Calculate the quantity of heat, in kilojoules, (a) required to raise the temperature of 9.25 L of water from 22.0 to 29.4 °C; (b) associated with a 33.5°C decrease in temperature in a 5.85 kg aluminum bar (specific heat capacity of aluminum = 0 .903 J g -10 C -1 ) .
Calculate the quantity of heat, in kilojoules, (a) required to raise the temperature of 9.25 L of water from 22.0 to 29.4 °C; (b) associated with a 33.5°C decrease in temperature in a 5.85 kg aluminum bar (specific heat capacity of aluminum = 0 .903 J g -10 C -1 ) .
Calculate the quantity of heat, in kilojoules, (a) required to raise the temperature of 9.25 L of water from 22.0 to 29.4 °C; (b) associated with a 33.5°C decrease in temperature in a 5.85 kg aluminum bar (specific heat capacity of aluminum
= 0
.903 J g
-10
C
-1
)
.
Expert Solution
Interpretation Introduction
(a)
Interpretation:
The heat required to raise the temperature of 9.25 L water from 22 0C to 29.4 0C is to be calculated.
Concept introduction:
The amount of heat required in order to increase the temperature by one degree Celsius of unit mass of a substance is said to be the specific heat.
The heat required to change the temperature of a substance is related to heat capacity of the substance by the expression as:
Q=mcΔTwhere,Q = Heat requiredm = mass of the substancec = specific heat of the substanceΔT = change in temperature
Answer to Problem 1E
The heat required to raise the temperature of 9.25 L water from 22 0C to 29.4 0C is 286.121 kJ.
Explanation of Solution
The amount of heat required to raise the temperature of a substance is given as:
Q=mcΔT−−−−(1)where,Q = Heat requiredm = mass of the substancec = specific heat of the substanceΔT = change in temperature
The mass of water can be calculated using the given volume of water and the density of water.
Density of water = Mass of waterVolume of water ⇒ Mass of water = Density of water × Volume of water⇒m=1 kg/L × 9.25 L = 9.25 kg⇒m=9.25×1000 g (∵ 1 kg = 1000 g)⇒m = 9250 g
The change in temperature = (29.4 - 22.0) 0C = 7.4 0C
Specific heat of water = c = 4.18 J/g0C
Substituting the above values in equation (1) to calculate the value of Q:
sketch the nature of the metal-alkylidene bonding interactions.
Part C
The perspective formula of isoleucine, an amino acid, is provided below.
HOOC
H₂NIC
H
川
CH3
CH,CH3
Draw the Newman projection in staggered conformation for isoleucine by viewing the molecule along the
C-2-C-3 bond.
1. Edit the Newman projection on the canvas.
2. Replace the appropriate hydrogens with the appropriate -CH3 or other groups.
3. If you need to start over, Undo or choose a Newman projection from the Templates toolbar
(bottom).
Important: Never delete the hydrogen atoms or bonds directly attached to the template, and do not move
them by dragging or dropping them. That will break the projections structures. Only replace them!
▸ View Available Hint(s)
0 2
H± 3D
EXP.
L
ד
י
CONT. 2
H
0
N
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