null
Loading... Please wait...
FREE SHIPPING on All Unbranded Items LEARN MORE
Print This Page

Functional Nanomaterials for Regenerative Tissue Medicines

List Price: $76.99
SKU:
9780367690335
Quantity:
Minimum Purchase
25 unit(s)
  • Availability: Confirm prior to ordering
  • Branding: minimum 50 pieces (add’l costs below)
  • Check Freight Rates (branded products only)

Branding Options (v), Availability & Lead Times

  • 1-Color Imprint: $2.00 ea.
  • Promo-Page Insert: $2.50 ea. (full-color printed, single-sided page)
  • Belly-Band Wrap: $2.50 ea. (full-color printed)
  • Set-Up Charge: $45 per decoration
FULL DETAILS
  • Availability: Product availability changes daily, so please confirm your quantity is available prior to placing an order.
  • Branded Products: allow 10 business days from proof approval for production. Branding options may be limited or unavailable based on product design or cover artwork.
  • Unbranded Products: allow 3-5 business days for shipping. All Unbranded items receive FREE ground shipping in the US. Inquire for international shipping.
  • RETURNS/CANCELLATIONS: All orders, branded or unbranded, are NON-CANCELLABLE and NON-RETURNABLE once a purchase order has been received.
  • Product Details

    Author:
    Mariappan Rajan
    Format:
    Paperback
    Pages:
    420
    Publisher:
    CRC Press (May 27, 2024)
    Language:
    English
    ISBN-13:
    9780367690335
    Dimensions:
    6.125" x 9.1875"
    File:
    TAYLORFRANCIS-TayFran_260825153222194-20260825.xml
    Folder:
    TAYLORFRANCIS
    List Price:
    $76.99
    Country of Origin:
    United States
    Series:
    Emerging Materials and Technologies
    As low as:
    $73.14
    Publisher Identifier:
    P-CRC
    Discount Code:
    H
    Weight:
    16oz
    Pub Discount:
    30
    Case Pack:
    1
    Imprint:
    CRC Press
  • Overview

    This book covers nanomaterials in tissue engineering for regenerative therapies of heart, skin, eye, skeletal muscle, and the nervous system. It emphasizes fundamental design concepts and emerging forms of nanomaterials in soft and hard tissue engineering.