The thermochemical basis for the given statement has to be written. Concept Introduction: Specific heat: Specific heat can be defined as quantity of heat required to raise the temperature of 1 g substance by 1°C . The relationship between heat and change in temperature can be expressed by the equation given below. q=cmΔT Where, q= Heat added c= Specific heat m= Mass ΔT= Change in temperature . The unit of specific heat is J g -1 .°C . Heat capacity: Heat capacity can be defined as quantity of heat required to raise the temperature of the object by 1°C . The other equation that is used to calculate heat from heat capacity can be given by, q=CΔT Where, C= Heat capacity of calorimeter ΔT= Change in temperature The unit of heat capacity is J .°C -1 The relationship between heat and specific heat capacity is given as, C=ms
The thermochemical basis for the given statement has to be written. Concept Introduction: Specific heat: Specific heat can be defined as quantity of heat required to raise the temperature of 1 g substance by 1°C . The relationship between heat and change in temperature can be expressed by the equation given below. q=cmΔT Where, q= Heat added c= Specific heat m= Mass ΔT= Change in temperature . The unit of specific heat is J g -1 .°C . Heat capacity: Heat capacity can be defined as quantity of heat required to raise the temperature of the object by 1°C . The other equation that is used to calculate heat from heat capacity can be given by, q=CΔT Where, C= Heat capacity of calorimeter ΔT= Change in temperature The unit of heat capacity is J .°C -1 The relationship between heat and specific heat capacity is given as, C=ms
Solution Summary: The author explains the thermochemical basis for the given statement. Specific heat can be defined as quantity of heat required to raise the temperature of the substance by 1°C.
The thermochemical basis for the given statement has to be written.
Concept Introduction:
Specific heat:
Specific heat can be defined as quantity of heat required to raise the temperature of 1g substance by 1°C. The relationship between heat and change in temperature can be expressed by the equation given below.
q=cmΔT
Where,
q= Heat added
c= Specific heat
m= Mass
ΔT= Change in temperature.
The unit of specific heat is Jg-1.°C .
Heat capacity:
Heat capacity can be defined as quantity of heat required to raise the temperature of the object by 1°C.
The other equation that is used to calculate heat from heat capacity can be given by,
q=CΔT
Where,
C= Heat capacity of calorimeter
ΔT= Change in temperature
The unit of heat capacity is J.°C-1
The relationship between heat and specific heat capacity is given as,
C=ms
(b)
Interpretation Introduction
Interpretation:
The given statement has to be explained.
Concept Introduction:
Heat capacity:
Heat capacity can be defined as quantity of heat required to raise the temperature of the object by 1°C.
The other equation that is used to calculate heat from heat capacity can be given by,
Correctly name this compound using the IUPAC naming system by sorting the
components into the correct order.
Br
IN
Ν
H
How is the radical intermediate for this structure formed? Can you please draw arrows from the first radical to the resonance form that would result in this product? I'm lost.
Part VI.
(a) calculate the λ max of the compound using woodward - Fieser rules.
(b) what types of electronic transitions are present in the compound?
(c) what are the prominent peaks in the IR spectrum of the compound?
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