Nmr Experiment, NMR-01 Nmr Experiment, NMR-01 Nmr Experiment, NMR-01 Nmr Experiment, NMR-01
Nmr Experiment, NMR-01
Nmr Experiment, NMR-01 Nmr Experiment, NMR-01 Nmr Experiment, NMR-01

Nmr Experiment, NMR-01

Product Details:

  • Color Grey
  • Usage Laboratory Experiment
  • Material Electronics
  • Weight 30 Kg Kilograms (kg)
  • Application Laboratory Experiment
  • Display Type Digital
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Nmr Experiment, NMR-01 Price And Quantity

  • 1 Set

Nmr Experiment, NMR-01 Product Specifications

  • Laboratory Experiment
  • Grey
  • Digital
  • Electronics
  • 30 Kg Kilograms (kg)
  • Laboratory Experiment

Nmr Experiment, NMR-01 Trade Information

  • Cash Against Delivery (CAD) Cash on Delivery (COD) Cash Advance (CA) Cash in Advance (CID) Cheque Delivery Point (DP) Telegraphic Transfer (T/T)
  • 100 Set Per Month
  • 1 Week
  • Contact us for information regarding our sample policy
  • Complete in all respect
  • Western Europe Australia North America South America Eastern Europe Middle East Africa Central America Asia
  • All India
  • ISO 9001: 2015 CE

Product Description

Nmr Experiment, NMR-01

Looking to expand our business as per rising market demand, we are engaged as Exporter, Manufacturer & Supplier of NMR Experiment in Roorkee, Uttarakhand, India.

This equipment has following features:

  • Suitable for 1H and 11F nuclei
  • FET based marginal Oscillator
  • Digital Dispaly of frequency and current
  • Clear display of resonance peaks
  • Compatible with general purpose CRO

In our experiment the NMR signals of Hydrogen nuclei and Fluorine nuclei are detected. Both have only two possible orientations in reference to static magnetic field H since both have proton spin I=1/2. The sample is placed in an r.f.coil located between the gap of homogeneous magnetic field H. In order to exactly match equation (3), H is modulated at constant frequency (50Hz in our case) by using two modulation coils. Each time when the matching (resonance) condition (Eq.3) is fulfilled, energy is absorbed from the r.f. coil due to the spin transition.

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