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In the following drawing, the green spheres represent atoms of a certain element. The purple spheres represent atoms of another element. If the spheres of different elements touch, they are part of a single unit of a compound. The following chemical change represented by these spheres may violate one of the ideas of Dalton鈥檚 atomic theory. Which one?

Short Answer

Expert verified

The postulate 5 is being violated because the reactants have 1 green and 2 purple spheres while the products have 2 green and 2 purple spheres.

Step by step solution

01

Step1: Dalton’s atomic theory

Postulate 1:

A matter is made up of microscopic particles known as atoms

02

Postulate 2

An element is made up of only one sort of atom, which has a mass that is unique to the element and is shared by all the atoms of that element. A macroscopic sample of an element comprises an enormous number of atoms with identical chemical characteristics.

03

Postulate 3

Atoms of one element have properties that differ from atoms of all other elements.

04

Postulate 4

A compound is made up of atoms from two or more elements that are mixed in a tiny, whole-number ratio.The numbers of atoms of a compound's elements are always present in the same ratio.

05

Postulate 5

During a chemical change, atoms are not generated nor destroyed. Rather, they are rearranged to produce substances that differ from those existent before the change.

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Most popular questions from this chapter

For each of the following compounds, state whether it is ionic or covalent, and if it is ionic, write the symbols for the ions involved:

  1. \(KCl{O_4}\)
  2. \(Mg{\left( {{C_2}{H_3}{O_2}} \right)_2}\)
  3. \({H_2}S\)
  4. \(A{g_2}S\)
  5. \({N_2}C{l_4}\)
  6. \(Co{\left( {N{O_3}} \right)_2}\)

Click on the site (http://openstaxcollege.org/l/16PhetAtomMass) and select the 鈥淢ix Isotopes鈥 tab, hide the 鈥淧ercent Composition鈥 and 鈥淎verage Atomic Mass鈥 boxes, and then select the element boron.

(a) Write the symbols of the isotopes of boron that are shown as naturally occurring in significant amounts.

(b) Predict the relative amounts (percentages) of these boron isotopes found in nature. Explain the reasoning behind your choice.

(c) Add isotopes to the black box to make a mixture that matches your prediction in (b). You may drag isotopes fromtheir bins or click on 鈥淢ore鈥 and then move the sliders to the appropriate amounts.

(d) Reveal the 鈥淧ercent Composition鈥 and 鈥淎verage Atomic Mass鈥 boxes. How well does your mixture match withyour prediction? If necessary, adjust the isotope amounts to match your prediction.

(e) Select 鈥淣ature鈥檚鈥 mix of isotopes and compare it to your prediction. How well does your prediction comparewith the naturally occurring mixture? Explain. If necessary, adjust your amounts to make them match 鈥淣ature鈥檚鈥漚mounts as closely as possible.

Write the molecular and empirical formulas of the following compounds:\(\begin{aligned}{}a)O = C = O\\b)H - C \equiv C - H\end{aligned}\)

c)

(d)

Each of the following compounds contains a metal that can exhibit more than one ionic charge. Name these compounds:

a. NiCO3

b. MoO3

c.Co(NO3)2

d. V2O5

e. MnO2

f. Fe2O3

Question: Write the formulas of the following compounds:

(a) rubidium bromide

(b) magnesium selenide

(c) sodium oxide

(d) calcium chloride

(e) hydrogen fluoride

(f) gallium phosphide

(g) aluminum bromide

(h) ammonium sulfate

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