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Unit 26 - Industrial Chemical Reactions - P5 M5 D5 - Extended Diploma

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This piece of work is to help with the P5, M5 and D5 Unit 26 Applied Science 2010 - My teacher has signed this assignment off which means that it does meet the grading criteria. Hope it helps, all the best. Please take note that this document cannot be copied and I would appreciate if you respect my work and use it to help yourself, however, please put it in your own words rather than copy. This piece of work is for guidance purposes. MAKE SURE TO REFERENCE YOUR WORK!! THIS DOCUMENT IS ALREADY WITH ALL CALCULATIONS AND ANSWERS!! Meets the grading criterias: P5 - explain corrosion tendency in terms of standard reduction potential. M5 - calculate the EMF of electrochemical cells using standard reduction potentials from oxidation/reduction half equations. D5 - analyse the extent to which standard reduction potentials may predict the extent of corrosion in an industrial context. Hope this helps, wish you all the best.

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April 25, 2018
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Written in
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Unit 26 – P5, M5 + D5 – Applied Science


P5 – explain corrosion tendency in terms of standard reducton potentall

M5 – calculate the EMF of electrochemical cells using standard reducton potentals from
oxidaton/reducton half euuatonsl

D5 – Analyse the extent to which standard reducton potentals may predict the extent of
corrosion in an industrial contextl

The standard reductin pitental is the tendency fir the reductin if chemicals which is usually
measured in vilts at standard cinditinss t wiuld depend in the mire pisitve is the pitental the
higher is the chance that it wiuld be reduceds t has been placed inti a categiry which is called the
standard cell pitental ir it ciuld alsi be called standard electride pitentals The standard cell
pitental is simething which is the pitental diference between the cathide and anides The
standard cinditins at which the standard pitentals are measured are at 298K, 1 atm and these are
carried iut in 1M silutinss The way in which the standard reductin pitentals are represented is
by reductin half reactinss An example if the standard reductin pitental half reactin ciuld be
seen beliw;

A – element

C – charge if the element

AC++Ce−→A
Cipper’s standard reductin pitental if Eo=+0.340V) fir the reactin can be seen beliw;

Cu2++2e−→Cu
There are alsi standard ixidatin pitentals which is very similar ti the standard reductin
pitentalss The tendency if the substances wiuld be ixidised at the standard cinditins (at 298K, 1
atm and these are carried iut in 1M silutinsss

The standard ixidatin pitental under standard cinditinss

A(s)→Ac++Ce−
The Cipper’s standard ixidatin pitentals

Cu(s)→Cu2++2e−
Eo0(SOP)=−0.34V
The standard ixidatin pitental and the standard reductin pitental tend ti be diferent chargess
There is certain relatin between them;

Eo0(SRP)=−Eo0(SOP)
The standard reductin pitentals can be determined using experimentss The experiment which can
be dine in irder ti measure it is the standard hydrigen electrides A diagram if the standard
hydrigen electrides

, Unit 26 – P5, M5 + D5 – Applied Science




The hydrigen tends ti have the reductin and ixidatin pitentals if 0s When the experiment is
perfirmed, the way in which the ixidatin pitental and the reductin pitental is measured is by
the diference in the pitental frim hydrigens The way in which this is dine by using the galvanic
cells in ine if the sides and the ither side wiuld have an unkniwn chemical being presents A
viltmeter wiuld then be used in irder ti fnd the pitental diference frim the hydrigens When the
experiment is being carried iut the unkniwn chemical wiuld becime reduced and the hydrigen
wiuld becime ixidiseds Hiwever, if the standard ixidatin pitental is being identfed, the
unkniwn chemical wiuld becime ixidised and the hydrigen wiuld becime reduceds The diagram
beliw indicated the standard reductin pitental and hiw it is usually determineds

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