
( Brand: Scientific ), ( Part Type: Wall ), ( Product Dimensions: 3.94 X 3.94 X 1.97 Inches; 3.99 Ounces ), ( Country Of Origin: China ), ( UPC: 313041757797 )
Introducing our Scientific 313041757797 Crystallizing Dishes, a must-have addition to any laboratory or scientific setting. These high-quality thick-wall dishes are manufactured using premium borosilicate glass, ensuring durability, strength, and resistance to thermal shock.
The thick walls of these dishes provide superior insulation, making them ideal for use in temperature-sensitive experiments or applications where maintaining a consistent temperature is crucial. The borosilicate glass material itself is known for its exceptional strength and resistance to thermal shock, making it a preferred choice for laboratory equipment.
Each dish features a flat, smooth base, ensuring stability and even heating. The borosilicate glass is also highly resistant to scratches and impacts, ensuring the dishes can withstand the rigors of daily use in a laboratory setting.
The dimensions of these dishes are suitable for a variety of applications, making them versatile additions to any laboratory. The dishes have a diameter of approximately 130mm and a height of approximately 20mm, providing ample space for your experiments while also being compact enough for easy storage.
These Scientific 313041757797 Crystallizing Dishes are designed with precision and attention to detail, ensuring they meet the highest standards for scientific research and experimentation. The dishes are also easy to clean, making them a practical and efficient choice for any laboratory setting.
In summary, these Scientific 313041757797 Crystallizing Dishes offer durability, insulation, strength, and versatility, making them an essential addition to any laboratory or scientific setting. With their thick-walled, borosilicate glass construction, these dishes are designed to meet the demands of rigorous scientific research and experimentation while also offering practical benefits such as easy cleaning and compact storage.
Thick-wall high borosilicate glass crystallizing dishes, such as the Scientific 313041757797 model, are commonly used in laboratories and scientific research due to their superior heat resistance and durability. However, like any other lab equipment, they come with their advantages and disadvantages. In this article, we will discuss the pros and cons of investing in these dishes.
Pros:1. Superior Heat Resistance: Borosilicate glass is known for its excellent thermal stability, making it an ideal material for high-temperature applications. Thick-walled glasses provide even better heat resistance, enabling efficient and consistent crystallization processes.
2. Durability: Borosilicate glass is more resistant to thermal shock than regular glass. Thick-walled dishes can withstand sudden temperature changes without cracking or breaking, ensuring a long lifespan.
3. Chemical Resistance: Borosilicate glass is less susceptible to chemical attack compared to other materials, making it an excellent choice for handling corrosive substances.
4. High Clarity: The glass used in these dishes offers exceptional clarity, allowing researchers to closely monitor crystallization processes and easily identify any impurities or contaminants.
5. Versatility: Thick-wall high borosilicate glass crystallizing dishes can be used for various applications beyond just crystallization, including heating, cooling, and storage of solutions and reagents.
Cons:1. Cost: Thick-wall high borosilicate glass crystallizing dishes tend to be more expensive than their standard glass counterparts due to the superior materials and manufacturing processes involved.
2. Handling: The thick-walled design and high-temperature capabilities require extra care when handling to prevent accidental damage.
3. Size Limitations: While available in various sizes, larger dishes may not be as easy to find or as cost-effective as standard glassware.
4. Breakage: Despite their durability, borosilicate glass dishes can still be prone to breakage if mishandled or dropped.
5. Cleaning: Due to their complexity and size, thick-wall dishes may require more time and effort to clean thoroughly, especially if dealing with stubborn residues.
Conclusion:Thick-wall high borosilicate glass crystallizing dishes offer numerous advantages for laboratory applications, including superior heat resistance, durability, chemical resistance, high clarity, and versatility. However, they come with some disadvantages, such as higher cost, special handling requirements, size limitations, and potential breakage. Ultimately, the decision to invest in these dishes depends on the specific needs and budget of your research project. If the advantages align with your research goals and you have the necessary resources, then thick-wall high borosilicate glass dishes may be an excellent investment.
Stony Lab crystallizing dish is commonly used in Scientific experiments, particularly chemistry; it designed for the process of crystallization experiments and re crystallization operations to enhance refining purification processes. Crystallizing Dish with Spout: Suited for experiments involving the addition of liquids or solutions, spout design facilitates precise pouring and draining substances. Constructed from resilient borosilicate glass; heavy wall, durable and reusable.: Stony lab: Crystallization Dish: dish is a type of glassware commonly utilized in laboratories, extensively applied experiments and research across chemistry, biology, various Scientific fields.
Flat bottom, smooth surface and excellent transparency; no spout. Crystallizing Dish: Ideal for crystallization experiments that don't necessitate frequent liquid or solution addition, ensuring the maintenance of a crystalline state over an extended period. Available in capacities of 100 ml, 300 and 500 ml.