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Maya Tutorial Advanced Dynamics: nCloth & Hair - Animating MitosisThis tutorial is designed to introduce several approaches to animating various cellular process using advanced dynamic systems such as nCloth and Hair.
Maya dynamics are powerful but take some time and practice to master. This is mostly because their implementation in Maya is less than intuitive. To understand why the various dynamic systems are set up the way they are you have to understand that historically, as each version of Maya has been introduced, additions have been made to the dynamics. Particles and rigid body dynamics have only changed a little since Maya version 4. Maya 8 introduced the nucleus dynamic system which is used for nCloth and is rumored to replace the current particle system in upcoming versions of the software.
Nucleus is a more advanced particle system that, unlike the standard Maya particle dynamics, has a built-in system for calculating particle interactions (the nucleus solver), which is like a much more advanced and accurate version of Maya particle springs. Currently the Hair solver is self-contained and not attached to nucleus however it is very similar to the nucleus nCloth system. Maya Hair was introduced before nCloth.
nCloth and hair are extremely powerful and surprisingly easy to use depending on the requirements of the scene. You can create some interesting dynamic movements to the objects in your scene without the need for complex expressions and connections. nCloth and hair systems can also interact with Maya particles and fluids as well, layering such dynamic simulations is sometimes required to create the very specificCisco Networking Academy ProgramPNIE gives Cisco Networking Academies the opportunity to deliver ... The PNIE course expands and strengthens the Cisco Networking
The Cisco ® Networking Academy ® Program teaches valuable networking and IT skills to students and worke worldwide who are interested in expanding their IT knowledge or starting a career in the technology industry. The Networking Academy program foste local economic growth by providing innovative IT curricula, as well as itructor development and support, to help produce a skilled workforce. Changing the Way People Learn More than two million students have successfully completed Cisco Networking Academy Program coues in high schools, colleges and univeities, technical and military schools, and community- based educational organizatio around the world. The coues use a blended learning model to integrate face-to-face teaching with challenging online curricula, hands-on lab exercises, and an Internet-based assessment tool. Since being launched in 1997, the Networking Academy program has been implemented in more than 165 countries, with coues taught in nine languages. This industry-leading program provides an educational framework that prepares students for networking and IT-related caree
Get PDFMetaprogramming RubyDomain-Specific Languages for Programmers Metaprogramming • My definition: “programming your programming.” • Change the way you program in your programming language. • Transform your general -purpose language … • Make it a domain-specific language. • Program in a language designed for the problem you’re solving. isp • Metaprogramming seems to have originated in Lisp. Lisp is a programmable programming language. —John Foderaro In Lisp, you don’t just write your program down toward the language, you also build the language up toward your program. —Paul Graham • Lisp isn’t the only programmable language Ruby.
Rubyists have been rediscovering metaprogramming. • Ruby style and idioms are still changing and adapting. Rails leverages metaprogramming heavily. • To great effect! • Ruby is a natural for metaprogramming.
Download pdf Metaprogramming RubyStandardizing Network Access Control: TNC and Microsoft NAP to InteroperateTwo leading network access control standards — TCG’s Trusted Network Connect (TNC) and Microsoft’s Network Access Protection (NAP) — will now interoperate, providing enterprises with simpler, more cost-effective, scalable, and interoperable endpoint integrity and network access control.
To improve endpoint and network security, enterprises have been quick to embrace the notion of network access control. The concept is simple: when a device — also known as an endpoint — connects to a network, the user’s identity and the health of the endpoint are checked. If they comply with the network’s policies, access to the network is granted. If not, the endpoint may be remediated by applying the latest patches or scanning for viruses.
By improving endpoint security, companies can better defend against a number of increasingly complex Internet-borne attacks. Attackers — including organized criminal rings — now often utilize advanced malware which combines rootkits, Trojan applications, and operating system backdoors to exploit endpoints and steal sensitive data. Attackers’ goals include extortion, identity theft, fraud, and even corporate espionage. Organizations must respond with more advanced endpoint security to effectively safeguard valuable information, comply with regulations, and avoid costly data breach notifications.
Yet since network access control products came to market, implementers have faced an uphill battle. First, they had to navigate a wide variety of often incompatible appliance, software, and infrastructure-based options. Then they had to select a proprietary approach, attempt to cobble multiple products together into a workable solution, or opt for one of several incompatible network access control frameworks.
As a result, evenAN602 -- DHX Technology Overview.inddIt had to provide additional overclocking headroom, again measured in the lab. RAM in BGA Package .... Table 2 shows the results of the overclock testing.
September, 2006 Page 1 APPLICATIONS NOTE AN602: DHX Technology Overview John Beekley, VP Applicatio Engineering, Coair Memory, Inc. Introduction For several yea, heat spreade have been included on enthusiast memory modules to aid in heat dissipation. Dual-path Heat Exchange (DHX™) technology represents a strong effort by Coair's enginee to devise an optimized thermal solution based on sound technical principles. This paper will provide a description of this technology and show some test results illustrating the superior performance that can be gained through the use of this technology. Background Typical desktop compute use memory modules without any heat spreade, heat sinks, or dedicated airflow. However, for yea, enthusiast modules have been fitted with heat spreade for improved thermal characteristics as well as aesthetics. As system speeds have increased, the need for memory cooling has become more apparent. Let's take a look at why this is the case. How Heat is Generated All integrated
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MOTORCYCLE OPERATOR MANUAL STATE OF NEVADA DEPARTMENT OF MOTOR VEHICLES Ginny Lewis Director Jim Gibbo Governor NEVADA MOTORCYCLE OPERATOR MANUAL DEPARTMENT OF MOTOR VEHICLES 555 Wright Way Caon City, Nevada 89711-0400 This manual gives you information on the special knowledge and skills you need to safely operate you motorcycle on our highways. Nevada gives both knowledge and skills tests before issuing a motorcycle drive licee. Those tests are based upon this manual. You need a Nevada Class M driver licee if you live or work in Nevada and you want to operate a motorcycle on our streets and highways. To get your motorcycle licee you need to complete an application form at a full-service Field Service office. You also need to: • Provide proof of your name, age, and Social Security number. • Be at least 16 yea old • Pass the general knowledge test about Nevada's traffic laws, highway sig and markings, and safe driving practices. • Pass a specific knowledge test on safe driving practices for motorcycle operato. • Pass the Motorcycle Operato Skill Test (MOST). If you are under
Download PDFYahoo! BLUEPRINT Mobile Application PlatformThe Blueprint language is an XML markup set based partly on XForms. Applications are hosted on your own Web server, which must respond to HTTP requests from Yahoo!’s server by returning valid Blueprint pages; Yahoo’s server acts as an intermediary between your application and the end-user’s hand-held device.
To host a Blueprint application, you must submit a package containing configuration and resource files to Yahoo!. The application package does not contain any Blueprint markup or scripting code; these are supplied directly by your server at runtime. There are several ways to deploy a Blueprint application. Options include browser-based Mobile Sites, Yahoo! Go Widgets, and stand-alone Mobile Apps (when available)
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DownloadOptiVisor 400 Mini-OTDR User Guide pdfOTDR Models OTDR Basic Principles Conventions 2 Safety Information Laser Safety Information (Models without VFL) Laser Safety Information (Models with VFL) Electrical Safety Information 3 Getting Started with Your OptiVisor 400 Installing or Upgrading the Software Inserting and Removing Test Modules Turning the OptiVisor 400 On or Off Launching the OptiVisor 400 Application Understanding the Timer Exiting the OTDR Test Application Installing an External Keyboard Installing an External Printer Installing a PC Card Detecting Live Fibers 4 Setting Up Your OptiVisor 400 Installing the Universal Interface (UI) Cleaning and Connecting Optical Fibers Naming Trace Files Automatically
5 Testing Fibers in Auto Mode Acquiring Traces Activating or Deactivating the Fault Finder Features OptiVisor 400 6 Testing Fibers in Advanced Mode Setting the Autorange Acquisition Time Setting the IOR, RBS Coefficient and Helix Factor Setting Distance Range, Pulse Width and Acquisition Time Enabling the High-Resolution Feature Enabling or Disabling Analysis After Acquisition Setting Pass/Fail Thresholds Setting a Default Span Start and Span End 7 Testing Fibers in Template Mode Template Principle Restrictions of Template Mode Processing Traces Acquiring the Reference Trace Acquiring Traces in Template Mode Selecting a Reference Trace 8 Customizing Your OptiVisor 400 Customizing the Acquisition Distance Range Values Customizing the Acquisition Time Values Specifying Regional Settings Selecting a Startup Application Activating or Deactivating the Touchscreen Keyboard Activating or Deactivating the Backlight Setting Brightness and Contrast Recalibrating the Touchscreen optiVisor 400 9 Analyzing Traces and Events Opening Trace Files Trace Display and Events Table Description Locating Events in the TraceProceedings of the Linux SymposiumThis paper will discuss the difficulties and methods involved in debugging the Linux kernel on huge clusters. Intermittent errors that occur once every few years are hard to debug and become a real problem when running across thousands of machines simultaneously. The more we scale clusters, the more reliability becomes critical. Many of the normal debugging luxuries like a serial console or physical access are unavailable. Instead, we need a new strategy for addressing thorny intermittent race conditions. This paper presents the case for a new set of tools that are critical to solve these problems and also very useful in a broader context. It then presents the design for one such tool created from a hybrid of a Google internal tool and the open source LTTng project. Real world case studies are included.
Well established techniques exist for debugging most Linux kernel problems; instrumentation is added, the error is reproduced, and this cycle is repeated until the problem can be identified and fixed. Good access to the machine via tools such as hardware debuggers (ITPs), VGA and serial consoles simplify this process significantly, reducing the number of iterations required. These techniques work well for problems that can be reproduced quickly and produce a clear error such as an oops or kernel panic. However, there are some types of problems that cannot be properly debugged in this fashion as they are:
• Not easily reproducible on demand;
• Only reproducible in a live production environment;
• Occur infrequently, particularly if they occur infrequently on