Helios
Short Path - Receiving Flask 2000ml 24/40
Short Path - Tripple Neck Cow Receiving Flask 2000ml 24/40
The Short Path Triple Neck Cow Receiving Flask is a specialized laboratory glassware item designed for use in chemical or distillation processes. Here are the key features and specifications typically associated with this type of flask:
-
Material: Made from high-quality borosilicate glass, which is resistant to thermal shock and chemical corrosion, ensuring durability and reliability in laboratory settings.
-
Capacity: The flask has a capacity of 2000 ml, making it suitable for medium to large-scale distillation or other processes requiring a significant volume of liquid.
-
Neck Design: The "triple neck" design features three necks (or openings), allowing for multiple connections to other glassware or apparatus, enabling complex setups such as simultaneous distillation, reflux, or condensation.
-
Joint Size: The 24/40 designation refers to the ground glass joint size (approximately 24 mm outer diameter and 40 mm length), which is a standard size in laboratory glassware. This ensures compatibility with other 24/40 jointed glassware components.
-
Short Path Configuration: The short path design minimizes the distance that vapor has to travel, improving the efficiency of distillation and reducing potential losses of volatile compounds. This configuration is particularly useful in vacuum distillation applications.
-
Applications: Commonly used in organic chemistry, pharmaceuticals, and other chemical fields, especially for processes like distillation, extraction, or synthesis where precise separation of components is required.
-
Usability: The flask typically comes with a flat bottom for stability when placed on a work surface or heating mantle, and the design may include features such as a ground joint for secure connections and a robust structure to withstand pressure variations.
Overall, the Short Path Triple Neck Cow Receiving Flask is an essential tool for chemists and researchers working in environments that require high precision and effective separation of chemical substances.
Short Path - Receiving Flask 2000ml 24/40
Short Path - Tripple Neck Cow Receiving Flask 2000ml 24/40
The Short Path Triple Neck Cow Receiving Flask is a specialized laboratory glassware item designed for use in chemical or distillation processes. Here are the key features and specifications typically associated with this type of flask:
-
Material: Made from high-quality borosilicate glass, which is resistant to thermal shock and chemical corrosion, ensuring durability and reliability in laboratory settings.
-
Capacity: The flask has a capacity of 2000 ml, making it suitable for medium to large-scale distillation or other processes requiring a significant volume of liquid.
-
Neck Design: The "triple neck" design features three necks (or openings), allowing for multiple connections to other glassware or apparatus, enabling complex setups such as simultaneous distillation, reflux, or condensation.
-
Joint Size: The 24/40 designation refers to the ground glass joint size (approximately 24 mm outer diameter and 40 mm length), which is a standard size in laboratory glassware. This ensures compatibility with other 24/40 jointed glassware components.
-
Short Path Configuration: The short path design minimizes the distance that vapor has to travel, improving the efficiency of distillation and reducing potential losses of volatile compounds. This configuration is particularly useful in vacuum distillation applications.
-
Applications: Commonly used in organic chemistry, pharmaceuticals, and other chemical fields, especially for processes like distillation, extraction, or synthesis where precise separation of components is required.
-
Usability: The flask typically comes with a flat bottom for stability when placed on a work surface or heating mantle, and the design may include features such as a ground joint for secure connections and a robust structure to withstand pressure variations.
Overall, the Short Path Triple Neck Cow Receiving Flask is an essential tool for chemists and researchers working in environments that require high precision and effective separation of chemical substances.