Abstract:
A process for removing microorganisms and/or precursors of disinfection by-products from a medium sought to be treated comprising treating the medium with one or more elements capable of forming an oxide, a hydroxide, and/or an oxyhydroxide through corrosion is disclosed. A system for effecting the removal or inactivation of microorganisms and/or disinfection by-product precursors is also contemplated.
Abstract:
There is provided a process management support system and the like which supports searching continuously a business process appropriate to a change of the external environments.The system defines an action of a CLIENT 103 as a mode of progress of client operations (COPs), and correlates each COP to each SERVICE 104 of a service provider 101. In a simulation, the COP to be executed is specified based on the defined mode of progress of COPs, and a request for the SERVICE 104 is made occur from the specified COP under a predetermined condition. Then, each time the request occurs, the SERVICE 104 correlated to the specified COP is provided to the CLIENT 103 from which the request occurred.
Abstract:
A process for measuring total microbiological content in an aqueous medium includes adding a fluorescent dye to the aqueous medium, measuring the fluorescent signal in the aqueous medium to obtain a baseline fluorescent signal, releasing intracellular content of the microbiological matter into the aqueous medium by lysing the microbiological matter, measuring the fluorescent signal in the aqueous medium with the released intracellular content of the microbiological matter to obtain a second fluorescent signal, subtracting the baseline signal from the second fluorescent signal to obtain a net fluorescent signal and equating the net fluorescent signal with a microbiological content. Methods for measuring biofilm and adjusting for background noise are also provided.
Abstract:
A program management structure that includes a plurality of projects, where each project is staffed with a project manager and wherein each project includes a plurality of tasks which can have multiple interdependencies and at least one position reporting up to the project manager. A plurality of organizations is also included, where each organization is provided with a plurality of departments, each of which has a department manager and at least one staffer reporting up to the department manager and filling at least part of the at least one position. Additionally, project exceptions are reported to the project manager and functional exceptions are reported to the functional manager.
Abstract:
A process for removing microorganisms and/or precursors of disinfection by-products from a medium sought to be treated comprising treating the medium with one or more elements capable of forming an oxide, a hydroxide, and/or an oxyhydroxide through corrosion is disclosed. A system for effecting the removal or inactivation of microorganisms and/or disinfection by-product precursors is also contemplated.
Abstract:
The present invention discloses an input equipment with a sensed movement feedback, which comprises a pressure sensor pad having a through hole at the center, a rolling ball disposed in the through hole with part of the rolling ball exposed and protruded therefrom, and at least one driver contacting with the surface of the rolling ball. The sensor pad will produce a signal according to a pressing force exerting thereon and transmit the signal to a control circuit of the input equipment, enabling the control circuit to produce a rolling signal for activating the driver to move the rolling ball in a direction proportion to the pressing force. Thus, the user can sense the direction and speed of the cursor movement on the screen from sensing the rolling movement of the rolling ball.
Abstract:
The present invention discloses an input equipment with a sensed movement feedback, which comprises a pressure sensor pad having a through hole at the center, a rolling ball disposed in the through hole with part of the rolling ball exposed and protruded therefrom, and at least one driver contacting with the surface of the rolling ball. The sensor pad will produce a signal according to a pressing force exerting thereon and transmit the signal to a control circuit of the input equipment, enabling the control circuit to produce a rolling signal for activating the driver to move the rolling ball in a direction proportion to the pressing force. Thus, the user can sense the direction and speed of the cursor movement on the screen from sensing the rolling movement of the rolling ball.
Abstract:
This invention concerns a medical non-woven fabric containing inorganic oxides complex powder. The inorganic oxides complex powder consists of 80-95% (weight) of TiO.sub.2, 2-10% (weight) of Al.sub.2 O.sub.3 and 1-10% (weight) of SiO.sub.2. This medical non-woven fabric can improve microcirculation remarkably and has special effect of dephlogistication, detumescence and speeding up healing of wounds. Thus, it is suitable for supplementary treatment of tumefaction, surface wounds and fracture.
Abstract translation:本发明涉及含有无机氧化物复合粉末的医用无纺织物。 无机氧化物复合粉末由80-95%(重量)的TiO 2,2-10%(重量)的Al 2 O 3和1-10%(重量)的SiO 2组成。 这种医用非织造布可以显着改善微循环,并具有脱屑,消肿和加速伤口愈合的特殊效果。 因此,适用于补充治疗肿胀,表面伤口和骨折。
Abstract:
A shade screen includes a screen fabric, a tightening wire and a reinforcing connector. The reinforcing connector includes a head connecting member and a reinforcing body. The head connecting member has a through connecting slot and a peripheral securing slot. The reinforcing body has a receiving cavity, a first reinforcing groove and a second reinforcing groove formed on two sides of the receiving cavity respectively. The first reinforcing groove and the second reinforcing groove are aligned with two ends of the peripheral securing slot in such a manner that a corner portion of the screen fabric is securely attached in the receiving cavity, while the tightening portion of the tightening wire is arranged to pass through the first reinforcing groove and the second reinforcing groove and fittedly receive in the peripheral securing slot.
Abstract:
A Metal-Oxide-Semiconductor (MOS) device is disclosed. The MOS device includes a substrate, a well region formed in the substrate, and a gate located on the substrate. The MOS device also includes a first lightly-doped region arranged in the well region at a first side of the gate and overlapping with the gate, and a second lightly-doped region arranged in the well region at a second side of the gate and overlapping with the gate. Further, the MOS device includes a first heavily-doped region formed in the first lightly-doped region, and a second heavily-doped region formed in the second lightly-doped region. The MOS device also includes a first high-low-voltage gate oxide boundary arranged between the first heavily-doped region and the gate, and a second high-low-voltage gate oxide boundary arranged between the second heavily-doped region and the gate. The gate covers the first high-low-voltage gate oxide boundary and the second high-low-voltage gate oxide boundary at the first side and the second side of the gate, respectively.