Answer: pOH of the given hydroxide ion concentration is 3.10
Explanation:
pOH is defined as the negative logarithm of hydroxide ion concentration. It is represented by the equation:
We are given:
Hydroxide ion concentration,
Putting values in above equation, we get:
Hence, pOH of the given hydroxide ion concentration is 3.10
pOH is defined as -log([OH-]).
pOH = -log([OH-]) = -log(7.9 * 10^-4) = 3.1
Hope this helps!
A. 200
B. 330
C. 400
D. 110
E. 88
Answer:
The correct answer is option B.
Explanation:
In this problem we assumed that heat given by the hot body is equal to the heat taken by the cold body.
where,
= specific heat of metal =
= specific heat of coffee=
= mass of metal = x
= mass of coffee = 0.3 kg
= final temperature of aluminum metal=
= initial temperature of aluminum metal =
= initial temperature of coffee=
Now put all the given values in the above formula, we get
Mass of aluminum cubes = 0.3333 kg = 333.3 g
If mass of 1 cube is 1 gram, then numbers of cubes in 333.3 grams will be:
330 cubes of aluminum cubes will be required.
Answer:
FALSE
Explanation:
Grunge refers to the genre of rock music and the fashion inspired by it. It originated in the mid-1980s in Seattle, Washington State.
Grunge was described as the fusion of punk rock and heavy metal.
This genre of music became popular in the early mid-1990s and included lyrics based on the theme of emotional and social alienation, betrayal, abuse, trauma etc.
The observation in this instance relates to the quantity of heat needed to melt ice, and it is expressed in terms of weights (2 lbs and 1 lb) and a comparison (twice the amount).
Without going into detail into the different molecules or their interactions, it concentrates on the general behaviour and characteristics of the substance (ice) as a whole.
A microscopic description, on the other hand, would describe the behaviour in terms of the molecular or atomic interactions that take place at the particle level. It would go into ideas such as the amount of heat required to dissolve the intermolecular interactions between water molecules.
Therefore, the observation regarding how much heat is needed to melt ice is a macroscopic description since it ignores the underlying molecular interactions in favour of the substance's general behaviour and qualities.
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The observation that melting 2 lbs of ice requires twice the heat of melting 1 lb is a macroscopic description, focusing on observable properties and behavior without exploring microscopic details.
This observation is a macroscopic description of chemical behavior. Macroscopic descriptions involve the properties and behavior of substances on a large scale that can be observed directly, without delving into the molecular or atomic details. In this case, the statement refers to the amount of heat required to melt a certain quantity of ice, and it is expressed in terms of macroscopic, measurable quantities (pounds of ice and the associated heat).
The macroscopic observation does not provide insight into the molecular or atomic interactions within the ice but rather focuses on the overall behavior of the substance. The concept that the amount of heat required to melt 2 lbs of ice is twice that needed for 1 lb of ice is a statement about the material's behavior at a larger scale.
This observation aligns with the macroscopic principles of heat and phase transitions, where the heat required for a phase change is directly proportional to the mass of the substance undergoing the transition. The macroscopic perspective is concerned with observable properties and measurements, making it a practical and accessible way to describe chemical behavior without delving into microscopic details.
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Answer:
Multiply the subscripts of the empirical formula by the value of the ratio of the molar mass of the compound to the empirical molar mass of the compound.
Explanation:
got it right on edge 2020 :)
Answer:
Multiply the subscripts of the empirical formula by the value of the ratio of the molar mass of the compound to the empirical molar mass of the compound.
Explanation:
Answer:
c. Presence of various elements in the metallic crystal structures is the main contributor to its densely packed structure
d. Metal's crystalline structure tends to be densely packed.
e. Anisotropic materials have their properties varying with the direction of measurement.
Explanation:
a. Isotopic properties are the characteristics of polycrystalline materials.
False because crystalline solids are anisotropic in nature because some properties like refractive index change in different direction in crystalline solids .
b. The crystal structure of metals is very complicated
false - crystalline solids have fixed and ordered pattern. so it has simple structure .
c. false - there is only one element . packed structure is because of short bond length .
d. true - metals are closely packed and in order manner
e. true - they have different properties in all direction like electrical conductivity and refractive index
f. False - metallic bonds are indirectional in nature .
Answer: The boiling point of solution is 100.53
Explanation:
We are given:
8.00 wt % of CsCl
This means that 8.00 grams of CsCl is present in 100 grams of solution
Mass of solvent = (100 - 8) g = 92 grams
The equation used to calculate elevation in boiling point follows:
To calculate the elevation in boiling point, we use the equation:
Or,
where,
Boiling point of pure solution = 100°C
i = Vant hoff factor = 2 (For CsCl)
= molal boiling point elevation constant = 0.51°C/m
= Given mass of solute (CsCl) = 8.00 g
= Molar mass of solute (CsCl) = 168.4 g/mol
= Mass of solvent (water) = 92 g
Putting values in above equation, we get:
Hence, the boiling point of solution is 100.53