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Discovery of noble gas compounds were th...

Discovery of noble gas compounds were the basic of formation of an ionic solid , dioxigenyl hexafluoridoplatinate (V) `O_(2)^(oplus)[PtF_(6)]^(Θ)` when `O_(2)` reacts with `PtF_(6)` .This experiment was carried out by

A

Bartlett and Lohman

B

Ramsay

C

Dawar

D

Fischer -Ringe

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To solve the question regarding the discovery of noble gas compounds and the formation of the ionic solid dioxigenyl hexafluoridoplatinate (V) when O₂ reacts with PtF₆, we can follow these steps: ### Step 1: Understand the Context The question mentions the discovery of noble gas compounds and specifically refers to the formation of an ionic solid involving oxygen and platinum hexafluoride. This indicates a significant advancement in the chemistry of noble gases, which were traditionally considered inert. **Hint:** Consider the historical context of noble gases and their reactivity. ### Step 2: Identify the Key Experiment The experiment that led to the discovery of noble gas compounds was conducted by Neal Bartlett in 1962. He prepared the first noble gas compound, xenon hexafluoroplatinate (XePtF₆), which demonstrated that noble gases could form compounds despite being classified as inert. **Hint:** Recall the name of the scientist associated with the first noble gas compound. ### Step 3: Relate to the Given Compound The question specifically asks about the formation of dioxigenyl hexafluoridoplatinate (V). This compound is related to the earlier work by Bartlett, as it involves similar chemistry with noble gases and transition metal fluorides. **Hint:** Think about how the discovery of one noble gas compound might lead to the exploration of others. ### Step 4: Conclude with the Scientist's Name Based on the information provided, the scientist who carried out the experiment leading to the discovery of noble gas compounds is Neal Bartlett. Thus, the answer to the question is that the experiment was carried out by Neal Bartlett. **Hint:** Look for the option that mentions Neal Bartlett in the answer choices. ### Final Answer The experiment was carried out by Neal Bartlett.

To solve the question regarding the discovery of noble gas compounds and the formation of the ionic solid dioxigenyl hexafluoridoplatinate (V) when O₂ reacts with PtF₆, we can follow these steps: ### Step 1: Understand the Context The question mentions the discovery of noble gas compounds and specifically refers to the formation of an ionic solid involving oxygen and platinum hexafluoride. This indicates a significant advancement in the chemistry of noble gases, which were traditionally considered inert. **Hint:** Consider the historical context of noble gases and their reactivity. ### Step 2: Identify the Key Experiment ...
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The formation of O_(2)^(+)[PtF_(6)]^(-) is the basis for the formation of xenon fluorides. This is because:

When B_2H_6 react with O_2 and H_2O independently then product formed are:

The first compound of the noble gasees was made in 1962. Barlett and Lohman had previously used the highly oxidizing compound platium hexaflouride to oxidize dioxygen. O_(2)+PtF_(6) to O_(2)^(+)[PtF_(6)]^(-) The first ionization energy for O_(2) to O_(2) is 1165kJ*mol^(-1) , which is almost as the value of 1170kJ*mol^(-1) for Xe to Xe^(+) . It was predicated that xenon should react with PtF_(6) . Experimental showed that when deep of red PtF_(6) vapour was mixed with an equal volume of Xe the gases combined immediately at room temperature to produce a solid. Xe+PtF_(6) to Xe[PtF_(6)] Q. IUPAC name of first xenon-compounds synthesized by secientist Barlett is :

The first compound of the noble gases was made in 1962. Barlett and Lohman had previously used the highly oxidizing compound platium hexaflouride to oxidize dioxygen. O_(2)+PtF_(6) to O_(2)^(+)[PtF_(6)]^(-) The first ionization energy for O_(2) to O_(2) is 1165kJ*mol^(-1) , which is almost as the value of 1170kJ*mol^(-1) for Xe to Xe^(+) . It was predicated that xenon should react with PtF_(6) . Experimental showed that when deep of red PtF_(6) vapour was mixed with an equal volume of Xe the gases combined immediately at room temperature to produce a solid. Xe+PtF_(6) to Xe[PtF_(6)] Q. Noble gases are water insoluble, however their insolubility in water decreases down the group due to increase in :

The first compound of the noble gasees was made in 1962. Barlett and Lohman had previously used the highly oxidizing compound platium hexaflouride to oxidize dioxygen. O_(2)+PtF_(6) to O_(2)^(+)[PtF_(6)]^(-) The first ionization energy for O_(2) to O_(2) is 1165kJ*mol^(-1) , which is almost as the value of 1170kJ*mol^(-1) for Xe to Xe^(+) . It was predicated that xenon should react with PtF_(6) . Experimental showed that when deep of red PtF_(6) vapour was mixed with an equal volume of Xe the gases combined immediately at room temperature to produce a solid. Xe+PtF_(6) to Xe[PtF_(6)] Q. Noble gases are water insoluble, however decrease their insolubility in water decrease down the group due to increase in :

The first compound of the noble gasees was made in 1962. Barlett and Lohman had previously used the highly oxidizing compound platium hexaflouride to oxidize dioxygen. O_(2)+PtF_(6) to O_(2)^(+)[PtF_(6)]^(-) The first ionization energy for O_(2) to O_(2) is 1165kJ*mol^(-1) , which is almost as the value of 1170kJ*mol^(-1) for Xe to Xe^(+) . It was predicated that xenon should react with PtF_(6) . Experimental showed that when deep of red PtF_(6) vapour was mixed with an equal volume of Xe the gases combined immediately at room temperature to produce a solid. Xe+PtF_(6) to Xe[PtF_(6)] Q. Which of the following species is not having perfect octahedron structure?

The first compound of the noble gasees was made in 1962. Barlett and Lohman had previously used the highly oxidizing compound platium hexaflouride to oxidize dioxygen. O_(2)+PtF_(6) to O_(2)^(+)[PtF_(6)]^(-) The first ionization energy for O_(2) to O_(2) is 1165kJ*mol^(-1) , which is almost as the value of 1170kJ*mol^(-1) for Xe to Xe^(+) . It was predicated that xenon should react with PtF_(6) . Experimental showed that when deep of red PtF_(6) vapour was mixed with an equal volume of Xe the gases combined immediately at room temperature to produce a solid. Xe+PtF_(6) to Xe[PtF_(6)] Q. Which of the following species is not having perfect octahedron structure?

Total number of unpaired electrons(s) present in both cationic and anionic part of compound O_(2)[PtF_(6)] .

Total number of unpaired electrons(s) present in both cationic and anionic part of compound O_(2)[PtF_(6)] .

Which of the following product(s) is/are obtained when Cl_(2)O_(6) reacts with KOH ?