Abstract:
Provided is a process for producing 3,5-dimethyldodecanoic acid, which is an active ingredient of the pheromone of California prionus, and 4-carboxy-3,5-dimethyl-3,5-dodecadienoic acid which is an intermediate useful for producing 3,5-dimethyldodecanoic acid. More specifically, provided is a method for producing 3,5-dimethyldodecanoic acid, comprising the steps of subjecting 3-methyl-2-pentene-1,5-diacid diester (1) and 2-nonanone (2) to a condensation reaction and subsequent hydrolysis into 4-carboxy-3,5-dimethyl-3,5-dodecadienoic acid (3); decarboxylating or decarboxylating and hydrolyzing the 4-carboxy-3,5-dimethyl-3,5-dodecadienoic acid (3) into 3,5-dimethyl-2,4-dodecadienoic acid (4); and hydrogenating the 3,5-dimethyl-2,4-dodecadienoic acid (4) into 3,5-dimethyldodecanoic acid (5), as shown in the following scheme:
Abstract:
A method of manufacturing a semiconductor device includes patterning a substrate to form an active fin, forming a sacrificial gate pattern crossing over the active fin on the substrate, forming an interlayer insulating layer on the sacrificial gate pattern, removing the sacrificial gate pattern to form a gap region exposing the active fin in the interlayer insulating layer, and oxidizing a portion of the active fin exposed by the gap region to form an insulation pattern between the active fin and the substrate.
Abstract:
Some embodiments are directed to a computer node that communicates a report message containing information to a social media server to cause publishing of the information to other computer nodes tracking publishing on the social media server by the computer node. The computer node receives a response message from one of the other computer nodes through the social media server, and operates based on the response message. Related embodiments are directed to another computer node that communicates with a social media server to track information published by report messages from other computer nodes, generates a response message based on the information published by one of the other computer nodes, and communicates the response message to the social media server to cause publishing of content of the response message to the other computer nodes.
Abstract:
According to a first aspect, it is presented a method for decoding at least one signal from a sequence of symbols. The method is executed in a network node of a mobile communication system and comprises the steps of: receiving a sequence of symbols using a radio receiver; identifying at least one corrupted symbol by identifying a corruption of at least the first received symbol of the plurality of symbols; obtaining a working set of symbols, by omitting the at least one corrupted symbol from the sequence of symbols; and de-spreading the working set of symbols using a subset of a first de-spreading code, wherein the subset of the first de-spreading code comprises code elements corresponding to the working set of symbols, to thereby provide a first decoded signal. A corresponding network node, computer program and computer program product are also presented.
Abstract:
Methods of managing observability code in an application program include generating an application program including an observability point, the observability point including a location in the application at which observability code, or a call to observability code, can be inserted, loading the application program into a memory of a target system, retrieving observability information from an observability point information file, and inserting the observability code, or the call to the observability code, at the observability point in the memory of the target system using the observability information retrieved from the observability point information file.
Abstract:
The present invention provides a method of treating a skin ailment including administering to a subject in need thereof, a therapeutically effective amount of a composition including (i) a primary diamine; (ii) a secondary aromatic diamine; (iii) a polyisocyanate; and (iv) optionally, a polyol. The present invention also provides a method of forming a skin bandage.
Abstract:
Optical coherence tomography systems for imaging a whole eye are provided including a sample arm including focal optics that are configured to rapidly switch between at least two scanning modes in less than about 1.0 second.
Abstract:
A system and method is provided for creating a trail of events. A plurality of data exchange events and a plurality of user interaction events are captured. A frame is generated based on the captured plurality of user interaction events. A cut is generated based on the captured plurality of data exchange events and the frame. The cut represents a historical trail of the plurality of user interaction events associated with the back-end data receive event and the back-end data send event.
Abstract:
Methods of forming semiconductor devices may be provided. A method of forming a semiconductor device may include patterning first and second material layers to form a first through region exposing a substrate. The method may include forming a first semiconductor layer in the first through region on the substrate and on sidewalls of the first and second material layers. In some embodiments, the method may include forming a buried layer filling the first through region on the first semiconductor layer. In some embodiments, the method may include removing a portion of the buried layer to form a second through region between the sidewalls of the first and second material layers. Moreover, the method may include forming a second semiconductor layer in the second through region.