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Homepage>BS Standards>17 METROLOGY AND MEASUREMENT. PHYSICAL PHENOMENA>17.220 Electricity. Magnetism. Electrical and magnetic measurements>BS EN IEC 61788-23:2024 Superconductivity Residual resistance ratio measurement. Residual resistance ratio of cavity-grade Nb superconductors
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immediate downloadReleased: 2024-07-04
BS EN IEC 61788-23:2024 Superconductivity Residual resistance ratio measurement. Residual resistance ratio of cavity-grade Nb superconductors

BS EN IEC 61788-23:2024

Superconductivity Residual resistance ratio measurement. Residual resistance ratio of cavity-grade Nb superconductors

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Standard number:BS EN IEC 61788-23:2024
Pages:34
Released:2024-07-04
ISBN:978 0 539 26878 2
Status:Standard
BS EN IEC 61788-23:2024 Superconductivity Residual Resistance Ratio Measurement

BS EN IEC 61788-23:2024 Superconductivity Residual Resistance Ratio Measurement

Standard Number: BS EN IEC 61788-23:2024

Pages: 34

Released: 2024-07-04

ISBN: 978 0 539 26878 2

Name: Superconductivity Residual Resistance Ratio Measurement. Residual Resistance Ratio of Cavity-Grade Nb Superconductors

Status: Standard

Overview

Introducing the BS EN IEC 61788-23:2024, a comprehensive standard dedicated to the measurement of the residual resistance ratio (RRR) of cavity-grade niobium (Nb) superconductors. This standard is an essential resource for professionals in the field of superconductivity, providing detailed guidelines and methodologies to ensure accurate and consistent measurements.

Key Features

  • Comprehensive Coverage: Spanning 34 pages, this standard offers in-depth information and procedures for measuring the residual resistance ratio of cavity-grade Nb superconductors.
  • Latest Release: Published on 2024-07-04, this standard reflects the most current practices and technological advancements in the field.
  • ISBN: 978 0 539 26878 2, ensuring easy reference and cataloging.
  • Authoritative Source: As a standard, it provides a reliable and authoritative source of information for researchers, engineers, and professionals working with superconducting materials.

Why Choose BS EN IEC 61788-23:2024?

The BS EN IEC 61788-23:2024 standard is indispensable for anyone involved in the development, testing, and application of superconducting materials. Here are some reasons why this standard is a must-have:

  • Precision and Accuracy: The methodologies outlined in this standard ensure precise and accurate measurement of the residual resistance ratio, which is critical for the performance and reliability of superconducting materials.
  • Industry Compliance: Adhering to this standard ensures compliance with industry norms and best practices, facilitating smoother collaboration and communication within the scientific and engineering communities.
  • Enhanced Performance: By following the guidelines in this standard, you can optimize the performance of cavity-grade Nb superconductors, leading to better results in practical applications.
  • Educational Resource: This standard serves as an excellent educational resource for students and professionals looking to deepen their understanding of superconductivity and material science.

Detailed Content

The BS EN IEC 61788-23:2024 standard is meticulously structured to provide clear and concise information. Here’s a glimpse of what you can expect inside:

  • Introduction: An overview of the importance of residual resistance ratio measurement in superconductors.
  • Scope: Defines the scope of the standard and the specific types of superconductors it applies to.
  • Terminology: A comprehensive glossary of terms and definitions used throughout the standard.
  • Measurement Techniques: Detailed procedures for measuring the residual resistance ratio, including equipment requirements and calibration methods.
  • Data Analysis: Guidelines for analyzing and interpreting measurement data to ensure accuracy and reliability.
  • Case Studies: Real-world examples and case studies demonstrating the application of the standard in various scenarios.
  • References: A list of references and further reading materials for those interested in exploring the topic in greater depth.

Who Should Use This Standard?

The BS EN IEC 61788-23:2024 standard is designed for a wide range of professionals, including:

  • Researchers: Scientists and researchers working in the field of superconductivity and material science.
  • Engineers: Engineers involved in the design, testing, and application of superconducting materials and devices.
  • Quality Control Specialists: Professionals responsible for ensuring the quality and performance of superconducting materials.
  • Educators: Teachers and professors looking for authoritative resources to support their curriculum in material science and superconductivity.

Conclusion

The BS EN IEC 61788-23:2024 standard is an invaluable resource for anyone involved in the field of superconductivity. Its comprehensive coverage, precise methodologies, and up-to-date information make it an essential tool for ensuring the accurate measurement of the residual resistance ratio of cavity-grade Nb superconductors. Whether you are a researcher, engineer, quality control specialist, or educator, this standard will provide you with the knowledge and guidelines you need to excel in your work.

DESCRIPTION

BS EN IEC 61788-23:2024


This standard BS EN IEC 61788-23:2024 Superconductivity is classified in these ICS categories:
  • 17.220 Electricity. Magnetism. Electrical and magnetic measurements
  • 29.050 Superconductivity and conducting materials
IEC 61788-23:2024 is available as IEC 61788-23:2024 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.

IEC 61788-23:2024 addresses a test method for the determination of the residual resistance ratio (RRR), rRRR, of cavity-grade niobium. This method is intended for high-purity niobium grades with 150 < rRRR < 600. The test method is valid for specimens with rectangular or round cross-section, cross-sectional area greater than 1 mm2 but less than 20 mm2, and a length not less than 10 nor more than 25 times the width or diameter.