One way of building more powerful theorem provers is to use techniques from symbolic computation. So far, there has been very little research in this direction. The challenge problems in this paper are taken from Chapter 2 of Ramanujan's Notebooks [1]. They were selected because they are non-trivial and require the use of symbolic computation techniques. The preface to Chapter 2 describes the problems as being "fairly elementary", but states that "several of the formulas are very intriguing and evince Ramanujan's ingenuity and cleverness." We suspect that several of the problems would prove quite challenging for many mathematics graduate students even with the help of a symbolic computation system
When Ramanujan’s lost notebook (Ramanujan, The lost notebook and other unpublished papers, Narosa, N...
An example of a problem in the physical sciences is discussed where application of various symbolic ...
This book is a comprehensive set of articles reflecting on the application of symbolic and/or numeri...
This book contains an introduction to symbolic logic and a thorough discussion of mechanical theorem...
Srinivasa Ramanujan was a brilliant mathematician, considered by George Hardy to be in the same clas...
Indic mathematics has a long history, going at least as far back as Boudhayana’s Sulbra-sutra of aro...
AbstractThe success of the symbolic mathematical computation discipline is striking. The theoretical...
Srinivasa Ramanujan was a brilliant mathematician, considered by George Hardy to be in the same clas...
ABSTRACT In algebra the Vedic mathematics is based on the 16 sutras and the 13 sub- sutras. This pa...
International audienceRamanujan's first letter to Hardy states an asymptotic formula for the coeffic...
In contrast to pure mathematical applications where automated theorem provers (ATPs) are quite capab...
on the occasion of his 60th birthday The success of the symbolic mathematical computation discipline...
This article was stimulated by the recent SIAM ''100 DigitChallenge'' of Nick Trefethen, beautifully...
In this paper we present an algorithm that takes as input a gener-ating function of the form Q δ|M Q...
There are many good reasons to teach a course on a systematic introduction to symbolic methods not o...
When Ramanujan’s lost notebook (Ramanujan, The lost notebook and other unpublished papers, Narosa, N...
An example of a problem in the physical sciences is discussed where application of various symbolic ...
This book is a comprehensive set of articles reflecting on the application of symbolic and/or numeri...
This book contains an introduction to symbolic logic and a thorough discussion of mechanical theorem...
Srinivasa Ramanujan was a brilliant mathematician, considered by George Hardy to be in the same clas...
Indic mathematics has a long history, going at least as far back as Boudhayana’s Sulbra-sutra of aro...
AbstractThe success of the symbolic mathematical computation discipline is striking. The theoretical...
Srinivasa Ramanujan was a brilliant mathematician, considered by George Hardy to be in the same clas...
ABSTRACT In algebra the Vedic mathematics is based on the 16 sutras and the 13 sub- sutras. This pa...
International audienceRamanujan's first letter to Hardy states an asymptotic formula for the coeffic...
In contrast to pure mathematical applications where automated theorem provers (ATPs) are quite capab...
on the occasion of his 60th birthday The success of the symbolic mathematical computation discipline...
This article was stimulated by the recent SIAM ''100 DigitChallenge'' of Nick Trefethen, beautifully...
In this paper we present an algorithm that takes as input a gener-ating function of the form Q δ|M Q...
There are many good reasons to teach a course on a systematic introduction to symbolic methods not o...
When Ramanujan’s lost notebook (Ramanujan, The lost notebook and other unpublished papers, Narosa, N...
An example of a problem in the physical sciences is discussed where application of various symbolic ...
This book is a comprehensive set of articles reflecting on the application of symbolic and/or numeri...