Panel frame C50, two-level, for CPS

LD 666425
Panel frame C50, two-level, for CPS
  4  Panel frame C50, two-level, for CPS

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Description

  • Two levels
  • T-shaped base
  • Power duct
  • Height: 84 cm
  • Width: 56 cm
  • Depth: 30 cm

Related Documents

PDF (Experiment description) PDF (Experiment description) C1.1.1.1 Determination of the relative atomic mass of metals
PDF (Experiment description) PDF (Experiment description) C1.1.2.2 Melting and solidification curve of tin (de)
PDF (Experiment description) PDF (Experiment description) C1.3.1.1 Electrolytic water decomposition according to Hoffmann
PDF (Experiment description) PDF (Experiment description) C1.3.2.1 Qualitative water synthesis
PDF (Experiment description) PDF (Experiment description) C1.3.3.2 The ion product of water
PDF (Experiment description) PDF (Experiment description) C1.4.2.1 Production of gases with a Kipp’s apparatus
PDF (Experiment description) PDF (Experiment description) C2.2.2.2 The automated Blue Bottle Experiment - a reversible redox reaction
PDF (Experiment description) PDF (Experiment description) C2.3.2.1 Fractionated petroleum distillation with a bubble tray column
PDF (Experiment description) PDF (Experiment description) C2.3.3.1 Boiling range distribution of petrol
PDF (Experiment description) PDF (Experiment description) C2.3.3.2 Boiling range distribution and fractionated distillation of petroleum
PDF (Experiment description) PDF (Experiment description) C2.4.3.1 Distillation of red wine
PDF (Experiment description) PDF (Experiment description) C2.4.3.3 Purification of a substance with water vapour distillation
PDF (Experiment description) PDF (Experiment description) C3.2.1.1 Gas chromatographical analysis of cigarette lighter gas (butane gas)
PDF (Experiment description) PDF (Experiment description) C3.2.1.2 Gas chromatographical separation of alcohols - effect of temperature, CPS version
PDF (Experiment description) PDF (Experiment description) C3.5.2.1 Conductometric titration of a hydrochloric acid solution, CPS variety
PDF (Experiment description) PDF (Experiment description) C3.5.2.3 Conductometric titration using the Electrochemistry demonstration unit
PDF (Experiment description) PDF (Experiment description) C4.1.3.3 Concentration and reaction rate: Magnesium in strong and weak acids
PDF (Experiment description) PDF (Experiment description) C4.4.1.1 Ion transport in liquids
PDF (Experiment description) PDF (Experiment description) C4.4.1.2 Determination of migration velocity of permanganate ions
PDF (Experiment description) PDF (Experiment description) C4.4.1.3 Determination of specific conductivity
PDF (Experiment description) PDF (Experiment description) C4.4.1.4 Electrolytic dissociation: Dependence of conductivity on electrolyte concentration
PDF (Experiment description) PDF (Experiment description) C4.4.1.5 Conductivity of solids
PDF (Experiment description) PDF (Experiment description) C4.4.1.6 Temperature-dependency of the conductivity of solids
PDF (Experiment description) PDF (Experiment description) C4.4.1.7 Conductivity of aqueous solutions
PDF (Experiment description) PDF (Experiment description) C4.4.1.8 Conductivity of melts
PDF (Experiment description) PDF (Experiment description) C4.4.3.1p The electrochemical series
PDF (Experiment description) PDF (Experiment description) C4.4.3.2p Standard potentials of metals
PDF (Experiment description) PDF (Experiment description) C4.4.3.3 Standard potentials of non-metals
PDF (Experiment description) PDF (Experiment description) C4.4.3.4 Concentration potentials (Nernst equation)
PDF (Experiment description) PDF (Experiment description) C4.4.3.5 Temperature dependency of the potential (Nernst equation)
PDF (Experiment description) PDF (Experiment description) C4.4.4.1a The Daniell cell
PDF (Experiment description) PDF (Experiment description) C4.4.4.2a The Leclanché cell
PDF (Experiment description) PDF (Experiment description) C4.4.4.4 Influence of electrolyte concentration on the Daniell element
PDF (Experiment description) PDF (Experiment description) C4.4.4.5 Influence of the electrode gap on the Daniell element
PDF (Experiment description) PDF (Experiment description) C4.4.4.6 Serial and parallel connection of elements
PDF (Experiment description) PDF (Experiment description) C4.4.4.7a Recording characteristics of a Daniell element with the electrochemistry demonstration unit
PDF (Experiment description) PDF (Experiment description) C4.4.4.8 Edison accumulator
PDF (Experiment description) PDF (Experiment description) C4.4.5.1p Electrolytic polarisation
PDF (Experiment description) PDF (Experiment description) C4.4.5.2 Determination of the Faraday constant
PDF (Experiment description) PDF (Experiment description) C4.4.5.3 The Faraday laws
PDF (Experiment description) PDF (Experiment description) C4.4.6.2 The Eloxal process
PDF (Experiment description) PDF (Experiment description) C4.4.7.1 Investigation of a PEM fuel cell stack
PDF (Experiment description) PDF (Experiment description) C4.4.7.2 Recording the characteristic curves of a PEM fuel cell stack
PDF (Experiment description) PDF (Experiment description) C4.4.7.3 The alkaline fuel cell/The detonating gas cell
PDF (Experiment description) PDF (Experiment description) C5.1.1.3 Chlorine-alkali electrolysis
PDF (Experiment description) PDF (Experiment description) C5.1.2.3 Copper refining
PDF (Experiment description) PDF (Experiment description) C5.3.1.2 Catalytic purification of automobile exhaust gases

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