In Stock
Superconducting Wire
Barre supraconductrice (Bi-2223), Demonstrated Magnetic Flux Expulsion Supports the Analysis of the Meissner Effect and flux pinning, providing observable data for quantum mechanics and electromagnetic field theory.
Ruggedized Encapsulation Outcome Promotes Understanding of material durability in extreme thermal cycling, ensuring repeatable results across multiple laboratory cohorts.
₹1,520.00
Quick Answer: A high-purity Bi-2223 HTS ceramic superconducting bar for precise empirical analysis of the Meissner Effect and critical temperature transitions above 100K, designed for integration into liquid nitrogen cryostats.
Price: This listing does not currently show a published price on stemaids.com — contact STEMAids directly for an indicative quotation.
Product Description
This Bi-2223 Superconducting Bar is a high-purity HTS (high-temperature superconductor) ceramic engineered for university and vocational materials science curricula. It facilitates empirical analysis of the Meissner Effect and critical temperature transitions above 100K. This component is designed for integration into liquid nitrogen cryostats and is available for institutional bulk procurement via standard Request for Quote (RFQ) protocols. Because this component operates at cryogenic temperatures, handle it only with appropriate cryogenic-rated protective equipment.
Specifications
| Specification | Detail |
|---|---|
| Type | Bi-2223 high-temperature superconducting (HTS) ceramic bar |
| Critical temperature | Above 100K (manufacturer-stated) |
| Cooling required | Liquid nitrogen cryostat |
| Suggested level | University and vocational materials science curricula |
Applications / Uses
- Demonstrating the Meissner Effect in high-temperature superconductors
- Studying critical temperature transitions
- University and vocational materials science coursework
- Integration into liquid nitrogen cryostat setups
Care & Maintenance
- Only handle in conjunction with liquid nitrogen using cryogenic-rated gloves and eye protection
- Use in a well-ventilated area to avoid oxygen displacement/asphyxiation risk from liquid nitrogen
- Allow the bar to warm gradually rather than exposing it to rapid temperature changes
- Store in a dry, protective case when not in use
Why Choose STEMAids
STEMAids, a brand of Eduscope Smart Learning Solutions Private Limited, supplies physics lab equipment and teaching aids to schools, colleges, and training institutes across India, with export and bulk tender support available. Explore related products in our Physics Equipments category, including our Resonance Box with Tuning Forks. For bulk or institutional orders, visit our tenders page or contact us at 9311411822.
Frequently Asked Questions
What does this bar demonstrate?
It demonstrates the Meissner Effect and critical temperature transitions in a high-temperature superconductor.
What cooling does this component require?
It requires integration into a liquid nitrogen cryostat, above a critical temperature of 100K (manufacturer-stated).
What safety precautions apply to liquid nitrogen use?
Use cryogenic-rated gloves and eye protection, and operate in a well-ventilated area to avoid asphyxiation risk.
What education level is this suited for?
It is designed for university and vocational materials science curricula.
What is the indicative price for this product?
This listing does not currently show a published price on stemaids.com — contact STEMAids directly for an indicative quotation.
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