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When lithium vapours were filled in the discharge tube for anode rays experiment, the anode rays were found to contain only Li+ ions therefore, each particle of anode of anode contains?
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When lithium vapours were filled in the discharge tube for anode rays ...
Composition of Anode Rays in Lithium Vapours

Anode rays are positively charged particles that are produced in a discharge tube when high voltage is applied. In the case of lithium vapours being filled in the discharge tube for the anode rays experiment, the anode rays were found to contain only Li+ ions.
Explanation


1. Lithium Vapours: When lithium vapours are filled in the discharge tube, some of the lithium atoms get ionized due to the high voltage applied. These ionized lithium atoms lose an electron to become Li+ ions.

2. Anode Rays: Anode rays are positively charged particles that are attracted towards the negatively charged electrode (cathode) in the discharge tube. In this case, since only Li+ ions are present in the anode rays, each particle of anode contains a single Li+ ion.

3. Composition of Anode: Therefore, each particle of the anode in the lithium vapours experiment contains a single Li+ ion. This is because the ionized lithium atoms are the only positively charged particles present in the anode rays.
In conclusion, when lithium vapours are used in the anode rays experiment, the anode rays are composed of Li+ ions, with each particle of the anode containing a single Li+ ion.
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When lithium vapours were filled in the discharge tube for anode rays experiment, the anode rays were found to contain only Li+ ions therefore, each particle of anode of anode contains?
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