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Supplier: Thermo Orion
Description: These durable conductivity cells provide high performance conductivity measurements.

Supplier: Mettler - Toledo
Description: This digital conductivity sensor has a high precision temperature probe. The conductivity and temperature signals are digitised and combined through a special algorithm for unmatched conductivity accuracy.

Supplier: Cole-Parmer
Description: Cells for conductivity measurement.

Catalog Number: (HACHLZW5060970002)
Supplier: Hach
Description: This three-pole platinum cell with integrated temperature sensor is protected against harsh field conditions.
UOM: 1 * 1 items


Catalog Number: (ENDRCLS15E-1061/0)
Supplier: Endress+Hauser
Description: A digital sensor for low measuring ranges, suitable for applications such as boiler feed water monitoring and chip cleaning. Benefit from its extended data storage functions that enable predictive maintenance.
UOM: 1 * 1 items


Supplier: Mettler - Toledo
Description: This conductivity measuring cell utilises the four- pole potentiometric method for measuring conductivity, which incorporates a series of four graphite poles embedded in the probe shaft. This design completely eliminates the polarisation, which frequently occurs with the two-plate amperometric method during measuring high conductivity solution.

Catalog Number: (BOSSBS-7689R-CY5.5)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Catalog Number: (BOSSBS-7689R-A350)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Catalog Number: (BOSSBS-7689R-CY3)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Catalog Number: (BOSSBS-7689R-CY5)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Catalog Number: (BOSSBS-7689R-CY7)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


Catalog Number: (YSIA603401)
Supplier: YSI ENVIRONMENTAL
Description: Dip type conductivity cells made from 7740 PYREX borosilicate glass. For use with the 3100 and 3200 conductivity benchtop instruments (cell adapter required).
UOM: 1 * 1 items


Catalog Number: (VWRU23198-020)
Supplier: VWR Collection
Description: Dip Conductivity Cells have a durable epoxy body making them rugged for field use, yet designed for precise and accurate measurements in the laboratory. Ideal for measuring solutions in a test tube or beaker.
UOM: 1 * 1 items


Catalog Number: (ORIO014005)
Supplier: Thermo Orion
Description: Measure samples with the utmost versatility using this 3-electrode conductivity cell, which has high, standard and low conductivity measuring ranges.
UOM: 1 * 1 items


Catalog Number: (HACHLZW5062970002)
Supplier: Hach
Description: The 5062 is ideal for conductivity measurements in extreme conditions and for 'difficult' applications, including dirty and viscous samples. Dedicated for use with Hach sensION+ portable conductivity meters.
UOM: 1 * 1 items


Catalog Number: (BOSSBS-7689R-A555)
Supplier: Bioss
Description: Potassium channels are a group of ubiquitously expressed proteins that serve numerous functions in excitable and non-excitable cells. One class of integral membrane potassium channels is the large conductance, calcium-activated potassium channel (Maxi K+). Maxi K+ differs from most other potassium channels in that its activation is controlled by both increases in intracellular calcium and by membrane depolarization. Maxi K+ dual activation is possible because of its structure. The core of the channel, which is similar to other potassium channels, is a Maxi K+ alpha homotetramer that contains both a voltage sensor and an intracellular calcium binding domain. In vascular smooth muscle, an auxiliary beta-subunit is found in a 1:1 stoichiometry. The beta-subunit exhibits its effect on the Maxi K+ channel by effectively decreasing by 5- to 10- fold the concentration of calcium required to keep the pore open. Maxi K+ beta is the target for possible therapeutics because of its role in blood flow and blood pressure regulation.
UOM: 1 * 100 µl


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Stock for this item is limited, but may be available in a warehouse close to you. Please make sure that you are logged in to the site so that available stock can be displayed. If the call is still displayed and you need assistance, please call us at +43 1 97002 - 0.
Dual use goods can only be delivered within the European Union.
Dual use goods can only be delivered within the European Union.
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