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Our Non Profit Student Volunteered Organization at

Manav Rachna College of Engineering, Faridabad.
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Showing posts with label Technokriti. Show all posts
Showing posts with label Technokriti. Show all posts

Saturday, April 3, 2010

FollowUp Delhi Twestival 2010

I am writing this to share my experiences about Delhi Twestival 2010.
25 March 2010.
Prashant Garg

After a fortnight of discussions with Mohak ( and  our co-team members)  regarding possible sponsors, venue ,figuring out contacts , tweetup meets and "reflecting the whole idea of twestival to people"  we finally came up with #DelTwestival @CafeMorrison .
 
To celebrate Twestival I reached a little early straight from my college with my friend Tanuj Jain(Special Thanks..!!!) to dedicate evening for this Special Cause. We helped venue staff to aware them of our exact needs. We stuck banners(below the rock band) and outside. It was fun..the environment was picking up. 

We sat up an RSVP desk outside and as the clock ticked 5 pm sponsors  and Five8 band members were rolling in.  I coordinated to give them the best space available fixing up small issues like their brand visibility to make them feel comfortable. At 6pm we had people rolling in and amazed at the twitter wall we had set up. Intel Netbooks were available for live tweeting and HP wireless bluetooth printer was set to print out pics as swag. I could see the spark of change in eyes of visitors when they walked in the room and saw the *tech-thing* happening.
"Tweet, Meet Give" were the three magical words
I used with fervour to welcome people as I introduced myself as  Delhi Twestival Organiser.Nothing equals to greet new people from varied threads united for the cause.


The discussion with
Twitter handlers on education and objectives on concern was aptly scheduled after Mohak's Introductory Talk.
The message was now in air and soon Five8 Band  started rolling as the crowd stepped out of Rajneesh's World, an amazing standup comedy. Press & Media were doing its chores as people foot-tap on loud music.

The day was ours , the message was clear and the medium to spread the message was just perfect.At the end of day I realise this unique blend of creative innovation has deeply fostered the spirit of social responsibility in my young blood providing me the right platform and people to spread the word.


 

Sunday, November 1, 2009

C++ Programming with QT

As a follow up to YOUTH SOFTWARE MEET conducted by TechnoKriti in August 2009.

We are now providing link where you can download Ebook and Learn QT by yourself.

CLICK ME TO DOWNLOAD THE C++ GUI PROGRAMMING WITH QT.........

http://a/drop.io/technokriti/asset/c-gui-programming-with-qt-4-1st-ed-pdf


View c-gui-programming-with-qt-4-1st-ed-pdf

Tuesday, October 13, 2009

Sins of Windows7 exposed here!!

Wednesday, October 7, 2009

The Nobel Prize in Chemistry Goes to Venkatraman Ramakrishnan,Thomas A. Steitz, Ada E. Yonath

We are proud as other NRI makes it to NOBEL PRIZE this year. Venkatraman got Nobel prize
for studies of the structure and function of the ribosome.

Telephone interview with Venkatraman Ramakrishnan immediately following the announcement of the 2009 Nobel Prize in Chemistry, 7 October 2009. The interviewer is Adam Smith, Editor-in-Chief of Nobelprize.org
[Venkatraman Ramakrishnan] Hello?

[Adam Smith] Hello. Professor Ramakrishnan?

[VR] Yes.

[AS] Hello, my name's Adam Smith. I'm calling from the official web site of the Nobel Foundation in Stockholm.

[VR] Yes.

[AS] We have a tradition of recording very short interviews with new Laureates. May I offer you my congratulations and speak to you for a few minutes?

[VR] Yes. Thank you.

[AS] You started out as a physicist, and I just wanted to ask what attracted you to biology in the first place?

[VR] Well, I'll be honest with you. I was a theoretical physicist but my Ph.D. work was on a problem that was not particularly interesting to me at the time. And I used to subscribe to Scientific American and I found that there were all these wonderful discoveries happening in biology and I also knew that a number of physicists had gone into biology and been successful. So, I decided to switch.

[AS] Well so many, like Francis Crick, and so many others who moved into molecular biology for instance ...

[VR] Yes, exactly. In fact many from my own lab, you know, where I work.

[AS] That's right. And you do work at the LMB in Cambridge, this marvelous place where so many great ideas have come from. What is it that makes it so special?

[VR] I think it's the ability to tackle difficult problems in a sort of stable and supportive environment. I think that's the real key to it.

[AS] So one is challenged, always, to address the most difficult problem one can think of?

[VR] That's right. And I think, you know, the history of the place means that you don't waste your time doing sort of mundane or routine things.

[AS] And in particular, the problem of the ribosome, this extraordinarily complicated structure. It perhaps seems like a mountain that's too high to climb, but that itself attracted you?

[VR] No, because I started working on ribosomes when I was a post doc, in 1978, when it would have been impossible, really, to solve it. But, it was just a fundamental problem in biology. And we felt, no matter, anything we do to chip away at the problem would be useful. So it was more that that attracted me. And I think the fact that it was large and kind of difficult to come to grips with, yes, it was attractive. Really what was attractive was that it was a fundamental problem.

[AS] And Francis Crick had made this proposal in the 60s, that it might perhaps be the link between the pre-DNA world and life now as we know it.

[VR] Yes. And the structures have definitely shown, or confirmed, earlier biochemical work, mainly by people like Harry Noller, that the key elements of the ribosome that are involved in function are made of RNA. And so a primordial ribosome could very well have consisted entirely of RNA. And, so, yes it does ... But Crick was amazingly, I think, prescient to have thought about it.

[AS] There's a marvelous video on your web site showing the ribosome in action, which indicates that really we understand its workings pretty well.

[VR] Well, only if you don't think of it as chemistry. Because we understand in a sort of fuzzy way that something has to come in, and something has to move, and so on. But, if you really want to understand the detailed molecular interactions that make it go in a particular direction, make certain contacts, break other contacts, hydrolyze GTP, you know, form bonds, etcetera, and do it all amazingly accurately, then you do need a high resolution picture of those states. But, that's not going to be enough. It's going to take a lot of work by biochemists, by computational people who do molecular dynamics and things like that to really, eventually, understand it in the sense that we would understand, say, a more typical reaction.

[AS] And, the three of you who've been rewarded with the Nobel Prize today, have all worked on bacterial ribosomes. Is it the case that bacterial ribosomes are a good model for our ribosomes?

[VR] They are good for certain things, but they're not good for initiation where it's very, very difficult so ... But there are people working on trying to get eukaryotic ribosomes crystallized and trying to study it, but I think that will be a difficult problem for quite a while.

[AS] And just as a last topic, one thing that the committee have emphasized is all three of your work on antibiotics and ribosomes and the structural work on antibiotics interacting with ribosomes. Do you have high hopes that this structural biology will lead to new antibiotics to treat resistant strains of bacteria.

[VR] Yes. So the fact is that ... You know, having a high resolution structure in hand, one of the first things that those of us who were working on it did was to try and determine the structure with antibiotics, with known antibiotics that bind to the ribosome. And those gave us a very good idea of how they interacted with the ribosome. And it also gave us an idea of why certain mutations would cause resistance and how you might design better antibiotics. And, indeed, one of my co-winners, Tom Steitz, founded a company in New Haven and that company is devoted to making new antibiotics based on the structure of the ribosome and they have, actually, new potential drugs in clinical trials. So that's one of the more satisfying things to come out of it.

[AS] OK, well thank you very much. I can hear behind you what sounds like a celebrating lab. What do you think is about to happen?

[VR] It looks like, from the way the phone's ringing, that today's going to be written-off. But I haven't even told my wife yet. I couldn't reach her. She's probably gone for a walk, and she doesn't use a mobile phone, so it will be interesting. And my father lives in Seattle and I don't want to wake him up because it's three in the morning, so ...

[AS] So, you'll be held on the phone for a while more before you can speak to the family. Well, good luck good luck with the rest of today and we look forward to meeting you when you come to Stockholm in December.

[VR] Thank you, bye, bye.

[AS] Bye, bye.

To hear the telephonic interview click here...(media player needed)


Background of Venkatraman Ramakrishnan.

* Born: 1952
* Place of birth: Chidambaram, Tamil Nadu, India
* Nationality: United States
* Residence: United Kingdom
* Affiliation: MRC Laboratory of Molecular Biology, Cambridge, United Kingdom
o Address:
Hills Road
Cambridge, CB2 0QH, UK
* Tel: +44 (0) 1223-402213
* Fax: +44 (0) 1223 213556
* E-mail: ramak@mrc-lmb.cam.ac.uk
* Education:
o Baroda University, India. B.Sc. (Physics) 1971
o Ohio University, US. Ph.D. (Physics) 1976
o University of California, San Diego, US. Graduate Student (Biology) 1976-78.

What is CCD SENSOR??

A charge-coupled device (CCD) is a device for the movement of electrical charge, usually from within the device to an area where the charge can be manipulated, for example conversion into a digital value. This is achieved by "shifting" the signals between stages within the device one at a time, in a queue like manner. Technically, CCDs are implemented as shift registers that move charge between capacative "bins" in the device, with the shift allowing for the transfer of charge between bins.

Often the device is integrated with a sensor, such as a photoelectric device to produce the charge that is being read, thus making the CCD a major technology where the conversion of images into a digital signal is required. Whilst CCDs are not the only technology to allow for light detection, CCDs are widely used in professional, medical and scientific applications where high quality image data is required.

In a CCD for capturing images, there is a photoactive region (an epitaxial layer of silicon), and a transmission region made out of a shift register (the CCD, properly speaking).

An image is projected through a lens onto the capacitor array (the photoactive region), causing each capacitor to accumulate an electric charge proportional to the light intensity at that location. A one-dimensional array, used in line-scan cameras, captures a single slice of the image, while a two-dimensional array, used in video and still cameras, captures a two-dimensional picture corresponding to the scene projected onto the focal plane of the sensor. Once the array has been exposed to the image, a control circuit causes each capacitor to transfer its contents to its neighbor (operating as a shift register). The last capacitor in the array dumps its charge into a charge amplifier, which converts the charge into a voltage. By repeating this process, the controlling circuit converts the entire semiconductor contents of the array to a sequence of voltages, which it samples, digitizes and stores in some form of memory.

Monday, September 28, 2009

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Saturday, September 26, 2009

Epiphany 2008 Pics

Robotics Epiphany 2008

Bots playing football!! at Inter-college techfest Epiphany '08, at MRCE, Faridabad, India. Teams slugging it out with minimal control of their robots, who simply refuse to listen!! Driving cars is one thing, Robots are a different species!!!






LINE FOLLOWER ROBOT : Epiphany 2008

This is the Robotics Team of Manav Rachna College of Engineering , Faridabad participating at the INTER-COLLEGE Robotics Competition at Epiphany 2008.

Epiphany 08

Robotics , Epiphany 08 , Manav Rachna College of Engineering






The Team Was able to completed the track ...drifting the bot...in mere 7 Seconds...making it to RANK 1...with JSS Noida Coming 2nd Completing the track in 12 seconds...

Watch the Video!!!!!


TechnoKriti-Power of Youth



TechnoKriti-Power of Youth




INTERNET RELAY CHAT

Internet Relay Chat (IRC) is a form of realtime Internet chat. It is mainly designed for group (many-to-many) communication in discussion forums called channels, but also allows one-to-one communication via private message. On IRC you can talk to many other members using Ubuntu, on topics ranging from idle chit-chat to support with your Ubuntu. Though a channel might have many people in it at any one time, they might not always be at their keyboard; so if no-one responds, just wait around and someone will hopefully answer soon enough.
This page serves as an information base for users of the Ubuntu IRC channels. The Ubuntu channels can be found on the Freenode network, irc.freenode.net. XChat in Ubuntu has this network preconfigured and the main channel, #ubuntu, will automatically be joined. Kubuntu also comes with Konversation, which is also pre-configured for the Kubuntu help channels. When participating in Ubuntu IRC channels, please abide by the Code of Conduct and channel guidelines.
IRC Clients
The following is just a list of programs that you can use to enter the Ubuntu channels listed below.
Ubuntu & Xubuntu (GTK+)
Pidgin - Popular instant messaging software but also supports IRC. May be easier for beginners.
XChat - GUI based IRC client.
Smuxi - A cross-platform, flexible and user-friendly IRC client for GNOME.
LostIRC - A simple GTK IRC client.
Loqui - Another GTK client, with a range of features intermediate between XChat's and LostIRC's.
Kubuntu (QT)
Quassel - KDE4/Qt based, IRC client.
Konversation - KDE GUI based IRC client.
KvIRC - a more powerful, though less KDE-integrated, GUI client.
Kopete - Multi-protocol instant messaging and IRC software for KDE (no support for IRC in KDE4).
Console based
Irssi - Popular command line/text based IRC client.
WeeChat - Another popular command line/text based IRC client.
ERC - an IRC client for the Emacs editor.
Other operating systems
Free or shareware IRC clients are available for most systems. For those users who would rather not search for and install an IRC client on their system, the Freenode Webchat is suggested as a way to connect to the Ubuntu IRC channels.

Learn More On Internet Relay Chat
Download INTERNET RELAY CHAT CLIENT for






Thursday, September 24, 2009

Social Media

Tuesday, September 15, 2009

Contact Details

For Any Queries , Suggestions Contact

Send mail

Sunday, September 13, 2009

Youth Software Meet 2009 @ Manav Rachna College of Engineering







Join TechnoKriti on Leading Networks .

Thursday, August 27, 2009

Weblinks



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