Sodium Sulfate Anhydrous For Synthesis | 8.22286.1000 | Merck

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Sodium Sulfate Anhydrous For Synthesis | 8.22286.1000 | Merck

High purity Sodium Sulfate Anhydrous, ideal for synthesis. Essential for lab applications.

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Original price was: ₹4,270.00.Current price is: ₹3,843.00.

Description

Specifications Table

Product Name – Sodium Sulfate Anhydrous
Quantity/Pack Size – 1 KG
Form – Powder
Grade – For Synthesis
Application – Laboratory Use

Product Overview

Sodium Sulfate Anhydrous is a high-purity chemical compound widely used in various laboratory applications. This product is specifically designed for synthesis, ensuring reliable and consistent results in chemical experiments. Its anhydrous form makes it ideal for reactions where water content could interfere with outcomes. The powder form allows for easy handling and precise measurement, making it a staple in any well-equipped lab. Whether you are a student, researcher, or educator, Sodium Sulfate Anhydrous is an essential component for your lab supplies.

FAQs

1. What is the primary use of Sodium Sulfate Anhydrous?

Sodium Sulfate Anhydrous is primarily used in laboratory synthesis and various chemical reactions where a high-purity, water-free compound is required.

2. Is this product suitable for academic use?

Yes, Sodium Sulfate Anhydrous is widely used in academic settings for educational and research purposes.

3. What are the storage requirements for this product?

Sodium Sulfate Anhydrous should be stored in a cool, dry place away from direct sunlight and moisture to maintain its purity and effectiveness.

4. Can this product be used in other applications besides synthesis?

While primarily used for synthesis, Sodium Sulfate Anhydrous can also be used in other laboratory applications where its properties are beneficial.

5. How does the anhydrous form differ from the hydrated form?

The anhydrous form of Sodium Sulfate contains no water molecules, making it ideal for reactions where water could interfere, whereas the hydrated form contains water molecules and may not be suitable for such reactions.

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