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216. balance the following redox equation using the oxidation-number-ch…

Question

  1. balance the following redox equation using the oxidation-number-change method. show all your work.

\\(\text{fe}_2\text{o}_3 + \text{co} \
ightarrow \text{fe} + \text{co}_2\\)

  1. at what temperature is the standard cell potential measured?
  1. how many carbon and hydrogen atoms are in a 1-octene molecule?
  1. write the general structure for aldehyde compounds.
  1. draw the structure of benzaldehyde.

numeric response

  1. how many electrons are present in the \\(d\\) sublevel of a neutral atom of nickel?
  1. how many electrons are in a rubidium ion (\\(\text{rb}^+\\))?
  1. in 1829, the german chemist j. r. dobereiner published a classification system in which elements were put into groups according to their properties. how many elements did he put in each of his groups?
  1. how many neighbors does every atom (except those on the surface) have in a body-centered cubic structure such as a tungsten crystal?
  1. how many electrons does a gallium atom give up when it becomes an ion?
  1. how many valence electrons does an iodine atom have?
  1. what is the total number of covalent bonds normally associated with a single carbon atom in a compound?
  1. how many electrons are shared in a single covalent bond?
  1. how many unshared pairs of electrons does the nitrogen atom in ammonia possess?
  1. how many electrons does carbon need to gain in order to obtain a noble-gas electron configuration?
  1. how many electrons are shared in a double covalent bond?
  1. how many covalent bonds are in a covalently bonded molecule containing 1 phosphorus atom and 3 chlorine atoms?
  1. how many unshared pairs of electrons are in a molecule of hydrogen iodide?
  1. if the hydrogen ion concentration is \\(10^{-4}\text{ m}\\), what is the ph of the solution?

Explanation:

Balance the redox equation (216)

Using the Redox Balancing knowledge point

$$ LATEXBLOCK0 $$

Standard cell potential temperature (217)

Using the Standard Cell Potential Calculation knowledge point
Standard thermodynamic conditions specify a temperature of \(25^\circ\text{C}\) (which is \(298.15\text{ K}\)).

Octene molecular formula (218)

Using the Alkane Nomenclature knowledge point
1-octene is an alkene with 8 carbon atoms. The general formula for alkenes is \(\mathrm{C_nH_{2n}}\).

$$ LATEXBLOCK1 $$

General structure for aldehydes (219)

An aldehyde contains a carbonyl group (\(\mathrm{C=O}\)) bonded to at least one hydrogen atom. The general formula is \(\mathrm{R-CHO}\), where \(\mathrm{R}\) represents a hydrogen atom or an alkyl/aryl group.

Structure of benzaldehyde (220)

Benzaldehyde consists of a benzene ring (\(\mathrm{C_6H_5-}\)) attached to a formyl group (\(\mathrm{-CHO}\)). Its chemical formula is \(\mathrm{C_6H_5CHO}\).

Nickel d-sublevel electrons (221)

Using the Electron Configuration Blocks knowledge point

$$ LATEXBLOCK2 $$

Rubidium ion electrons (222)

Using the Electron Configuration Blocks knowledge point

$$ LATEXBLOCK3 $$

Dobereiner's groups (223)

Johann Wolfgang Döbereiner classified elements into groups of three based on similar chemical properties, known as Döbereiner's Triads. Thus, he put 3 elements in each of his groups.

Body-centered cubic coordination number (224)

Using the Crystal Structures knowledge point
In a body-centered cubic (BCC) unit cell, the central atom is in direct contact with the 8 corner atoms. Therefore, the coordination number (number of nearest neighbors) is 8.

Gallium ion formation (225)

Usi…

Answer:

No.Answer

| 216 | \(\mathrm{Fe_2O_3 + 3CO
ightarrow 2Fe + 3CO_2}\) |

217\(25^\circ\text{C}\) (or \(298.15\text{ K}\))
2188 carbon atoms and 16 hydrogen atoms
219\(\mathrm{R-CHO}\) (where \(\mathrm{R}\) is \(\mathrm{H}\) or an alkyl/aryl group)
220\(\mathrm{C_6H_5CHO}\) (a benzene ring attached to a \(\mathrm{-CHO}\) group)
2218
22236
2233
2248
2253
2267
2274
2282
2291
2304
2314
2323
2333
2344