The heat that is required to change the temperature of two cups of water (500 g) from room temperature (25◦C) to boiling
C) 157 kJ
Heat required= Mass of water x specific heat capacity of water x change in temperature of water required
Q=m* c* delta T
M = 500g
C = 4.184 g°C
Delta T = 100 - 25(room temp) = 75°C
Heat = 500 x 4.184 x 75
Heat = 156900 J
Heat = 156.9 KJ
Heat ~ 157.0 KJ (3.D.P)
Thus, the correct answer is C.
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Answer:
C
Explanation:
Heat required= Mass of water x specific heat capacity of water x change in temperature of water required
M = 500g
C = 4.184 g°C
Delta T = 100 - 25(room temp) = 75°C
Heat needed= 500 x 4.184 x 75
= 156900 J
= 156.9 KJ
~ 157.0 KJ (3.D.P)
The percent composition of nitrogen in sodium nitride is 16.86%
Sodium nitride is an inorganic compound that is used in preservatives and antidote for cyanide poisoning.
The molar mass of Na3N is 83 M
The mass of Na3N is 14 g
Thus, the percent composition of nitrogen in sodium nitride is 16.86%.
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Answer:
16.86%
Explanation:
Na3N is sodium nitride.
% of N = mass of N/ molar mass of Na3N *100
% of N = 14/83*100= 16.86%
(b)SO3 + H2O? (Assume an excess of water and that the product dissolves)
(c) SrO + H2SO4?
Explanation:
A balanced equation is defined as the one that has equal number of atoms of all the elements present on both reactant and product side.
(a)
Number of atoms on reactant side are as follows.
Mg = 1
O = 6
H = 3
Cl = 1
Number of atoms on product side are as follows.
Mg = 1
O = 9
H = 2
Cl = 2
So, to balance this equation we multiply by 2 on reactant side and multiply by 2 on product side.
Therefore, the balanced reaction equation is as follows.
(b)
Number of atoms on reactant side are as follows.
S = 1
O = 4
H = 2
Number of atoms on product side are as follows.
S = 1
O = 4
H = 2
Therefore, this equation is balanced as it has same number of atoms on both reactant and product side.
(c)
Number of atoms on reactant side are as follows.
Sr = 1
O = 1
H = 2
S = 1
O = 4
Number of atoms on product side are as follows.
Sr = 1
O = 1
H = 2
S = 1
O = 4
Therefore, this equation is balanced.
A. Loam
B. Clay
C. Sand
2. Which type of soil is best for planting?
A. Loam
B. Clay
C. Sand
3. How does each soil types differ?
A. Texture
B. Color
C. Both A & B
4. Which type of soil do you usually expect if the community is along the seashore?
A. Loam
B. Clay
C. Sand
5. Why is soil important to living things?
A. Forms part of the earth where animals live
B. Provides the necessary nutrients needed by plants
C. Serves as a place where people live
D. All of the above
Answer:
1. B
2. A
3. C
4. C
5. D
Explanation:
Soil is regarded as the solid unconsolidated material of the earth crust. Soil is of three different types namely: Sandy soil, clay soil and loamy soil. These three different soil types possess different properties that distinguish them. Some of them are:
- CLAY soil is characterized as having the finest particles and can hold greater amount of water i.e. have a high water holding capacity.
- LOAMY SOIL is the best soil type for planting agricultural crops because it has the highest concentration of nutrients that suited for plant growth.
- loamy, Sandy and clay differ in how we feel when touched i.e. texture, and colour.
- SANDY soils are the kind of soils that are found in Sea shores and beaches.
- Soil is important to living things as it forms part of the earth where animals live, provides the necessary nutrients needed by plants, serves as a place where people live.
Answer:
Explanation:
Moles of KHP :
Given, Mass of KHP = 0.1082 g
Molar mass of KHP = 204.22 g/mol
The formula for the calculation of moles is shown below:
Thus,
According to the reaction shown below:
KHP + NaOH ⇒ KNaP + H₂O
1 mole of KHP reacts with 1 mole of NaOH
So,
of KHP reacts with of NaOH
Moles of NaOH =
Volume = 24.46 mL = 0.02446 L ( 1 mL = 0.001 L)