Add to Wishlist
-20%

Basic Analysis of Regularized Series and Products

Publisher:

Original price was: ₹3,110.00.Current price is: ₹2,488.00.

Analytic number theory and part of the spectral theory of operators (differential, pseudo-differential, elliptic, etc.) are being merged under amore general analytic theory of regularized products of certain sequences satisfying a few basic axioms. The most basic examples consist of the sequence of natural numbers, the sequence of zeros with positive imaginary part of the Riemann zeta function, and the sequence of eigenvalues, say of a positive Laplacian on a compact or certain cases of non-compact manifolds.

Usually dispatched in 2 to 3 days
Safe & secure checkout
SKU: NGS000299
Category:

Analytic number theory and part of the spectral theory of operators (differential, pseudo-differential, elliptic, etc.) are being merged under amore general analytic theory of regularized products of certain sequences satisfying a few basic axioms. The most basic examples consist of the sequence of natural numbers, the sequence of zeros with positive imaginary part of the Riemann zeta function, and the sequence of eigenvalues, say of a positive Laplacian on a compact or certain cases of non-compact manifolds.

Additional information

Book Format

Hardcover, Softcover

Reviews

There are no reviews yet.

Be the first to review “Basic Analysis of Regularized Series and Products”

Your email address will not be published. Required fields are marked *

Book information

Edition
1st Edition
ISBN [Softcover]
9783540574880
Publisher
Springer
Year
1993
Pages
X, 130 p.
Series Title
Lecture Notes in Mathematics
Language
English
Select the fields to be shown. Others will be hidden. Drag and drop to rearrange the order.
  • Image
  • SKU
  • Rating
  • Price
  • Stock
  • Availability
  • Add to cart
  • Description
  • Content
  • Weight
  • Dimensions
  • Additional information
Click outside to hide the comparison bar
Compare
Select an available coupon below
    Your cart is emptyReturn to Shop
    ×