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In Figure 5, the letters A, E, G, J, X and Z show the positions of six elements in the periodic table - Edexcel - GCSE Chemistry Combined Science - Question 5 - 2019 - Paper 1

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In Figure 5, the letters A, E, G, J, X and Z show the positions of six elements in the periodic table. These letters are not the symbols of the atoms of these elemen... show full transcript

Worked Solution & Example Answer:In Figure 5, the letters A, E, G, J, X and Z show the positions of six elements in the periodic table - Edexcel - GCSE Chemistry Combined Science - Question 5 - 2019 - Paper 1

Step 1

Using the letters A, E, G, J, X and Z (i) give the letters of the two elements that are non-metals.

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Answer

The two non-metal elements in the given diagram are E and X. Non-metals are typically found in the upper right-hand portion of the periodic table.

Step 2

Using the letters A, E, G, J, X and Z (ii) give the letters of two elements in period 2.

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Answer

The two elements in period 2 are E and J. Period 2 consists of the elements from lithium (Li) to neon (Ne), which includes these letters.

Step 3

Using the letters A, E, G, J, X and Z (iii) give the letter of an element that normally forms an ion with a charge of +1.

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Answer

The element that normally forms an ion with a charge of +1 is J. This indicates that J is likely a metal, such as sodium (Na) or another alkali metal.

Step 4

All atoms of element E in this sample contain A 5 protons B 5 neutrons C 6 protons D 6 neutrons

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The correct answer is A: 5 protons. The number of protons defines the element; thus, element E is likely boron (B), which has 5 protons.

Step 5

Element X has an atomic number of 18. State the electronic configuration of an atom of element X.

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Answer

The electronic configuration of an atom of element X, which has an atomic number of 18, is 2.8.8. This shows that there are 2 electrons in the first shell, 8 in the second shell, and 8 in the third shell.

Step 6

In an experiment, 3.5 g of element A reacted with 4.0 g of element G to form a compound. Calculate the empirical formula of this compound. (relative atomic masses: A = 7, G = 16) You must show your working.

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Answer

To find the empirical formula:

  1. Calculate the moles of A:

    Moles of A=3.5 g7 g/mol=0.5 moles\text{Moles of A} = \frac{3.5\text{ g}}{7\text{ g/mol}} = 0.5\text{ moles}

  2. Calculate the moles of G:

    Moles of G=4.0 g16 g/mol=0.25 moles\text{Moles of G} = \frac{4.0\text{ g}}{16\text{ g/mol}} = 0.25\text{ moles}

  3. Find the simplest ratio:

    Ratio of A to G=0.50.25:0.250.25=2:1\text{Ratio of A to G} = \frac{0.5}{0.25} : \frac{0.25}{0.25} = 2 : 1

Thus, the empirical formula is A₂G.

Step 7

An oxygen atom has six electrons in its outer shell. Complete the dot and cross diagram of a molecule of water, H₂O. Show outer shell electrons only.

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Answer

The dot and cross diagram for water (H₂O) can be represented as follows:

  1. Oxygen has six outer shell electrons.
  2. Each hydrogen has one outer shell electron.
    H •
    | 
 H • O :
    | 
    • •

This diagram shows the bonding between oxygen and hydrogen atoms.

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