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2. (a) draw a model bohr diagram for lithium in the space provided. (b)…

Question

  1. (a) draw a model bohr diagram for lithium in the space provided.

(b) what process or change would turn this lithium atom into an ion?
(c) would the ion that it forms be positively or negatively charged?
explain.

  1. (a) draw a bohr model diagram for fluorine in the space provided.

(b) what process or change would turn this fluorine atom into an ion?
(c) would this ion be positively charged or negatively charged?
explain.

  1. lithium and fluorine react to form lithium fluoride. draw a diagram on the back of this page

to show how these two atoms would react.

Explanation:

2. (a) Bohr Diagram for Lithium

Step1: Determine Protons, Neutrons, Electrons

Lithium (Li) has an atomic number of 3, so it has 3 protons (and 4 neutrons, but neutrons are not shown in a simple Bohr diagram). The electron configuration for Li is 2 electrons in the first shell (n=1) and 1 electron in the second shell (n=2).

Step2: Draw the Nucleus and Shells

  • Draw a small circle (nucleus) with “+3” (protons) inside.
  • Draw the first electron shell (a circle around the nucleus) with 2 electrons (dots or crosses).
  • Draw the second electron shell (a larger circle) with 1 electron.
2. (b) Process to Form a Lithium Ion
Brief Explanations

An atom becomes an ion by gaining or losing electrons. Lithium is a metal with 1 valence electron (in the outermost shell). To achieve a stable electron configuration (like a noble gas, He with 2 electrons in the first shell), lithium loses its 1 valence electron.

Brief Explanations

A lithium atom has 3 protons (+3 charge) and 3 electrons (-3 charge), so it is neutral. When it loses 1 electron, it has 3 protons (+3) and 2 electrons (-2). The net charge is \( +3 - 2 = +1 \), so it is positively charged (a cation).

Answer:

Losing its valence electron (or “losing an electron”).

2. (c) Charge of Lithium Ion