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 Bhuta Dynamis Application

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Bhuta
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PostSubject: Bhuta Dynamis Application   Bhuta Dynamis Application Icon_minitimeSat Oct 03, 2009 11:25 am

1. List your name exactly as it appears in-game
Bhuta

2. List all 75 jobs you have
SMN

3. Are you willing/able to bring each of those jobs to Dynamis? If not, please state which you cannot and why (e.g. no gear)
yes

4. Our runs start at 8:30pm EST on Wednesdays and Saturdays. Dynamis typically lasts two to three and half hours. Would you be able to attend both of these times. (If able to attend only one, please indicated which one)
yes

5. What job do you wish to main lot? (Please note that some jobs may be closed at this time)
summoner

6. Do you have access to Dynamis Beaucedine? (Jeuno, Windurst, San d'Oria and Bastok flags)
No

7. Do you have access to Dynamis-Xarcabard? (Beaucedine flag)
No

8. Do you have access to Dreamland Dynamis ?(i.e. past CoP mission 3-5, Darkness Named - the Diabolos fight)
No getting there tho

9. List other dynamis shells you were a member of and (estimated) for how long
This would be my 1st (nooob) Razz

10. How did you hear about Ultimate?
Lizdayne

11. List any members in Ultimate you know that are willing to admit to knowing you in return: Lizdayne

12. What is the main reason you wish to do Dynamis?
For gear help out in anyway i can

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helma




Posts : 2
Join date : 2010-05-17

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PostSubject: Re: Bhuta Dynamis Application   Bhuta Dynamis Application Icon_minitimeMon May 17, 2010 5:13 am

A projectile accelerating along launcher rails may cross a range of critical velocities and induce resonance. As a result, the rails and other components exhibit increased displacements and stress that may cause launcher failure. This work is focused on the computation of the critical velocity and investigation of the transient resonance in the assembly of a notional electromagnetic hypervelocity launcher. Several analytical and finite-element models were employed. Different models yielded a good correlation and aided in better understanding of the launcher dynamics. Analysis shows that various components of a launcher can have different critical velocities. The results of this work will further be used to develop a novel design approach based on the idea of controlling the intervals between the critical velocities to minimize the enhanced occurrence of induced resonance regimes in launcher assemblies
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