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BibMe Free Bibliography & Citation Maker - MLA, APA, Chicago, Harvard. EverWeb is the all new drag and drop Mac website builder that makes it super easy to create beautiful websites. View and Download JUKI DDL-5530N handbook online. JUKI Industrial Sewing Machines Handbook. DDL-5530N Sewing Machine pdf manual download. Welcome to my Free Pattern section! Here you'll find projects of all different types that reflect my love of kawaii things. I like to share patterns that are beginner. Brace treatment for patients with Scheuermann's disease. Abstract. Background. In contemporary literature few have written in detail on the in- brace correction effects of braces used for the treatment of hyperkyphosis. Bradford et al. found their attempts effective, treating Scheuermann's kyphosis with Milwaukee braces, but their report did not specifically focus on in- brace corrections. White and Panjabi's research attempted to correct a curvature of > 5. Milwaukee brace. In Germany they avoid this by utitlising braces to treat hyperkyphosis that use transverse correction forces instead of distraction forces. ![]() Further efforts to reduce brace material have resulted in a special bracing design called kyphologic™ brace. The aim of this review is to present appropriate research to collect and evaluate possible in- brace corrections which have been achieved with brace treatment for hyperkyphosis. This paper introduces new methods of bracing and compares the results of these with other successful bracing concepts. Materials and methods. Scheuermann's hyperkyphosis or a thoracic idiopathic hyperkyphosis (2. May 2. 00. 7 and December 2. The average Stagnara angle was 5. In- brace correction was recorded and compared to the initial angle using the t- test. Results. The average Stagnara angle in the brace was 3. The average in- brace correction was 1. The verage percentage of in- brace correction compared to the initial value was 3. The differences were significant in the t- test (t = 5. To make these results comparable to other studies, the kyphosis angle of 2. NVA) percentage of in- brace correction. By doing this a correction of 5. There was no correlation between the percentage of in- brace correction and the age of the patient, but a highly significant correlation between percentage of in- brace correction and the initial Stagnara angle. Discussion. If we assume that outcome of brace treatment positively correlates with in- brace correction, the treatment should be initiated before the curvature angle exceeds 5. In scoliosis bracing, if the average in- brace correction equals > 1. Applying this to hyperkyphosis patients, the average in- brace correction with this brace was also > 1. We therefore estimated to achieve a favourable outcome using this brace type (once compliance was attained) especially when comparing the correction effects achieved with this new approach to the correction effects reported upon using the Milwaukee brace. The latter brace has been shown to lead to beneficial outcomes in long- term studies with comparable in- brace corrections. Conclusion. Conservative treatment of Scheuermann's hyperkyphosis in international literature is generally regarded as an effective treatment approach. Physiotherapy and bracing are the first- line treatments for this condition. An average in- brace correction of > 1. The kyphologic™ brace leads to in- brace corrections comparable to those of the Milwaukee brace, which has previously been shown to provide beneficial outcome in the long- term. A prospective follow- up study seems desirable before final conclusions can be drawn. Future studies should focus more on thoracolumbar and lumbar curve patterns, because these patterns may predict chronic low back pain in adulthood with reduced quality of life of the patients and high costs with respect to medical care and occupational sickness leave. Surgery according to international literature is rarely necessary in this condition. Background. Scheuermann's disease initially was described as a rigid kyphosis associated with wedged vertebral bodies occurring in late childhood [1]. Scheuermann's disease has been of significant orthopaedic interest in the past, as it may be painful during its relative acute phase and more importantly, because it may cause significant trunk deformity that can progress. Sorensen subsequently described specific criteria for diagnosis in 1. Others articles have used different criteria. These include increased thoracic kyphosis, disc space narrowing and irregular endplates associated with a single- wedged vertebra [3,4], a kyphosis of greater than 4. Schmorl's nodes, see Figure 1.) [6,7]. Scheuermann signs on a lateral X- ray. Characteristic radiographic findings in a patient with Scheuermann's disease in the late stage (kyphosis, wedging of vertebral bodies, endplate irregularities, Schmorl's nodes). Wenger and Frick [8] in 1. Pub Med listings, the condition of Scheuermann's kyphosis in the past 1. There are some points of discrepency upon the definition of the pathological deviations of normal and sagittal spinal alignment [8]. Unlike scoliosis, where any significant lateral deviation in the coronal plane is abnormal, the sagittal alignment of the spine has a normal range of thoracic kyphosis. The Scoliosis Research Society has defined this range as being from 2. In a study of 3. 16 healthy subjects with ages ranging from 2 to 2. It was also noted that the average thoracic kyphosis increases with age from 2. The lack of a consistent definition of Scheuermann's kyphosis in the literature makes it difficult to compare studies as the inclusion criteria may differ, thus making the distinction between the spectrum of upper normal thoracic kyphosis, severe adolescent roundback deformity, and Scheuermann's disease almost impossible [8]. Little is written on the subject of the lumbar or thoracolumbar patterns of Scheuermann's disease. The Schmorl's nodes and endplate irregularity may be so severe that the lower lumbar Scheuermann's disease can be confused with infection, tumor, or other conditions [8] (Figure 2.). The etiology of lumbar Scheuermann's kyphosis is unknown, but strong associations with repetitive activities involving axial loading of the immature spine favour a mechanical cause [8]. Although the radiographic appearance may be similar, lumbar Scheuermann's kyphosis is regarded as a different entity than thoracic Scheuermann's kyphosis [8]. Unlike classic thoracic Scheuermann kyphosis, the treatment of lumbar Scheuermann's disease was not controversial in 1. This loss of lordosis in this area of the lumbar or thoracolumbar spine means that Scheuermann's disease can be one of the predictors of developing chronic low back pain in adulthood: Loss of lumbar lordosis correlates well with the incidence of chronic low back pain in adulthood [1. Sedentary lifestyle contributes to loss of lumbar lordosis as well as scoliosis and thoracolumbar or lumbar kyphosis [1. It is necessary to recognise that the severity of symptoms in patients with back pain, as they increase in a linear fashion with progressive sagittal imbalance. The results of these studies also show that hyperkyphosis is more favourable in the upper thoracic region but very poorly tolerated in the lumbar spine [1. As it has been shown, lumbar re- lordosation stabilises the spine with respect to lateral deformity [1. Ten years after this review by Wenger and Frick [8], lumbar Scheuermann's disease ought to have been investigated specifically, focussing upon the prevention of chronic low back pain in adulthood. According to Wenger and Frick [8] the incidence of Scheuermann's disease has been estimated at 1 to 8% of the population [2,2. The typical presentation is in the late juvenile age period from 8 to 1. Patients with thoracic roundback, who have classic type I Scheuermann's disease, may have pain in the thoracic spine area, but more frequently present because of patient and parental concerns related to trunk deformity. The gender prevalence of Scheuermann's kyphosis is difficult to determine from the literature, and may be related to how Scheuermann's kyphosis is defined. In general, males and females are involved with equal frequency [9], although the reported ratios have varied widely [8]. Patients with Scheuermann's kyphosis may have an angular thoracic kyphosis (Figure 3.), often with accompanying compensatory lumbar lordosis and increased cervical lordosis. The position of the head is often in forward protrusion (also known as gooseneck), and the shoulders are often positioned anteriorly. Forward bending typically accentuates the kyphotic deformity, with a sharply angulated bend noted in the thoracic or thoracolumbar region. The deformity is relatively fixed, remaining during attempted hyperextension of the spine. Tightness of the hamstrings is common, but the neurologic examination is usually otherwise normal [8]. Lateral view of a patient with severe Scheuermann disease. Software to Download. USGS uses Git. Hub for all new software development, as well as open sourcing older software as time allows. See how our applications work and collaborate with us at USGS Git. ![]() Hub. 3. D Focal Mechanisms. Authors: Keith A. Labay and Peter J. Haeussler. Usage: View earthquake focal mechanism symbols three dimensionally. ![]() Platform: Windows. Interface: Arc. Scene® 9. Input: A GIS point dataset of earthquake locations containing strike, dip, and rake values for a nodal plane of each earthquake. Download: See. online documentation. D Focal Mechanisms is a tool for viewing earthquake focal mechanism symbols three dimensionally. This tool operates within the Environmental Systems Research Institute (ESRI®) GIS software Arc. Scene® 9. x. The program requires as input a GIS point dataset of earthquake locations containing strike, dip, and rake values for a nodal plane of each earthquake. Other information, such as depth and magnitude of the earthquake, may also be included in the dataset. By default for each focal point, 3. DFM will create a black and white sphere or “beach ball” that is oriented based on the strike, dip, and rake values. ![]() · Not sure of all of the features and benefits of DTP software? This article explains the top 5 uses of desktop publishing software and how you can. Chapter 5. Information Systems Software. 5.1 Software Overview. Computer hardware is virtually useless without computer software. Software is the programs that are. Finally for a long time the compression algorithm used by GIF was patented. Consequently it was not available for use by many image processing programs, such as. If depth values for each earthquake are included, the focal symbol will also be placed at its appropriate location beneath the Earth’s surface. D Velocity Modeling. Author: Cliff Thurber. Platform: Unix, Mac. Download: SIMUL2. Fortran code (VMS compatible) for 3- D velocity model determination and hypocentral location with local earthquake data. Full inversion, not tomography, this is the program written by Cliff Thurber and modified by others. Cleanstrain+Author: John Langbein. Usage: Analyze strainmeter data in order to estimate tidal coefficients and pressure admittance. Platform: Unix and/or Mac OS X (Requires Fortran compiler for Mac OS X)Interface: Command line. Input: Time series of strainmeter data. Output: Cleaned- up strainmeter data. Docs: Online documentation. Download: cleanstrain+. Cleanstrain+ is a program to process strainmeter data. This code will simultaneously estimate the tidal constituents, pressure admittance, offsets, rate changes, and other terms using least- squares but, importantly, incorporating the temporally correlated nature of strain data (that is, the power spectra is red). CLUSTER2. 00. 0Author: Paul Reasenberg. Usage: Identify clusters (e. Platform: Unix, or any platform with Fortran. Interface: Parameters read from standard input. Input: Catalog text file. Output: Several text files. Download: Fortran source code (3. Makefile (2. 33b). CLUSTER2. 00. 0 recognizes clusters in space- time in an earthquake. It is intended for use in removing aftershocks or. The methods used are. Second- Order Moment of Central California. Seismicity, 1. 96. P. Reasenberg, JGR v. The current version (CLUSTER2. However, it is not fully Y2. While it reads the Y2. K formats for HYPOINVERSE. HYPO7. 1, CLUSTER2. Com. Cat Wrapper Libraries. Bulk access via scripts, programs, and tools for obtaining specific products from Com. Cat (the earthquake catalog). Coulomb 3 is designed to investigate Coulomb stress changes on mapped faults and earthquake nodal planes, and is intended both for publication- directed research and for university teaching and instruction. One can calculate static displacements (on any surface or at GPS. Problems such as how an earthquake promotes or inhibits. Coulomb. Geologic. Calculations are made in an. Okada [1. 99. 2]. We believe that one learns best when one can see the most and can explore. So the principal feature of Coulomb is ease of input. The. program has menus, sub- menus, check- items, and dialogue boxes to ease operation. The internal graphics are suitable for publication, and can be easily imported. Direct Green’s Function Synthetic Seismograms. Author: Fred Pollitz. Usage: Calculate synthetic seismograms on a radially stratified model. Platform: Unix, Fortran source codes. Input: Elastic parameters, density, Qp and Qs structure, finite fault parameters. Output: Synthetic seismograms at Earth’s surface or specified depth. Download: DGRFN. tar (1. MB). These programs are an implementation of the Direct Green’s Function. Friederich and Dalkolmo (1. Dalkolmo (1. 99. 3). They solve the seismic wave equation in a spherically layered isotropic. For. each spherical harmonic degree l and azimuthal order number m, the (l,m). Earth’s surface, and a homogeneous isotropic elastic solid at the. Earth model. The computation of synthetics is stable. EIDS - Earthquake Information Distribution System. NOTE: EIDS has been replaced by PDL. EIDS is only needed as a component of PDL for advanced users who are running a PDL hub. The Earthquake Information Distribution System (EIDS) provides a method for receiving earthquake data over the Internet in near- real time. EIDS replaces the Quake Data Distribution System (QDDS) and provides either CUBE or EQXML formatted output messages. Est_noise. Author: John Langbein. Usage: Analyze time- series data to quantify temporal correlations and. Platform: Unix or Mac. Requires a Fortran compiler. Interface: Command line. Input: Time series data. Output: Measures of power- law noise, white noise, and more. Estimates of rates, offsets, and more, along with their standard errors. Downloadest_noise. Importantly, the presence of temporal correlations in. GPS. and borehole strainmeter data, and it can be applied to other data types. FPFIT, FPPLOT and FPPAGE. FPFIT is a Fortran program that computes double- couple fault. P- wave first motion data using a grid. The companion programs FPPLOT and FPPAGE plot. There are additional programs in the package to. P& T axes for suites. Graizer- Kalkan (2. Ground- Motion Prediction Equation. Authors: Vladimir Graizer, Erol Kalkan. Usage: Ground motion predictions for engineering applications. Platform: Mat. LAB on Windows, Mac or Linux. Interface: Command line. Output: Graphics and text. Manual: Comments in source code; Open- File Report and BSSA article. Download: (7. 1 Kb). Graizer- Kalkan (2. GMPE) is designed to predict peak- ground acceleration and 5% damped pseudo- spectral acceleration response ordinates for shallow- crustal continental earthquakes to be used in earthquake- engineering applications including probabilistic and deterministic seismic hazard analyses. The GK1. 5 can be used for earthquakes with moment magnitudes 5. The GK1. 5 GMPE is coded as a Mat. LAB function (titled “GK1. An example Mat. LAB code (“run. GK1. 5. m”) to generate a 5% damped pseudo- spectral acceleration response spectrum for a given hazard condition is also provided. The user can change the input parameters to construct a site- specific response spectrum considering different hazard conditions. HASH 1. 2. Authors: Jeanne Hardebeck and Peter Shearer. Usage: Calculates earthquake focal mechanisms. Platform: Unix. Interface: Command line / text input files. Output: Text files. Download: hash. v. MB). HASH is a Fortran 7. P- wave first motion polarity observations. S/P amplitude ratios. HASH is designed to produce. The technique is described by Hardebeck and Shearer. BSSA 9. 2, pp. 2. Examples are provided for data in FPFIT. The code is designed to be as input- format independent. Hypo. DD is a Fortran computer program package for relocating. DD) algorithm of Waldhauser. Ellsworth (2. 00. The DD technique takes advantage of. Frechet, 1. 98. 5; Got et al., 1. HYPOINVERSE Earthquake Location. Author: Fred Klein. Usage: Locate earthquakes and determine magnitudes in a local. Platform: Unix or Vax, Fortran source code. Interface: Command line, files or keyboard. Input: ASCII text. Output: ASCII text. Manual: Extensive open- file document, in Microsoft Word and. Tutorial: Simple examples included in manual Download: version 1. MB). HYPOINVERSE2. P and S arrival. times, amplitudes and coda durations. The present versions. HYPOINVERSE2. 00. Hypoinverse version 1. Earthworm seismic acquisition. AQMS) and has thus gotten wide use. Crustal. models can be multiple to cover different regions, and either. Version 1. 3. also supports negative magnitudes, independent S models, and crustal models from the HYPOELLIPSE program, including layer models, gradient over halfspace models, depths relative to sea level, negative depths above sea level, and use of station elevations. It is Y2. 00. 0 compatible. Mac. R1. DAuthor: Jim Luetgert. Usage: 1- D travel time calculation. Platform: Mac OS XInterface: Menu driven. Output: PICT file. Download: Mac. R1. D V1. 1. 7 (1. 6 MB). Mac. R1. D is a one- dimensional seismic travel- time calculator for Macintosh. Kotaku. Sega also revealed a trailer for the remake of Yakuza 2 earlier today. Like the remake of the first game, Yakuza: Kiwami 2 will see the second game in the series recreated in the Dragon Engine used for Yakuza 6 and features some additional missions and playable characters. It’s out in Japan this December. ![]() · Easily Mount an ISO in Mac OS X. 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![]() I want to emphasize the visual loudness of this thing. Even at the lowest brightness, without the two sidekicks, the DreamScreen is really bright.This TV Backlighting System Fucked Me Up. This is opulence. Suddenly, there is extra light blasting from behind my TV screen, making a day- glow title sequence positively atomic. You've heard the classic writing rule, "Show. Don't Tell." Every writing blog ever has talked about it, and for good reason. Showing, for some reason, is really. If we've ever made you laugh or think, we now have a way where you can thank and support us! The best part of most action movies, some video games, and a handful of. The Dream. Screen, a backlighting system that’s designed to make your TV viewing more immersive, is a luxury that I absolutely don’t need. In theory, the supplementary lights change color based on the pixels on the TV screen for an “immersive theater experience.” In practice, it’s an overstimulating, distracting, nauseating novelty, and I can’t get enough of this shit. What is it? A group of LEDs on the back of a television that make viewing more immersive. Like. Those lights are very pretty. No Like. It can be really distracting and there are a lot of wires. I’m a fan of the Phillips Hue wireless LED lights, and find the ability to change the color of my room with my phone delightful. Dream. Screen, loosely based on the original Philips Hue- adjacent Ambilux television, works in the same vein, so I was keen on it. I do a lot of stupid things to entertain myself, like acquiring a 5. Samsung television with a gimmicky curved display. Dream. Screen seemed like an upgrade. I was naive. I didn’t realize how much I could loathe and love one product. Depending on what kind of TV you have, the kit costs between $1. ![]() ![]() HD or 4. K, and the size of your screen). The setup is a small feat in and of itself. There are chunky LED light strips to tape to the back of a TV, differently spaced depending on the size of your tv (there’s a guide). There’s a smartphone app that works with your wi- fi to download and set up. Then you need to plug your video source into the video input of the round HDMI splitter, and plug the output into your TV. There are also two optional “sidekick” lights for extra glow ($6. This thing takes up three fucking outlets. Get ready for a wire rat king. You do get the “bigger, brighter” TV the product’s website promises, but the lights don’t exactly extend the screen space; they sometimes echo, and sometimes compliment the colors of pixels around the very edges of your screen, sending rays of color from behind your television across your walls in time with whatever is on. In the case of a dramatic explosion, this is all very sensible, as a good part of your wall will look onfire. It really shines with material intended to be trippy—like whatever the hell that was in episode eight of Twin Peaks: The Return (above), or that psychedelic 2. A Space Odyssey sequence. The more you give it—pink and blue neons, deep reds—the more you get. But it can be confounding in undramatic sequences, with bright blurry bits of clothes and other immovable objects echoing off screen, like dislocated fuzzy chunks. Daylight and black- and- white sequences result in a bright bluish- white screen halo. Letterboxing also presents an obvious, chasmic problem—gaps. I want to emphasize the visual loudness of this thing. Even at the lowest brightness, without the two sidekicks, the Dream. Screen is really bright. I like to watch movies in complete darkness and concentrate on the screen. With the Dream. Screen, the entire room is illuminated, including the dirty laundry in the far corner that I’m trying to ignore. Say you’re the type of person with serious respect for cinematography. The screen bleeding out of the frame in blurry puddles every which way might not be what the cinematographer intended. Despite and because of its flaws, this truly is an accessory of visual excess. There’s also the product’s weird “health benefits” claim that it “reduces digital eye strain.” The claim cites a single 2. TV not hurt your eyes so much. But the study also says that these results are “modest” and sometimes even the opposite. Speaking from personal experience, staring into a significantly brighter TV area is the opposite—my eyes ache after a while. So I wouldn’t take this study very seriously. Where Dream. Screen really shines is gaming. I sit closer to the TV while I game and my focus is more sharply drawn to specific sections of the screen. This position allows the peripheral edges of the game space to blend with the Dream. Screen light extensions and I’m significantly more immersed, just as Dream. Screen wanted. When I’m not watching the entire screen, the patchiness of Dream. Screen’s illumination isn’t a big deal. It’s also more dynamic because more is happening faster, so it’s swishing around me. That’s neat. For most everything else, it’s immersive, but kind of like watching TV wasted is immersive. You’re going to get pulled into the light. You’ll want to squint. Your eyes might skid. You might ask yourself, do I really need to do this? Am I enjoying it? Why am I doing this? Excess and novelty are perfectly good reasons to try something. Getting overwhelmed and bored is a great reason to stop. Until then, the trick is getting used to something completely unnecessary. Awhile back, I saw Wonder Woman in 4. DX, which is extra 3. D, with moving theater seats and “effects.” For two hours in the theater the seat jostled me back and forth and gently spit water into my hair. It was completely unnecessary. But now I wonder, how am I supposed to watch another movie again without steamy, bumpy smell- o- vision? I wasn’t even sure I liked 4. DX, but I’m going back, obviously. Maybe I want to be thrown around. Maybe I’ll always want a “bigger, brighter” TV. Maybe I want to be perpetually overstimulated by entertainment technology. Maybe I want bright lights strapped to the back of my TV, for extra explosions. Nothing in life is perfect. A lot of the things aren’t even good. I think this thing is bad, but also good. No one really needs it, but it’s awfully easy to get used to. When I don’t use the lights, I miss them. Sometimes I’ll even put them on the ambient setting when I’m doing something else. Like “rainbow.” Or “fireplace.” Twinkling in the background. Completely fucking with my head. READMEIt takes up to three outlets. It’s really bright and dramatic. Best for really bright and dramatic sequences in movies and games. Great for gaming and explosions, not so much for movies you respect. How much you’ll like it really depends on your definition of “immersive.”Easy to hate, hard to leave. Microsoft SQL Server Transactions Per Second too high indication[ Bottom of Page | Previous Page | Next Page | Contents | Index ]Occurs when the number of transactions per second exceeds the Transactions Per Second upper bound threshold. A transaction is one or more database operations combined into a single. Transaction rate is affected by general system performance and resource. I/O, number of users, cache size, and complexity of requests. A high rate of transactions can indicate that some transactions are not completing. Using stored procedures in transactions speeds transaction processing because. SQL code in stored procedures runs locally on the server. · As the number of transactions per second. so does the number of predictions per second. They have been working with Microsoft to leverage SQL. Hi I'm doing some performance monitoring and was wondering if someone could shed some light on this counter? In particular what is considered low and what is. Managing SQL Server transactions is an important step toward ensuring smooth. Microsoft Events; Second shot for. January 2012 SQL Server: Transaction Management. ![]() The transactions. When the indication occurs often enough to trigger an event, the event. Tivoli Enterprise Console in the following format: < application_label> : Microsoft SQL Server < MSSQLServer. Name>. Database < MSSQLDatabase. Name> - Transactions Per Second is < MSSQLTransactions. Per. Sec>. which exceeds threshold of < Upper. Bound>. If you have Tivoli Business Systems Manager configured for your system, Tivoli Enterprise Console forwards the message. Tivoli Business Systems Manager. You can check the health of this resource model in the IBM Tivoli Monitoring Web Health Console. · I'm doing a stress test on my database (SQL Server 2008) and i need to know how many transactions the SQL is performing per second? Also is there any good. For more information, see the IBM Tivoli Monitoring Web Health Console documentation. The indication has the following attributes: application_class. The registered object's Tivoli Management Environment (TME) class. The registered object's Tivoli Management Environment (TME) label. The registered object's Tivoli Management Environment (TME) object identifier. The managed resource's version; for example, v. Microsoft Transaction HistoryMastercard Transactions Per SecondMSSQLDatabase. Name. The name of the selected Microsoft SQL Server database. MSSQLServer. Name. The instance name of Microsoft SQL Server. MSSQLTransactions. Per. Sec. The number of user transactions in the Microsoft SQL Server per second. Upper. Bound. The value set as the maximum allowable for the specified threshold. This indication has the following threshold: Transactions Per Second upper bound. For more information about this threshold, see ***. The following table describes the default settings for this indication. Setting. Default value. Send indications to Tivoli Enterprise Console. Yes. Send indications to Tivoli Business Systems Manager. No. Occurrences. 1Holes. Associated tasks and built- in actions. None. Note: If you have Tivoli Business Systems Manager configured for your systems, Tivoli Enterprise Console automatically. Tivoli Business Systems Manager. Do not change the configuration of the indication. Tivoli Business Systems Manager. Thresholds. The following table lists the thresholds that can be set for the Users/Transactions. For each threshold it shows the name, a short description. Threshold. Description. Default value. Active Transactions upper bound. A Microsoft SQL Server Active Transactions. Blocked Processes upper bound. A Microsoft SQL Server Blocked Processes. Logins Per Second upper bound. A Microsoft SQL Server Logins Per Second. Logouts Per Second upper bound. A Microsoft SQL Server Logouts Per. Second too high indication occurs if the number of logouts per second. Long Running Process Count upper bound. A Microsoft SQL Server Long Running. Processes too high indication occurs if the number of long- running processes. Long Running Process Duration. This threshold defines a long- running process. The value. represents the number of seconds a process can run before it is considered. Use this threshold in combination with the Long Running Process Count upper bound threshold. These. two thresholds work in combination to define the criteria to trigger a Microsoft SQL Server Long Running Processes too high indication. First, clarify the long- running process duration with this threshold. Then use the Long Running Process Count upper bound threshold. All. long- running processes are logged, even if an indication is not triggered. Percent User Connections Used upper bound. A Microsoft SQL Server Percent User. Connections Used too high indication occurs if the percentage of user. Transactions Per Second upper bound. A Microsoft SQL Server Transactions. Per Second too high indication occurs if the number of transactions per. Parameters. The following table lists the parameters that can be set for the Users/Transactions. The table shows the name, a short description, and the default. Parameter. Description. Default value. Exclude Databases. Type any database names that you want to exclude from. When this parameter. Microsoft. SQL Server for transaction activity. You can type more than one database. Separate multiple database names with spaces. Wildcard characters. Blank (monitors all databases)Tasks and built- in actions. None. Logging. You can log data for the properties of the managed resource listed in the. The table shows the context of the managed resource and the. IBM Tivoli Monitoring Web Health Console. Managed resource. Context. Properties. MSSQLDatabase. Transaction Performance. MSSQLServer. MSSQLServer. Name*The instance name of Microsoft SQL Server. MSSQLDatabase. MSSQLDatabase. Name*The name of the selected Microsoft SQL Server database. MSSQLVersion. The version number, v. Microsoft SQL Server. MSSQL_Active_Transactions. The current number of active transactions in the Microsoft SQL Server. Active transactions are transactions that are currently executing. MSSQL_Transactions_Rate. The number of user transactions in the Microsoft SQL Server per second. MSSQLServer. Blocked Process Performance. MSSQLServer. MSSQLServer. Name*The instance name of Microsoft SQL Server. MSSQLVersion. The version number, v. Microsoft SQL Server. MSSQL_Blocked_Processes. The total number of processes in the Microsoft SQL Server that are currently. A blocked process is a process that requests a lock, but waits for. MSSQLServer. Long Running Process Performance. MSSQLServer. MSSQLServer. Name*The instance name of Microsoft SQL Server. MSSQLVersion. The version number, v. Microsoft SQL Server. MSSQL_LRP_Blocked. The Microsoft SQL Server process ID of the Microsoft SQL Server process. MSSQL_LRP_Duration. The time duration (in seconds) that a long- running process has been. MSSQL_LRP_Spid. The system process ID for a long- running process on the Microsoft SQL. MSSQL_LRP_Host. Name. The host name of the workstation on which the long- running process exists. MSSQL_LRP_Status. The current status of this long- running process (sleeping, background. MSSQL_LRP_Command. The command currently being executed. MSSQL_LRP_Program. Name. The name of the application program that issued the command. MSSQL_LRP_Login. Name. The login name as defined by a Microsoft SQL Server user account. MSSQL_LRP_Nt_User. The Windows user name for the process (if using Windows Authentication). MSSQLServer. User Performance. MSSQLServer. MSSQLServer. Name*The instance name of Microsoft SQL Server. MSSQLVersion. The version number, v. Microsoft SQL Server. MSSQL_Logins. The number of user logins to the Microsoft SQL Server per second. MSSQL_Logouts. The number of user logouts from the Microsoft SQL Server per second. MSSQL_Percent_User_Connections_Used. The percentage of user connections currently used. The percentage is. MSSQL_User_Connections. The number of concurrent users that are connected to a Microsoft SQL. Note: An asterisk (*) denotes. Return codes. Table 2 contains a listing of resource model return. The return code number is displayed in the IBM Tivoli Monitoring Web Health Console status field, or. CLI examplewdmeditprf - P $Prof. Microsoft_SQL_Server_Users_Transactions \. High_MSSQL_Active. Transactions 0. 0. High_MSSQL_Blocked. Processes 0. 0. 00. High_MSSQL_Logins. Per. Sec 0. 0. 00. High_MSSQL_Logouts. Per. Sec 0. 0. 00. High_MSSQL_Long. Running. Process_Count 0. 0. High_MSSQL_Long. Running. Process_Duration 0. High_MSSQL_Pct. User. Connections. Used 0. High_MSSQL_Transactions. Per. Sec 0. 0. 00. Microsoft_SQL_Server_High_Logins. Per. Sec \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. Microsoft_SQL_Server_High_Active. Transactions \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. Microsoft_SQL_Server_High_Logouts. Per. Sec \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. Microsoft_SQL_Server_High_Blocked. Processes \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. Microsoft_SQL_Server_High_Transactions. Per. Sec \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. Microsoft_SQL_Server_High_Pct. User. Connections. Used \. - o 1 - h 0 - severity CRITICAL - Send. TBSM - "$My. Tec" \. ![]() BLOG PALING RAMAI PENGIKUT DI MALAYSIA. Berikut senarai 1. Malaysia dari Google Friends Connect. Pengikut- pengikut blog yang disenaraikan di bawah mungkin akan bertambah dari semasa ke semasa. Sebenarnya aku dah selaluuu pergi Wangsa Walk nii tapiiiii tak pernah pon try makan dekat U-Cafe sebab tempat dia nampak wahhhhhhhh eksklusifnyaaa. mestii mahal ni. Biasalah. Blog popular kan. Mesti hari- hari ada je orang nak follow kan. Setakat ini tiada lagi kot yang mampu mengejar pengikut Lyssa ini. Lyssa memang diakui seorang blogger yang rajin dan peramah. Tak sombong walaupun ada followers beribu. No wonder la punya followers beribu. Aku nie followers baru cecah 1k dah mula hidung tinggi. Buat mereka yang nak tutorial mengenai blog, boleh masuk blog Lyssa. Banyak tutorial dekat sana. Bukan hanya glamour di dunia blog, malah di dunia realiti juga. ![]() Mereka yang tiada blog pun kenal sama Fatin Liyana. Kawan- kawan lelaki aku pun selalu duk sebut- sebut nama Fatin ini. Dah keluar tv, keluar surat khabar, majalah apatah lagi. Kecantikan asli Fatin merupakan daya tarikan utama kepada blog Fatin. Dah nama pun cantik, suka betul la orang nak jadi pengikut blog. Sekali post entri beratur orang masuk tau. Aku pun tak terkecuali. Walaupun panjang gila entri dia tulis, gigih aku duk baca setiap patah. Kekadang baca sampai dua tiga kali. Apijol. Mula- mula blogger, kemudian model, kemudian pengacara, kemudian pelakon lepasnie mungkin penyanyi pulak kot. Blogger serba boleh Hanis Zalikha juga mempunyai pengikut blog yang sangat ramai tak terkejar olehku. Blogger tinggi lampai dan cantik ini mula melebarkan sayapnya ke bidang seni pula. Aku tak tengok lagi lakonan Hanis. Tapi haritu sempat juga tengok rancangan dibawah pengacaraan dia. Berbakat. Itu je aku boleh cakap. Dengar khabar Hanis pun ada berlakon filem. Mesti pengikut Hamis Jalika dah tak sabar nak melihat lakonan hebat beliau kan. Comel je dia gelar nama dia Hamis Jalika kat blog. Baru sahaja melangsungkan perkahwinan dengan Asfirdaus, abang kandung Fatin Liyana. Korang yang nak baca kisah perkahwinan mereka cepat- cepat la masuk blog Maria. ![]() Maria juga seorang Vlogger yang popular. Video beliau kalau tak cecah ratus ribu pageview memang tak sah. Aku dah lama mengikuti blog Maria. Dia punya entri sempoi dan lawak macam video dia jugak. Aku suka tengok gambar- gambar dekat blog dia terutama gambar bila dia buat muka pelik. Serious rasa macam nak lempang pun ada. Maria baca naya aku. Walaupun entri- entri Cik Epal mak datuk panjang bukan main, tapi aku baca jugak sampai habis. Sampai habis kau aku baca. Kekadang gelak sorang- sorang bila baca entri dia. Kebanyakan entri dia pulak pasal kisah hidup dia. Tapi diolah menjadi menarik sehingga menarik ramai orang masuk blog dia nie. Muka Cik Epal ada iras- iras artis Faradhiya sikit. Sikit la. Kbai. Irine pulak tak kurang hebatnya. Kecantikan yang dimiliki Irine merupakan antara tarikan orang sukakan blog dia. Rasanya semua sudah maklum Irine merupakan seorang isteri muda. Dah kahwin tahu Irine nie. Rasanya lagi muda daripada aku. Mungkin 2. 0 tahun. Aku pun tak berapa pasti.
Irine juga bakal jadi ibu. Nak tahu kisah hidup Irine, majlis perkahwinan, kisah dia jadi isteri muda, kisah dia bakal jadi ibu muda, boleh lah terjah blog Irine. Blog jejaka handsome ini mempunyai auranya yang tersendiri. Satu post pun komen dah cecah beratus- ratus. Tapi, Zack dah jarang post entri baru. Kalau masuk blog dia memang tak berupdate. Entri sama je. Bila nak update aku pun tak tahu la. Dia punya lukisan memang cun habis. Ayat dia guna pun sangat bersahaja. Walaupun satu entri panjang ibarat karangan 7. Contohnya aku. Siapa tak kenal abang tough Ben Ashaari. Segmen- segmen yang Ben buat telah mempopularkan blog Ben. Aku pun pernah join segmen Ben. Sejak mempunyai anak comel, Qhalif, Ben dah jarang buat segmen baru. Dah lama ni aku tunggu segmen terbaru dari Ben. Mungkin dia busy duk layan Qhalif mana ada masa dah nak buat segmen. Ben selalu juga post pasal Qhalif dekat blog. Korang nak tahu kisah Ben dengan Qhalif boleh la masuk blog Ben. Tapi rasanya korang pun dah kenal dia nie kan. Pemilik blog ini merupakan bekas tunang penjaga gol kebangsaan, Khairul Fahmi Che Mat. Mungkin status dia juga yang mempopularkan blog ini. Blog ini sangat popular buktinya pageviews blog ini sahaja sudah mencecah jutaan pembaca. Pemilik blog juga seorang yang manis dan bertudung litup. Siapa tidak suka mengikuti blog gadis kecil molek yang ramah dan comel macam Yuyu Zulaikha kan. Baru- baru ini yuyu ada post entri pasal dia jadi cover untuk majalah dara. Terpampang muka dia depan majalah dara. Hebat bukan ? Yuyu juga pernah masuk tv, masuk surak khabar. Dah jadi artis blogger dah yuyu nie. Menggelarkan dirinya sebagai Mr. K. Blog ini digilai ramai awek kat luar sana. Dia punya entri memang menarik siap dengan ayat- ayat gramatis dan power. Aku pun kekadang kalau baca blog Mr. K terus otak rasa terfikir- fikir akan isi kandungan entri. Mr. K nie macam doktor cinta pun ada. Selalu pembaca bertanyakan macam- macam soalan pasal cinta kat dia. Fasionista yang suka benar bergambar. Nampak kamera terus galak duk posing. Menarik mengikuti perjalanan hidup seorang Nisa Kay ini. Blog dia juga banyak entri mengenai review filem, shopping online, entri yana samsudin pun banyak sebab dia die hard fans yana samsudin. Rasanya blog ini pun dah jarang update. Aku suka jugak baca blog ini sebab entri dia lawak tak ingat. Seorang peguam yang pandai berfesyen dan pandai berkata- kata. Dah nama pun peguam kan, mesti la pandai berkata- kata. Blog Nurul banyak menceritakan kisah hidupnya dari seorang pelajar menjadi seorang yang berkerja. Dari single menjadi isteri orang. Dah nak dapat baby pun Kak Nurul nie. Blog ini juga mengandungi banyak gambar comel Kak Nurul. Entri dia kahwin paling best rasanya. Setiap entri memang ada maksud tersirat yang ingin disampaikan. Ayat yang Kak Nurul pakai pun best- best aku suka jugak copy paste ayat dia. Kantoi. hehe. Blog ini dimiliki oleh seorang fasionista model muslimah. Cantik sangat pemilik blog ini tau. Blog Fatin pun blog personal juga. Banyak cerita pasal life dia. Pasal dia pergi travel, pasal online shopping, keluarga ect. Setiap entri diselitkan gambar- gambar yang menarik. Aku jarang masuk blog Fatin nie. Sebab blog dia macam more to girlish. Kalau lelaki nak stalk gambar- gambar comel dia jemput la masuk. P/s : Kalau korang tahu blog ramai pengikut di Malaysia yang aku tak senaraikan, share- share la kat ruangan komen dibawah okey. Blog aku bilalah nak ada ramai pengikut macam blog diorang kan. |
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