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3D Printing Analytical Chemistry: Sample Preparation, Separation, and Sensing
Indigo
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3D Printing Analytical Chemistry: Sample Preparation, Separation, and Sensing
Current price: $176.79
Original price: $221.00


3D Printing Analytical Chemistry: Sample Preparation, Separation, and Sensing
Current price: $176.79
Original price: $221.00
Loading Inventory...
Size: Kobo eBook
*Product information may vary - to confirm product availability, pricing, shipping and return information please contact Indigo
3D Printing in Analytical Chemistry: Sample Preparation, Separation, and Sensing covers all the applications of 3D printed systems in relevant analytical areas such as sample preparation (use of sorbents, membranes, and devices), separation devices in analytical techniques, and as components in sensors and detection systems, among others. The book also includes key aspects on the preparation and design of novel 3D printed devices for analytical applications, including tips and tricks written by experts. Special features based on 3D printed structures for different applications are also highlighted, along with the most relevant works.
Presents the most important features regarding 3D printing in the Analytical Chemistry field, helping researchers improve their applications
Addresses adequate 3D printing technology for the desired application by giving tips and tricks, including the most relevant applications reported in the last years
Provides analytical researchers with a reference compendium on the use of 3D printing in extraction, separation, and sensing methodologies
3D Printing in Analytical Chemistry: Sample Preparation, Separation, and Sensing covers all the applications of 3D printed systems in relevant analytical areas such as sample preparation (use of sorbents, membranes, and devices), separation devices in analytical techniques, and as components in sensors and detection systems, among others. The book also includes key aspects on the preparation and design of novel 3D printed devices for analytical applications, including tips and tricks written by experts. Special features based on 3D printed structures for different applications are also highlighted, along with the most relevant works.
Presents the most important features regarding 3D printing in the Analytical Chemistry field, helping researchers improve their applications
Addresses adequate 3D printing technology for the desired application by giving tips and tricks, including the most relevant applications reported in the last years
Provides analytical researchers with a reference compendium on the use of 3D printing in extraction, separation, and sensing methodologies



















