Tajika Neelakanthi is a treatise on the predictive part of Hindu astrology written in Sanskrit Slokas by the celebrated authority on Tajika shastra , Neelakantha , son of Ananta Deva, on the basis of many earlier works of Samar Singh and others. He completed this work in the year Saka or A. Tajika Neelakanthi is a renowned ancient text that deals with the preparation and reading of Varshaphala Charts as per the Tajika system one of the three major systems popularly followed in India [3] in which particular system of prognostication the role assigned to Muntha i. The Annual Charts are cast on the basis of the longitude of the Sun at the time of birth to which it returns each year determined by using the Chitrapaksha Ayanamsa. The lagna is calculated according to the time the Sun returns to the same longitude.

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Tajika Neelakanthi is a treatise on the predictive part of Hindu astrology written in Sanskrit Slokas by the celebrated authority on Tajika shastra , son of Ananta Deva , on the basis of many earlier works of Samar Singh and others.

He completed this work in the year Saka or A. Tajika Neelakanthi is a renowned ancient text that deals with the preparation and reading of Varshaphala Charts as per the Tajika system in which particular system of prognostication the role assigned to Muntha i.

Varshaphala or Annual Horoscopy is one of the many methods employed in India to forecast future events in greater details as minute as day to day; the Annual Charts are cast on the basis of the longitude of the Sun at the time of birth to which it returns each year determined by using the Chitrapaksha Ayanamsa. The lagna is calculated according to the time; the use of Muntha and the role of its lord is as important as any one of the three Dashas, the Mudda, the Yogini or the Patayayani, brought into use.

The yogas of the Parashari or Jaimini System are not considered, this system has its own set of sixteen yogas whose results along with that of the dashas are to be read with those assigned to the nearly fifty Sahams or special sensitive points. Serge Reggiani was an Italian-French singer and actor.

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In mathematics , a piecewise-defined function is a function defined by multiple sub-functions, each sub-function applying to a certain interval of the main function's domain, a sub-domain. Piecewise is a way of expressing the function, rather than a characteristic of the function itself, but with additional qualification, it can describe the nature of the function. For example, a piecewise polynomial function is a function, a polynomial on each of its sub-domains, but a different one on each; the word piecewise is used to describe any property of a piecewise-defined function that holds for each piece but not hold for the whole domain of the function.

A function is piecewise differentiable or piecewise continuously differentiable if each piece is differentiable throughout its subdomain though the whole function may not be differentiable at the points between the pieces. In convex analysis, the notion of a derivative may be replaced by that of the subderivative for piecewise functions. Although the "pieces" in a piecewise definition need not be intervals, a function is not called "piecewise linear" or "piecewise continuous" or "piecewise differentiable" unless the pieces are intervals.

Piecewise functions are defined using the common functional notation, where the body of the function is an array of functions and associated subdomains. Crucially, in most settings, there must only be a finite number of subdomains, each of which must be an interval, in order for the overall function to be called "piecewise". For all values of x greater than or equal to zero, the second function is used, which evaluates trivially to the input value itself.

Consider the piecewise function f evaluated at certain values of x: Thus, in order to evaluate a piecewise function at a given input value, the appropriate subdomain needs to be chosen in order to select the correct function and produce the correct output value.

A piecewise function is continuous on a given interval if the following conditions are met: it is defined throughout that interval, its constituent functions are continuous on the corresponding intervals, there is no discontinuity at each endpoint of the subdomains within that interval. The pictured function, for example, is piecewise continuous throughout its subdomains, but is not continuous on the entire domain, as it contains a jump discontinuity at x 0.

The filled circle indicates. In applied mathematical analysis, piecewise functions have been found to be consistent with many models of the human visual system, where images are perceived at a first stage as consisting of smooth regions separated by edges.

In particular, shearlets have been used as a representation system to provide sparse approximations of this model class in 2D and 3D. Specific instances of piecewise functions include: Step function, a piecewise function composed of constant functions Boxcar function, Heaviside step function Sign function Piecewise linear function, a piecewise function composed of line segments Absolute value Broken power law , a piecewise function composed of power laws Spline , a piecewise function composed of polynomial functions, possessing a high degree of smoothness at the places where the polynomial pieces connect B-spline PDIFF.

Revision History. Tajika Neelakanthi Tajika Neelakanthi is a treatise on the predictive part of Hindu astrology written in Sanskrit Slokas by the celebrated authority on Tajika shastra , son of Ananta Deva , on the basis of many earlier works of Samar Singh and others.

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The system goes to such details as to predict events even on a day-by-day basis or even half-a-day. The term varshaphala means the consequence, effect, or result for one year of the planetary transits at the moment of the solar return. A year under scrutiny begins at the moment when the sun returns to the same longitude as it had at the time of the individual's birth. This moment is called the moment of solar return.

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## Tajika Jyotish

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