(a) Interpretation: The number of atoms of each element present in the formula unit of ammonium sulfate is to be stated. Concept introduction: Ionic compounds are made of cation and ions that are held together by the strong electrostatic force of attraction. Ionic bonding is very strong. Formula unit of an ionic compound is defined as the empirical formula of ionic compounds. It represents the simplest and smallest unit of an ionic compound.
(a) Interpretation: The number of atoms of each element present in the formula unit of ammonium sulfate is to be stated. Concept introduction: Ionic compounds are made of cation and ions that are held together by the strong electrostatic force of attraction. Ionic bonding is very strong. Formula unit of an ionic compound is defined as the empirical formula of ionic compounds. It represents the simplest and smallest unit of an ionic compound.
Solution Summary: The author defines the formula unit of an ionic compound as the empirical formula of cation and ions that are held together by the strong electrostatic force of attraction
The number of atoms of each element present in the formula unit of ammonium sulfate is to be stated.
Concept introduction:
Ionic compounds are made of cation and ions that are held together by the strong electrostatic force of attraction. Ionic bonding is very strong. Formula unit of an ionic compound is defined as the empirical formula of ionic compounds. It represents the simplest and smallest unit of an ionic compound.
Interpretation Introduction
(b)
Interpretation:
The number of atoms of each element present in the formula unit of aluminum carbonate is to be stated.
Concept introduction:
Ionic compounds are made of cation and ions that are held together by the strong electrostatic force of attraction. Ionic bonding is very strong. Formula unit of an ionic compound is defined as the empirical formula of ionic compounds. It represents the simplest and smallest unit of an ionic compound.
Two cations that exchange an electron in an interface, the exchange density is worth 1.39 mA/cm2 and the current density is worth 15 mA/cm2 at 25°C. If the overvoltage is 0.14 V, calculate the reaction rate and symmetry factor. Data: R = 8,314 J mol-1 k-1: F = 96500 C
With the help of the Tafel line, it is estimated that the interchange density of the VO2+/VO2+ system on the carbon paper has a value of 3 mA cm-2. Calculate a) the current density if the voltage has a value of 1.6 mV and the temperature is 25°C. b) the beta value of the anódico process if the Tafel pendulum is 0.6 V at 25°C. Data: R = 8.314 JK-1mol-1, y F = 96485 C mol-1.
Apply the NANSTE law to the MnO4- + 8H+ + 5e- ⇄ Mn2+ + 4H2O
Chapter 7 Solutions
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