Secured-core PCs provide protections that are useful against sophisticated attacks and can provide increased assurance when handling mission-critical data in some of the most data-sensitive industries, such as healthcare workers that handle medical records and other personally identifiable information (PII), commercial roles that handle high business impact and highly sensitive data, such as a financial controller with earnings data.

For example: Consider a time sync hierarchy with a highly accurate source, two intermediary NTP servers A and B, and the target machine in that order. To obtain the cumulative network latency between the target and source, measure the average individual NTP roundtrip times (RTTs) between:


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A high availability Tableau Server installation is a special type of distributed installation, designed to accommodate failure in key server components without loss of complete server functionality. To create an HA installation, follow the same steps you take to create a distributed deployment but include additional steps to make the deployment highly available. These additional steps include adding at least two additional nodes (for a minimum of three nodes in the cluster), adding a second instance of the repository, and second instances of the data engine/file store, adding additional gateway processes, and deploying a Coordination Service ensemble. You can also add a load balancer to distribute requests among the gateways.

Customers have been running their Windows workloads on AWS for over a decade. Running business-critical applications often requires Microsoft SQL Server databases to be highly available. The high availability requirement demands that there are no single points of failure in the SQL Server deployment architecture. With a high availability setup, you have a cluster of two nodes with a primary and a secondary. If the primary fails, the cluster automatically fails over to the secondary, thus ensuring continued database activity for your applications. Microsoft SQL Server provides a set of features under the umbrella of SQL Server Always On to enable such redundant, high availability deployments.

We recently introduced new features on Amazon FSx for Windows File Server to simplify deploying and using shared storage to host your databases. These features reduce complexity and cost of running SQL Server Always On deployments. We introduced native support for multi-Availability Zone file system deployments on Amazon FSx for Windows File Server (Amazon FSx). Native support makes it easy to deploy Windows file storage in AWS with high availability and redundancy across multiple Availability Zones. Along with this launch, we also introduced support for SMB Continuously Available (CA) file shares. This new capability enables you to simplify your SQL Server Always On deployments by using fully managed, highly available shared storage on Amazon FSx to host your databases.

While FCI is preferable to AG in many scenarios, it has traditionally been difficult to deploy and manage. This is because it requires shared storage to enable the secondary node to continue to have access to the database storage upon a failover without the need to replicate data between the nodes. From a high availability point-of-view, the shared storage must be resilient and highly available. Otherwise, it becomes a single point of failure because the FCI remains offline if the shared storage becomes unavailable, regardless of the number of nodes in the failover cluster. Until recently, you needed dedicated administrators responsible for the complexities of architecting and maintaining a robust shared storage solution that provides high availability and resiliency. Additionally, you typically paid for third-party storage replication software solutions (like SIOS DataKeeper and StarWind Virtual SAN) over and above the storage infrastructure costs.

English-Learning students: In addition to ability and achievement assessments, the Washington English Language Proficiency Assessment (WIDA ACCESS) is used to evaluate students whose first language is not English to determine their ability for rapid language acquisition which can be a characteristic of highly capable learners.

Special Education students: Students who qualify for Highly Capable program services and also qualify for either special education services or a 504 plan are often referred to as twice-exceptional students. Additional data available for students with IEPs may be used in the identification process when relevant to determine a need for highly capable program services.

Windows have many uses in your home from adding light to making your home more visually appealing. However, old, poorly made, drafty, or degraded windows can waste lots of energy and leave you very uncomfortable when weather is the most extreme. Here are a few big indicators that it may be time to replace your windows.

ENERGY STAR windows come with a label indicating where the product is certified for. ENERGY STAR ratings vary depending on the climate where you live so you get the right balance of comfort and savings. Here are some key window performance parameters to consider before you shop.

If you are considering buying new windows, it is important to choose ones that make sense for your climate. While some windows are better at keeping you warm in the winter, others help reduce air conditioning costs in the summer. Some windows balance heat and cold for climates in the middle of the country. Here are some parameters to consider:

Replacement windows are sold either through a window installation company salesperson who comes to your house, or through a dealer/retailer where you choose the contractor/installer and the windows independently.

Upgrading to ENERGY STAR certified windows lowers household energy bills by an average of 12%, but window replacements can be expensive. There are several ways to help reduce these costs. Learn more about financial incentives that may be available to you.

There are currently federal tax credits for the cost of purchasing ENERGY STAR windows, and skylights for 30% of the cost up to $600. Exterior windows or skylights must meet the ENERGY STAR Most Efficient criteria. This tax credit is available through December 31, 2032. Learn more about this tax credit.

ENERGY STAR certified storm windows are an affordable option for homes where full window replacement may be difficult, such as lower-income households, low-rise multi-family households, households working with HUD or weatherization programs, or households in historic preservation districts.

EPA estimates that on a national average, ENERGY STAR certified (low-e) storm windows can save homeowners about 20% on their annual heating and cooling bills when installed over single-pane clear glass windows (without existing storm windows). You can expect to pay back the incremental cost of the ENERGY STAR certified storm windows in about three (3) years.

Consumers who already have clear glass storm windows over their single pane windows and replace the storms with ENERGY STAR certified (low-e) storm windows can save an additional $50 per year on heating and cooling (about 2%) on a national average.

Y. Li, Z. Y. Wei, H. G. Zhang, E. K. Liu, H. Z. Luo, G. D. Liu, X. K. Xi, S. G. Wang, W. H. Wang, M. Yue, G. H. Wu, X. X. Zhang; Windows open for highly tunable magnetostructural phase transitions. APL Mater. 1 July 2016; 4 (7): 071101.

These windows/doors are gorgeous!!! I am so pleased with them. My husband is impressed with their quality and my daughter, the architect for this project, is also very impressed. She is hard to impress so way to go Cascadia! I also want to mention that the people who did your crating did an absolute top notch job.

Since the original photoelectrochromic devices (PECDs) based on liquid dye-sensitized solar cells (DSSCs) was described by Bechinger et al.1, the development on self-driven smart windows has been evolving for quarter century2. One step forward for PECDs was disclosed by Wu et al.3, who presented the first photovoltachromic devices (PVCDs) combining the photovoltaic (PV) and electrochromic (EC) features of DSSCs in a separated electrode architecture3. This breakthrough broadened the PV technologies to all solid-state candidates, such as amorphous silicon (-Si), organic photovoltaic (OPV)4, and perovskite solar cell (PSC)5. Nevertheless, the integration of solid PVCDs for building envelopes was filled with more challenges than liquid PECDs. Starting from the external connections between separated opaque PV and EC devices, these systems were not truly monolithic structure devices, and in simple terms, merely shortened power delivery distance from the photovoltaic power generator to terminal electrical equipment, which were too cumbersome for building integrated applications. Soon afterwards monolithic integration was succeeded by a parallel side-by-side architecture. Unfortunately, the opaque or semi-transparent PV component was unable to be chromotropic as an inactive area, limited its application as ideal smart windows requiring 100% active coverage (Fig. 1a). Ultimately, vertical tandem architecture was considered as the most advanced integrating strategy. This monolithically hierarchy configuration demanded a high visible transparency for both PV and electrode layers. Otherwise these layers would block the visible sunlight through smart windows for indoor illumination. In view of this, recently semi-transparent characteristics had applied into tandem structure PVCD by using two pathways: (i) Physically reducing the thickness or patterning voided windows on intrinsically opaque PV layers led to low pristine transmittance (T%) and low contrast ratio in PVCDs (Supplementary Table 1). (ii) Chemically broadening the optical bandgap of PV materials to absorb only partial visible wavelength resulted in an uncomfortable visual environment and poor color-rendering index (CRI) (PVCDs appeared orange or brownish, since they only absorbed blue-green radiation). In this work, we present a facile full-solution processing technique to realize a full-transparent perovskite PV layer with high pristine T% and excellent CRI. Based on this we manufacturing a monolithic photovoltachromic smart window using visibly-transparent perovskite and flexible electrochromic ion-gel6. be457b7860

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