non-MTP signaling connections, such as IP connections.
Abstract:
Methods and systems for performing stateful signaling transactions in a distributed processing environment are disclosed. A method for performing stateful signaling transactions in a distributed processing environment includes receiving a signaling message at a routing node, such as a signal transfer point. The signaling message is distributed to one of the plurality of stateful processing modules. The receiving stateful processing module buffers the signaling message and initiates a stateful transaction based on the signaling message. Initiating the stateful transaction may include generating a query message and inserting a stateful processing module identifier in the query message. The query message is sent to an external node, such as an SCP, which formulates a response. The SCP may insert the stateful processing module in the response and send the response back to the signal transfer point. The signal transfer point decodes the response and uses the stateful processing module identifier to forward the response to the correct stateful processing module.
Abstract:
A method for computer aided design of a product or process. The method includes the steps of representing a computer-aided design activity as a design cycle. The design cycle is then converted into individual iterations of decisions to be made within the design cycle. The individual iterations of decisions are then mapped into a hierarchical structure of influence diagrams. The decision making process of the influence diagrams are performed and data is collected from the decision process that has been performed. The remaining unexecuted decisions and their posterior probabilities are updated based upon the outcomes of the decision process that was most recently performed.
Abstract:
The invention overcomes the deficiencies of the prior art by providing methods for marker assisted selection to create plants of a soybean variety that exhibit a mid/low linolenic acid content with a commercially significant yield and an agronomically elite phenotype. The invention also provides derivatives and plant parts of these plants. Further provided by the invention are methods for the use of these plants. The invention is significant in that oil with decreased linolenic acid exhibits numerous beneficial characteristics yet prior art varieties with decreased linolenic acid also exhibited decreased yield and poor agronomic quality.
Abstract:
The invention relates to the soybean variety designated 4938051. Provided by the invention are the seeds, plants and derivatives of the soybean variety 4938051. Also provided by the invention are tissue cultures of the soybean variety 4938051 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 4938051 with itself or another soybean variety and plants produced by such methods.
Abstract:
The invention relates to the soybean variety designated 4880500. Provided by the invention are the seeds, plants and derivatives of the soybean variety 4880500. Also provided by the invention are tissue cultures of the soybean variety 4880500 and the plants regenerated therefrom. Still further provided by the invention are methods for producing soybean plants by crossing the soybean variety 4880500 with itself or another soybean variety and plants produced by such methods.