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Bni Purpose And Overview Pdf To Word here. If you're tired of hunting through your Contacts for addresses of people you want to include as CCs or BCCs to e-mails, this little Microsoft Outlook add-on automates the process and reduces your frustration. Auto BCC/CC for Microsoft Outlook melds seamlessly with Outlook, adding only a small button to the e-mail client's toolbar. Its presence doesn't create a hurdle for the app's performance or the normal flow of its processes.

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Instead, in our tests, it complements Outlook's functionality, performing well as we used the add-on to supplement delivery of our messages with automatically added CC and BCC recipients. We liked that we could configure the add-on to automatically insert specified CC and BCC addresses according to particular subject lines. The only drawback in the automation was when we wanted to reply to only one person in an e-mail and the add-on wanted to respond to everyone in the specified CC and BCC list. A simple click resolved this issue, though. The trial period is a bit brief, and the price--although not high--seems a bit steep when compared with the functionality the app adds to Outlook. But if your work focuses on sales leads and continually keeping a lot of people in the loop, you may find Auto BCC/CC for Microsoft Outlook worth the price. Full Specifications General Publisher Publisher web site Release Date January 15, 2013 Date Added January 18, 2013 Version 4.0 Category Category Subcategory Operating Systems Operating Systems Windows XP/2003/Vista/Server 2008/7/8 Additional Requirements Microsoft Outlook 2003 or latter, Microsoft.NET Framework 2.0 Download Information File Size 14.88MB File Name auto-bcc-outlook-40.zip Popularity Total Downloads 3,941 Downloads Last Week 4 Pricing License Model Free to try Limitations 15-day trial Price $29.95.

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• 435 Downloads • Abstract Three-dimensional Finite Element simulations of mode I crack tip fields in Compact Tension specimens are presented for elastic ideally-plastic F.C.C. Single crystals. The computations are carried out within the framework of classical continuum crystal plasticity for three crack orientations: (001)[110],(110)[001] and (001)[100].

The attention is drawn on the strong differences between the plastic strain field obtained at the free surface and in the mid-section of the specimens. The results are compared, on the one hand, to analytical solutions for stationary cracks in single crystals under plane strain conditions and, on the other hand, to experimental tests on a single crystal nickel-based superalloy at room temperature. For this material, both octahedral and cube slip must be taken into account. A good agreement between experimental observations and numerical results is found in the structure of the strain localization bands observed at the free surface of (110)[001] cracked specimens. In particular, the evidence of kink banding near the crack tip is provided, confirmed by EBSD orientation mapping.

The measured values of local lattice rotation are in agreement with the Finite Element prediction.