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Supplier: Accu-Glass
Description: Disposable “Marked” Glass Micropipettes are precision ID capillaries cut to length for consistent fill volumes. Marked Micropipettes confirm to the following specifications: The nominal OD varies depending on the product but all tolerances are
- Configuration: Pipettor
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Supplier: Accu-Glass
Description: Disposable Full-Fill Glass Micropipettes are precision ID capillaries cut to length for consistent fill volumes. Full-fill Micropettes confirm to the following specifications: The nominal OD varies depending on the product but all tolerances are ± 0.002”
- Configuration: Pipettor
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Supplier: Miles Scientific (Analtech)
Description: Calibrated end to end disposable glass micropipettes provide economical, precise measurement of TLC samples with better than 1% accuracy. The tubes are quickly filled by capillary action or with the spotting bulb. One spotting bulb is supplied with each vial of 100
- Configuration: Pipette Tip
- Pipette Volume: 10 µl
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Supplier: Miles Scientific (Analtech)
Description: Calibrated end to end disposable glass micropipettes provide economical, precise measurement of TLC samples with better than 1% accuracy. The tubes are quickly filled by capillary action or with the spotting bulb. One spotting bulb is supplied with each vial of 100
- Configuration: Pipette Tip
- Pipette Volume: 4 µl
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Supplier: Miles Scientific (Analtech)
Description: Calibrated end to end disposable glass micropipettes provide economical, precise measurement of TLC samples with better than 1% accuracy. The tubes are quickly filled by capillary action or with the spotting bulb. One spotting bulb is supplied with each vial of 100
- Configuration: Pipette Tip
- Pipette Volume: 2 µl
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Supplier: Miles Scientific (Analtech)
Description: Calibrated end to end disposable glass micropipettes provide economical, precise measurement of TLC samples with better than 1% accuracy. The tubes are quickly filled by capillary action or with the spotting bulb. One spotting bulb is supplied with each vial of 100
- Configuration: Pipette Tip
- Pipette Volume: 1 µl
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Supplier: Cole-Parmer
Description: Precision-bore glass-capillary tube is topped with a dispensing bulb. Capillary action moves the fluid up the tube. Squeeze the bulb to release fluid. Accurate to
1% of rated volume. Each pack contains one bulb unit and 100 disposable tubes. Shipping weight 1 lb (0.5 kg). - Configuration: Pipettor
- Pipette Volume: 0.5000 µl
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Supplier: Cole-Parmer
Description: Precision-bore glass-capillary tube is topped with a dispensing bulb. Capillary action moves the fluid up the tube. Squeeze the bulb to release fluid. Accurate to
1% of rated volume. Each pack contains one bulb unit and 100 disposable tubes. Shipping weight 1 lb (0.5 kg). - Configuration: Pipettor
- Pipette Volume: 15 µl
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Supplier: Cole-Parmer
Description: Precision-bore glass-capillary tube is topped with a dispensing bulb. Capillary action moves the fluid up the tube. Squeeze the bulb to release fluid. Accurate to
1% of rated volume. Each pack contains one bulb unit and 100 disposable tubes. Shipping weight 1 lb (0.5 kg). - Configuration: Pipettor
- Pipette Volume: 1 µl
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Supplier: Cole-Parmer
Description: Precision-bore glass-capillary tube is topped with a dispensing bulb. Capillary action moves the fluid up the tube. Squeeze the bulb to release fluid. Accurate to
1% of rated volume. Each pack contains one bulb unit and 100 disposable tubes. Shipping weight 1 lb (0.5 kg). - Configuration: Pipettor
- Pipette Volume: 100 µl
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Supplier: Accu-Glass
Description: drawn it into long lengths. These are then cut to a specific length and the ends of the tubes are flame polished. Many times the tubes are marked with a color coded fill line to designate volume calibration for applications like disposable glass micropipettes. In the case of blood
- Bore Diameter (I.D.): 1.00E-3 to 0.0200 inch
- Shape / Form: Tube Stock
- Width / O.D.: 0.1250 inch
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Supplier: Accu-Glass
Description: Accu-Glass melts a pharmaceutical grade soda lime glass used in the medical, clinical, laboratory, and pharmaceutical industries (conforms to USP Type III and ASTM Type II). This composition has a wide range of uses, including capillary, hermatocrit, volumetric, flow restrictors and
- Coeff. of Thermal Expansion (CTE): 0.0910 µm/m-C
- Density: 2.5 g/cc
- Dielectric Constant (Relative Permittivity): 7.2 #
- Glass Type: Soda Lime
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Supplier: SKS Science Products
Description: The new NextGen V Vials amber glass high recovery vials feature a new fire glazed bottom which protects against glass particulates while the new low particulate packaging protects against contamination during transportation and storage. Vials come with Teflon-faced open top black
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Supplier: SKS Science Products
Description: The new NextGen V Vials amber glass high recovery vials feature a new fire glazed bottom which protects against glass particulates while the new low particulate packaging protects against contamination during transportation and storage. Vials come with Teflon-faced solid top 14B rubber
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Supplier: ASTM International
Description: quantitative (variable data) or quantitative (pass/fail) results depending on the requirements. 1.2.1 Headspace gas leakage defects equivalent to a 1µm diameter glass micropipette (sharp edge defect) can be detected at a 95% confidence level. 1.2.2 Liquid leakage defects
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Supplier: ASTM International
Description: quantitative (variable data) or qualitative (pass/fail) results depending on the requirements. 1.2.1 Headspace gas leakage defects equivalent to a 1µm diameter glass micropipette (sharp edge defect) can be detected at a 95% confidence level. 1.2.2 Liquid leakage defects
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Nanopipette with a lipid nanotube as nanochannel
Fabrication process of the LNT nanopipette includes two main parts; to pick up an LNT and to seal the interspace between it and glass micropipette .
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Carbon-based nanoprobes for cell biology
The most well known and widely used tools for cell nanosurgery are pulled glass micropipettes with tip diameters ranging from hun- dreds of nanometers to micrometers.
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http://dspace.mit.edu/bitstream/handle/1721.1/90004/890133105-MIT.pdf?sequence=2
2 Rapid and Scalable Automation for Glass Micropipettes .
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Ion Channels
A micrometer-aperture glass micropipette was pressed against a cell membrane and currents were recorded using a high-quality electronic amplifier.
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Plant Electrophysiology
Four stages of ion-selective microelectrode fabrication can be defined, and these are: (1) pulling of glass micropipettes , (2) silanization of the inside of surface of the ion-selective electrode or barrel, (3) backfilling and (4) calibration.
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Two simple approaches to fabricate Au microlines on the outer surfaces of micropipettes
However, it still remains a challenge to produce patterns on irregular surfaces, such as on the curved tip of a glass micropipette .
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Empirical study of unipolar and bipolar configurations using high resolution single
multi-walled carbon nanotube electrodes for electrophysiological probing of...
… standard electrophysiological techniques of intracellular and extracellular stimulation and recording and voltage clamping on nanoscale structures such as the presynaptic terminal and dendritic spines have been precluded by the difficulty in fabricating ultrafine sub-100 nm glass micropipette tips [8] and by …
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Flexible PDMS microtubes for examining local hydrophobicity
For instance, the tip sizes of commercially available glass micropipettes can be as small as 2 μm.
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Nanotechnology and Neuroscience: Nano-electronic, Photonic and Mechanical Neuronal Interfacing
With this method, SiNW FETs have successfully recorded extracellular action potential signals from neuron axons and dendrites, where the signal was in good temporal correlation with the intracellular action potentials recorded by a glass micropipette (Fig. 2.4a, b).
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Electroporation and Sonoporation in Developmental Biology
To overcome this problem, we have developed an electroporation method using glass micropipettes containing plasmid solutions and small current injection.
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