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Capillary tube, 1.0 mm, Height: 100 mm

From  Hirschmann
Material: soda-lime glass.
Ø ext.
Height


Open at both ends.
Product details

€107.50/Pack Qty. 

excl. VAT. | 1,000 unit(s) per Pack Qty.

Art. No. EAE1.1

In procurement
from 6 Pack Qty. €102.12/Pack Qty.
from 24 Pack Qty. €96.75/Pack Qty.

Product details

Material: soda-lime glass.

Open at both ends.



Capillary tube 

Technical Information
Ø ext. 1 mm
Ø internal 0.8 mm
Height 100 mm
Packaging type can 
Capillary tube
Selected quantity:   0
  1. Subtotal:  0.00
Art. No. Ø ext. Height Pack Qty. Price Quantity
EAC8.1 1,35 mm 80 mm 1000 unit(s)

€65.45

EAE0.1 1 mm 90 mm 1000 unit(s)

€94.60

EAC7.1 1 mm 80 mm 1000 unit(s)

€93.90

EAE2.1 1,35 mm 100 mm 1000 unit(s)

€76.35

EAE5.1 1,35 mm 120 mm 1000 unit(s)

€90.25

EAE1.1 1 mm 100 mm 1000 unit(s)

€107.50

EAE4.1 1 mm 120 mm 1000 unit(s)

€109.85

EAE6.1 1 mm 150 mm 1000 unit(s)

€119.10

EAE3.1 1,55 mm 100 mm 1000 unit(s)

€70.00

EAC9.1 1,55 mm 80 mm 1000 unit(s)

€68.40

In stock
Available
In procurement
No longer available
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Selected quantity:   0
  1. Subtotal:  0.00

Downloads / MSDS

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General information

Further attractive products to complete your chromatography laboratory can be found on our Chromatography page!


Thin Layer Chromatography (TLC)

Although the principle of thin-layer chromatography is more than a century old, it did not make its breakthrough as an analytical method until about 50 years ago.
Thanks to the development of new sorbents and supports, as well as increasing instrumentation and automation, TLC has become a versatile separation method. It is used both in qualitative analysis and in quantitative analysis.
Applications range from simple manual separation processes in classic TLC to automated processes in HPTLC (high performance thin layer chromatography).

Advantages of thin layer chromatography:

  • Higher sample throughput in less time
  • Suitable for screening tests
  • Pilot process for HPLC
  • The ready-to-use TLC layer functions as a data storage device for separation results
  • The separated substances can be used later for further analysis (e.g. IR, MS)
  • By switching the mobile and the stationary phases, the separation process can be optimised quickly and cost-efficient