This PPT is a continuation of the Part 1.
Showing posts with label information technology. Show all posts
Showing posts with label information technology. Show all posts
Thursday, 23 February 2012
Getting Started on ATG Repository - Part 1
Tired of reading the ATG Platform Docs - Repository Guide??
Thursday, 26 January 2012
Free Float Market Capitalization
Kingfisher: suppose has total 1 lakh shares: 30,000 held by Malya and rest 70 thousand held by general public. Value of each share in Bombay Stock Exchange (BSE) on 11 January 2012 is Rs. 150.
Now we first calculate a thing called “Free float Market capitalization” for Kingfisher, which is nothing but
= Number of shares held by general public multiplied with Value of Each share on the given date in Bombay Stock Exchange (BSE)= 70 thousand x 150
= 105 lakh rupees
So Kingfisher’s Free float Market cap (FFMC) for 11 January 2012= 105 lakh rupees.
Now we first calculate a thing called “Free float Market capitalization” for Kingfisher, which is nothing but
= Number of shares held by general public multiplied with Value of Each share on the given date in Bombay Stock Exchange (BSE)= 70 thousand x 150
= 105 lakh rupees
So Kingfisher’s Free float Market cap (FFMC) for 11 January 2012= 105 lakh rupees.
Want to know more about Inflation?
Inflation is the increase in the price of a product.
How can you say there is inflation?
Because, earlier in the year 2001, we could buy a litre of petrol for Rs.50, but now it's Rs.70/- per litre. So there is price-rise and hence there is inflation.
How can you say there is inflation?
Because, earlier in the year 2001, we could buy a litre of petrol for Rs.50, but now it's Rs.70/- per litre. So there is price-rise and hence there is inflation.
Sunday, 22 January 2012
Sensex and Nifty
The Sensex is an “index”. What is an index? An index is basically an indicator. It gives you a general idea about whether most of the stocks have gone up or most of the stocks have gone down.
The Sensex is an indicator of all the major companies of the BSE. Sensex represents the top stocks of the BSE.
The Nifty is an indicator of all the major companies of the NSE.Nifty represents the top stocks of the NSE.
The Sensex is an indicator of all the major companies of the BSE. Sensex represents the top stocks of the BSE.
The Nifty is an indicator of all the major companies of the NSE.Nifty represents the top stocks of the NSE.
Learn the Stock Market
In order to know what stock is and the basic meaning of stock market first we have to dive into the history of stock market specifically , the history of what has come to be known as the corporation. Corporations in one form or another have been around ever since one guy convinced a few others to pool their resources for mutual benefit. In order for a corporation to do business, it needs to get some money from somewhere. A stock is a piece of ownership of a company. When a Company needs some money, which is helpful in growing business, they acquire extra money by selling ownership in small percentages in form of stocks. The word stock trading is commonly used to describe both the physical location for buying and selling (trading) stocks as well as the overall activity of the market.
Friday, 21 October 2011
Information Technology in Medicine and Health care
Information and communication technologies are about to make a massive move into medical practice, not only in selected areas of 'high-tech' medicine, but throughout the field. Research in information technologies is needed in the areas of medical imaging, telecooperation, education and training.
Medical images are produced in such a number and richness of detail that they can only be analyzed with the help of the computer. Computers not only improve the quality of the images, but also help in reconstructing structures, detecting anomalies and measuring. In particular, computers help with an appropriate visualization to make the image contents understandable to the clinician. Three-dimensional images are used more and more. They have the inherent problem that it is extremely difficult to visualize images consisting of a cloud of material in different shades of grey. Mechanisms have to be found that render the interesting detail and hide other structures that are not relevant for a particular situation. The selection and composition of algorithms depend on the medical goals of a particular analysis and thus can only be determined together with medical experts.
Images are needed to plan and control microinvasive surgical procedures. It is therefore necessary to design systems that support the physician with appropriate visualizations throughout the whole process from image acquisition, diagnosis, treatment planning, surgery to final control.
As medical professionals become more specialized, diagnosis and treatment occur in cooperation between different physicians that may be distributed. They have to use computers to exchange their medical data, in particular images. However, data transfer alone is not sufficient. they must also be able to communicate about their patients, to talk freely about medical data and refer to that data during their discussion. Merging these two communication channels (verbal and data communication) is a challenge that needs to be addressed before teleconsultation can be reasonably efficient. And finally, medical knowledge increases at an amazing pace. Physicians are required to keep up with new knowledge for their whole life. To ensure the quality of diagnosis and treatment, special emphasis on continuous education is needed. Computer-based techniques can help with this task, in particular if they provide training on the job, assisting in the analysis of images and teleconsultation.
All these problems can be solved only in interdisciplinary teams. One needs physicians that are open-minded to think about new computer-based approaches. Computer scientists have to listen for the problems of their medical partners. Psychologists have to look at human-human and human-computer interaction. Engineers and administrators have to make things work. A single profession can no longer deal with all aspects of the complex problems. Furthermore, new systems have to be designed iteratively, with the user in mind. Systems must be addressed to real user problems. However, it is not possible to completely assess the value of a new development before it is taken into daily practice with real users. Developers must be ready to radically change their systems until these really meet the user needs. Users must be involved, but not in a naive fashion ("tell me what you need"). A constructive dialog between users and developers, involving a sequence of prototype systems, is needed to acquire the real user needs.
Medical images are produced in such a number and richness of detail that they can only be analyzed with the help of the computer. Computers not only improve the quality of the images, but also help in reconstructing structures, detecting anomalies and measuring. In particular, computers help with an appropriate visualization to make the image contents understandable to the clinician. Three-dimensional images are used more and more. They have the inherent problem that it is extremely difficult to visualize images consisting of a cloud of material in different shades of grey. Mechanisms have to be found that render the interesting detail and hide other structures that are not relevant for a particular situation. The selection and composition of algorithms depend on the medical goals of a particular analysis and thus can only be determined together with medical experts.
Images are needed to plan and control microinvasive surgical procedures. It is therefore necessary to design systems that support the physician with appropriate visualizations throughout the whole process from image acquisition, diagnosis, treatment planning, surgery to final control.
As medical professionals become more specialized, diagnosis and treatment occur in cooperation between different physicians that may be distributed. They have to use computers to exchange their medical data, in particular images. However, data transfer alone is not sufficient. they must also be able to communicate about their patients, to talk freely about medical data and refer to that data during their discussion. Merging these two communication channels (verbal and data communication) is a challenge that needs to be addressed before teleconsultation can be reasonably efficient. And finally, medical knowledge increases at an amazing pace. Physicians are required to keep up with new knowledge for their whole life. To ensure the quality of diagnosis and treatment, special emphasis on continuous education is needed. Computer-based techniques can help with this task, in particular if they provide training on the job, assisting in the analysis of images and teleconsultation.
All these problems can be solved only in interdisciplinary teams. One needs physicians that are open-minded to think about new computer-based approaches. Computer scientists have to listen for the problems of their medical partners. Psychologists have to look at human-human and human-computer interaction. Engineers and administrators have to make things work. A single profession can no longer deal with all aspects of the complex problems. Furthermore, new systems have to be designed iteratively, with the user in mind. Systems must be addressed to real user problems. However, it is not possible to completely assess the value of a new development before it is taken into daily practice with real users. Developers must be ready to radically change their systems until these really meet the user needs. Users must be involved, but not in a naive fashion ("tell me what you need"). A constructive dialog between users and developers, involving a sequence of prototype systems, is needed to acquire the real user needs.
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