Interpretation : By the use of dimensional analysis, the given density is to be converted.
Concept Introduction : An effective approach for resolving conversion problems where measurement in one unit is changed to an equivalent measurement in another is dimensional analysis.
The connectivity between mass and volume is density. The formula of density is given as:
Answer to Problem 43SP
The desired conversion is finding the volume of boron. The volume of boron is
Explanation of Solution
Given information:
The density of boron is
The mass of boron is
An effective approach for resolving conversion problems where measurement in one unit is changed to an equivalent measurement in another is dimensional analysis.
Density is defined as the ratio of mass to volume. It gives the connectivity between mass and volume.
The formula of density is given as:
To convert
Rewrite the density formula to isolate the volume term.
To calculate the volume, substitute the values in above formula:
The desired conversion is finding the volume of boron. The volume of boron is
Interpretation : By the use of dimensional analysis, the given density is to be converted.
Concept Introduction : An effective approach for resolving conversion problems where measurement in one unit is changed to an equivalent measurement in another is dimensional analysis.
The connectivity between mass and volume is density. The formula of density is given as
Answer to Problem 43SP
The desired conversion is finding the volume of mercury. The volume of mercury is
Explanation of Solution
Given information:
The density of mercury is
The mass of mercury is
An effective approach for resolving conversion problems where measurement in one unit is changed to an equivalent measurement in another is dimensional analysis.
Density is defined as the ratio of mass to volume. It gives the connectivity between mass and volume.
The formula of density is given as
To convert
Rewrite the density formula to isolate the volume term.
To calculate the volume, substitute the values in the above formula:
The desired conversion is finding the volume of mercury. The volume of mercury is
Chapter 3 Solutions
EP CHEMISTRY-1-YEAR LICENSE (REALIZE)
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- Using the equation below, what is the rate of this reaction if the rate of disappearance of H2 is 0.44 M/sec? H2 + Br2 → 2HBrarrow_forward2Fe3+(aq) + Sn2+(aq) □ 2Fe²+(aq) + Sn 4+ (aq) If the change in Sn²+ concentration is 0.0010M in 38.5 seconds, what is the rate of disappearance of Sn²+?arrow_forwardFor a neutral hydrogen atom with an electron in the n = 4 state, how many different energies are possible when a photon is emitted? 4 3 2 1 There are infinite possibilitiesarrow_forward
- 2 NO(g) + H2(g) → N2(g) +2 H2O(g) If NO has rate of disappearance of 0.025 M/min, what is the rate of this reaction?arrow_forward2Fe3+(aq) + Sn2+(aq) □ 2Fe²+(aq) + Sn 4+ (aq) If the change in Sn2+ concentration is 0.0010M in 38.5 seconds, what is the rate of appearance of Fe²+?arrow_forwardUsing the equation below, if the rate of disappearance of Cl2 is 0.26 M/min, what is the rate of this reaction? 2NO(g) + Cl2(g) → 2NOCI(g)arrow_forward
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