Abstract:
A reverse-return parallel loop system is provided, including a cooling cycle comprised of a plurality of heat sinks, at least one heat exchanger, and at least one liquid pump to carry liquid coolant through the system. Each heat sink has a vapor inlet, a liquid inlet, a vapor outlet, and a liquid outlet. The liquid coolant is pumped into the heat sink through the liquid inlet where the coolant splits in to two streams, where one stream flows out of the liquid outlet towards the next heat sink downstream, and the other stream flows through the heat sink, and through the heat exchanger core to absorb heat from the heat sources and become at least partially vaporized by the heat. This stream then merges with vapor from other heat sinks upstream and flows out through the vapor outlet back towards the heat exchanger of the system.
Abstract:
A system having a shell with a shell interior for housing a heat exchanger that is configured to be operable for heat transfer between a first fluid and a second fluid; a refrigerant inlet, wherein the first fluid passes from the refrigerant inlet to the shell interior for heat transfer; a refrigerant inlet manifold, wherein the refrigerant inlet manifold is configured to collect the first fluid from the refrigerant inlet for the heat transfer; a refrigerant outlet, the refrigerant outlet is configured to be operable for supplying the first fluid for electronic device cooling; a coolant inlet, wherein the second fluid flows from the coolant inlet and into the shell interior for the heat transfer; and a coolant outlet for discharging the second fluid out of the shell interior.
Abstract:
A display panel and a device are provided. The display panel includes a first substrate. The first substrate includes a first metal layer and a second metal layer. The first metal layer includes first metal portions. Each of the first metal portions includes a plurality of second sub-portions arranged along a second direction. The second metal layer includes a plurality of data lines. Each of the second sub-portions is disposed between two adjacent data lines. In a top view, the display panel includes a plurality of columns of pixels or a plurality of rows of pixels. Each of two sides of each of the columns of pixels is provided with one of the data lines.
Abstract:
The present invention provides a method and a reactor for removing organic matters by immobilized-enzymatic electrode coupled electro-coagulation. In the method, in a single electrochemical system, an enzyme-modified electrode is combined with electro-coagulation to synergistically remove organic matters from water. Certain electrochemical parameters are controlled such that a polymerization reaction is performed between hydrogen peroxide generated by a cathode reaction and organic matters catalyzed by the immobilized-enzymatic electrode. After the polymerization reaction, the organic product enters an anode chamber through a pump. The organic product is precipitated and removed by performing a reaction between the organic product and different hydrolysis products from the electro-coagulation through a coagulating/flocculating effect of compression of a double electric layer, adsorption and electric neutralization as well as precipitation capture. Ultimately, the object of removing the organic matters synergistically through the enzymatic catalyzed polymerization at the cathode and the electro-coagulation at the anode is achieved. The present invention has a strong selectivity for low-concentration toxic organic pollutants and a good effect in removing small-molecular hydrophilic organic matters, the addition amount of enzyme is low, the cathode and the anode are fully used, the cost is reduced, the operation is simple, and the applicable is wide, therefore, the present invention is applicable to a variety of water and wastewater containing organic matters, and the contaminated water.
Abstract:
A system may be configured to receive a request to generate code based on a model. The model may include a logical entity associated with a variable. The system may further be configured to identify a boundary for the variable based on a code section of the code corresponding to the logical entity and add alignment code to the code. The alignment code may be for the variable and based on the boundary.
Abstract:
Heteroaryl amide derivatives are provided, of the Formula: wherein variables are as described herein. Such compounds are ligands that may be used to modulate specific receptor activity in vivo or in vitro, and are particularly useful in the treatment of conditions associated with pathological receptor activation in humans, domesticated companion animals and livestock animals. Pharmaceutical compositions and methods for using such compounds to treat such disorders are provided, as are methods for using such ligands for receptor localization studies.
Abstract:
The present invention relates to compounds of the general formula (I): wherein ring A, ring B, G, R3, Z, L1, and L2 are selected independently of each other and are as defined herein, to compositions comprising the compounds, and to methods of using the compounds as glucagon receptor antagonists and for the treatment or prevention of type 2 diabetes and conditions related thereto.
Abstract:
The invention provides packaged pharmaceutical preparations of Aryl substituted imidazoles, pyrazoles, pyridizines and related compounds of the Formula where the variables are defined herein. Such compounds are ligands of C5a receptors. Preferred compounds of the invention act bind to C5a receptors with high affinity and exhibit neutral antagonist or inverse agonist activity at C5a receptors. This invention also relates to pharmaceutical compositions comprising such compounds. It further relates to the use of such compounds in treating a variety of inflammatory and immune system disorders.
Abstract:
An exemplary support stand for a flat-panel display monitor, includes a base member, an elevating mechanism, and a rotatable mechanism. The elevating mechanism includes a support member and an elevating member. The support member is fixed on the base member. The elevating member is slidably connected to the support member. The rotatable mechanism includes a rotatable body. The rotatable body is rotatably positioned on the elevating member.