Abstract:
A diagnostic apparatus configured to communicate with a well test system comprising a plurality of wells in a field, comprising a receiving component configured to receive a well test data from the well test system, a transmitting component configured to transmit an abnormal well test signal indication, at least one processor configured to communicate with the transmitting component and the receiving component, and a memory coupled to the at least one processor, wherein the memory comprises instructions that when executed by the at least one processor cause the diagnostic apparatus to compare the well test data to one or more well test descriptors stored in memory, correlate the well test data to an abnormal well test result selected based at least in part on the comparison with the one or more well test descriptors stored in the memory, and instruct the transmitting component to transmit an abnormal well test signal indication to a recipient.
Abstract:
The present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries. More specifically, the present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries characterized in consisting of 4%-12% beeswax and 88%-96% sesame oil extract containing such raw materials as Radix Scutellariae, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris and Lumbricus by weight based on the total weight of the said composition, wherein the content of Radix Scutellariae, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris or Lumbricus based on their dry weight is respectively 1%-6% of the total weight of the sesame oil. The pharmaceutical composition of the present invention can treat thermal injuries involving human skin, subcutaneous tissues and bones, as well as involving bone wounds, especially open fractures, deep thermal injuries combined with bone injuries, and deep thermal injuries combined with bone necrosis caused by trauma, such as deep burns combined with bone injuries or bone necrosis.
Abstract:
The present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries. More specifically, the present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries characterized in consisting of 4%-12% beeswax and 88%-96% sesame oil extract containing such raw materials as Radix Scutellariae, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris and Lumbricus by weight based on the total weight of the said composition, wherein the content of Radix Scutellariae, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris or Lumbricus based on their dry weight is respectively 1%-6% of the total weight of the sesame oil. The pharmaceutical composition of the present invention can treat thermal injuries involving human skin, subcutaneous tissues and bones, as well as involving bone wounds, especially open fractures, deep thermal injuries combined with bone injuries, and deep thermal injuries combined with bone necrosis caused by trauma, such as deep burns combined with bone injuries or bone necrosis.
Abstract:
The present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries. More specifically, the present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries characterized in consisting of 4%-12% beeswax and 88%-96% sesame oil extract containing such raw materials as Radix Scutellaria, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris and Lumbricus by weight based on the total weight of the said composition, wherein the content of Radix Scutellaria, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris or Lumbricus based on their dry weight is respectively 1%-6% of the total weight of sesame oil. The pharmaceutical composition of the present invention can treat thermal injuries involving human skin, subcutaneous tissues and bones, as well as involving bone wounds, especially open fractures, deep thermal injuries combined with bone injuries, and deep thermal injuries combined with bone necrosis caused by trauma, such as deep burns combined with bone injuries or bone necrosis.
Abstract:
A method of evaluating one or more capacitor banks in an electrical power system includes: (a) acquiring data representing a signal of interest of the power system, where the data describes a plurality of power system events; and (b) based on one or more patterns contained in the data, identifying at least one of the power system events as being associated with capacitor operation.
Abstract:
The present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries. More specifically, the present invention relates to a pharmaceutical composition for treating thermal injuries and wounds combined with bone injuries characterized in consisting of 4%-12% beeswax and 88%-96% sesame oil extract containing such raw materials as Radix Scutellaria, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris and Lumbricus by weight based on the total weight of the said composition, wherein the content of Radix Scutellaria, Coptis Chinensis, Cortex Phellodendri, Pericarpium Papaveris or Lumbricus based on their dry weight is respectively 1%-6% of the total weight of sesame oil. The pharmaceutical composition of the present invention can treat thermal injuries involving human skin, subcutaneous tissues and bones, as well as involving bone wounds, especially open fractures, deep thermal injuries combined with bone injuries, and deep thermal injuries combined with bone necrosis caused by trauma, such as deep burns combined with bone injuries or bone necrosis.
Abstract:
A miniaturized anode module includes a target, a rotor module, a first rotation shaft, a second rotation shaft, and a heat barrier. The target is used for receiving an electron beam in order to excite a ray. The rotor module is used for driving the target in rotation. The first rotation shaft is coupled to the target. The second rotation shaft is coupled to the first rotation shaft and the rotor module, such that the rotor module drives the first rotation shaft and the target in synchronous rotation by the second rotation shaft. The heat barrier is disposed between the first rotation shaft and the second rotation shaft, and is used to block the transfer of heat generated by the target when exciting the ray to the second rotation shaft through the first rotation shaft.
Abstract:
A metal silicide thin film and ultra-shallow junctions and methods of making are disclosed. In the present disclosure, by using a metal and semiconductor dopant mixture as a target, a mixture film is formed on a semiconductor substrate using a physical vapor deposition (PVD) process. The mixture film is removed afterwards by wet etching, which is followed by annealing to form metal silicide thin film and ultra-shallow junctions. Because the metal and semiconductor dopant mixture is used as a target to deposit the mixture film, and the mixture film is removed by wet etching before annealing, self-limiting, ultra-thin, and uniform metal silicide film and ultra-shallow junctions are formed concurrently in semiconductor field-effect transistor fabrication processes, which are suitable for field-effect transistors at the 14 nm, 11 nm, or even further technology node.