
( Brand: Whatman ), ( Manufacturer Part Number: 1001-042 ), ( Part Type: Filter ), ( Color: Na ), ( Tax: No Tax )
Introducing the S-100ML-SQ 1001-042 Quantitative Filter Paper Circles from Whatman, a premier name in the field of filtration solutions. These filter paper circles are designed with meticulous precision, offering a diameter of 100mm and a thickness of 0.1mm, providing an excellent surface area for filtration.
The filter paper circles are engineered with a pore size of 10.5 microns, making them ideal for a wide range of applications where fine particle retention is crucial. The 100mm square shape of these filter papers is not only convenient to handle but also ensures uniform filtration, thereby minimizing waste and maximizing efficiency.
Made from Whatman's renowned cellulose fiber, these filter paper circles are known for their exceptional quality and consistency. They offer superior filtration performance, ensuring that even the tiniest particles are effectively retained, while allowing the desired molecules to pass through.
The S-100ML-SQ 1001-042 Quantitative Filter Paper Circles are designed to be used in a 100ml volumetric flask, making them an excellent choice for quantitative filtration tasks in laboratories and research environments. Their ability to withstand various solvents and reagents without degrading makes them a reliable and cost-effective choice for long-term use.
In conclusion, the S-100ML-SQ 1001-042 Quantitative Filter Paper Circles from Whatman are a high-performance and versatile filtration solution. Their precise dimensions, consistent pore size, and compatibility with a wide range of solvents make them an indispensable tool in any laboratory or research setting.
Pros of buying a S-100ML-SQ 1001-042 Quantitative Filter Paper Circles, Micron 10.5, 100ml-Sq from Whatman:1. High-quality material: Whatman is a renowned brand known for its high-quality filter papers. These filter papers are made from cellulose fibers and are designed to provide excellent filtration efficiency.
2. Micron rating: The filter papers have a micron rating of 10.5, which makes them suitable for filtering particles of that size. This is important in various scientific applications, such as chemistry and biology, where precise filtration is required.
3. Large size: The filter papers are 100mm square, which provides a large surface area for filtration. This can save time and reduce the need for multiple filter paper changes.
4. Quantitative filtration: These filter papers are designed for quantitative filtration, which means that they can accurately measure the amount of a substance that is being filtered. This is important in many analytical applications.
Cons of buying a S-100ML-SQ 1001-042 Quantitative Filter Paper Circles, Micron 10.5, 100ml-Sq from Whatman:1. Cost: High-quality filter papers can be expensive, and these filter papers are no exception. However, the cost may be justified by the precision and accuracy they provide.
2. Limited availability: Depending on the location, these filter papers may not be easily available. This can make it difficult to obtain them in a timely manner.
Conclusion:The S-100ML-SQ 1001-042 Quantitative Filter Paper Circles, Micron 10.5, 100ml-Sq from Whatman are a high-quality option for those who require precise filtration in their scientific applications. While they may be more expensive than some other filter papers, the accuracy and reliability they provide can make them a worthwhile investment. However, it is important to consider availability and cost before making a purchase.
Recommendation:If you require precise filtration in your scientific applications, and can afford the cost, I would recommend purchasing the S-100ML-SQ 1001-042 Quantitative Filter Paper Circles, Micron 10.5, 100ml-Sq from Whatman. However, if cost is a concern, it may be worth considering alternative options that may be less expensive but still provide adequate filtration.
Diameter: 4. Retention: 11 m. In agriculture, it is used for soil analysis and seed testing procedures.
This Whatman 4. In air pollution monitoring, using circles or rolls, atmospheric dust is collected from airflow and the stain-intensity measured photo metrically. For gas detection, the paper is impregnated with a reagent and color formation quantified by optical reluctance pack.