摘要:
An example method is provided and includes receiving conversation precondition information associated with a meeting session in a network environment, determining, after a beginning of the meeting session, conversation precondition status information of at least one collaboration criteria indicated by the conversation precondition information, and causing a meeting client program to provide a representation of the conversation precondition status information.
摘要:
A nonlinear terahertz (THz) spectroscopy technique uses a sample illuminated by two THz pulses separately. The illumination generates two signals BA and BB, corresponding to the first and second THz pulse, respectively, after interaction with the sample. The interaction includes excitation of at least one ESR transition in the sample. The sample is also illuminated by the two THz pulses together, with an inter-pulse delay τ, generating a third signal BAB. A nonlinear signal BNL is then derived via BNL=BAB−BA−BB. This nonlinear signal BNL can be then processed (e.g., Fourier transform) to study the properties of the sample.
摘要:
A business process management (BPM) data processing system can be provided. The system can include a business process modeler executing in memory of a host server and a process generation engine coupled to the business process modeler and configured to generate an executable business process execution model from a business process model defined by the business process modeler. The system further can include a monitoring generation engine coupled to the business process modeler and configured to generate an executable monitoring model using business measures mapped to emittable events in the executable business process execution model and using logic enabled to compute metrics for the business measures from data in the events, both the business measures and logic being defined separately from and irrespective of the business process model.
摘要:
A nonlinear terahertz (THz) spectroscopy technique uses a sample illuminated by two THz pulses separately. The illumination generates two signals BA and BB, corresponding to the first and second THz pulse, respectively, after interaction with the sample. The interaction includes excitation of at least one ESR transition in the sample. The sample is also illuminated by the two THz pulses together, with an inter-pulse delay τ, generating a third signal BAB. A nonlinear signal BNL is then derived via BNL=BAB−BA−BB. This nonlinear signal BNL can be then processed (e.g., Fourier transform) to study the properties of the sample.