The noble gases have closed-shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other Interatomic Interactions.
The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6. `XeF_4` reacts violently with water to give `XeO_3` The compound of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell.
`XeF_4` and `XeF_6` are expected to be:
The noble gases have closed-shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other Interatomic Interactions.
The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6. `XeF_4` reacts violently with water to give `XeO_3` The compound of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell.
`XeF_4` and `XeF_6` are expected to be:
The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6. `XeF_4` reacts violently with water to give `XeO_3` The compound of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell.
`XeF_4` and `XeF_6` are expected to be:
A
oxidizing
B
reducing
C
unreactive
D
strongly basic
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The noble gases have close shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other inter atomic interactions. The direct reactions of xenon with fluorine leads to a series of compounds with oxidation number +2, +4 " and" +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit stereochemistry and their geometries can be deduced considering the total number of electrons in valence shell XeF_(4) " and " XeF_(6) are expected to be :
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The noble gases have closed- shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation number +2,+4 and +6. XeF_(4) reacts violently with water to give XeO_(3) . The compound of xenon exhibit rich sterochemistry and their geometries can be deduced considring the total number of electron pairs in the valence shell. Argon is used in arc welding because of its:
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Based upon paragraph, 3 multiple choice questions have to be answered. Each question has 4 choices (A), (B). (C) and (D), out of which ONLY ONE is correct. Paragraph for Questions: The noble gases have closed-shell electronic configuration and are monoatomic gases under normal -conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2, +4 and +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs .: in the valence shell. Q XeF_(4) and XeF_(5) are expected to be
Based upon paragraph, 3 multiple choice questions have to be answered. Each question has 4 choices (A), (B). (C) and (D), out of which ONLY ONE is correct. Paragraph for Questions: The noble gases have closed-shell electronic configuration and are monoatomic gases under normal -conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2, +4 and +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs .: in the valence shell. Q XeF_(4) and XeF_(5) are expected to be
A
oxidizing
B
reducing
C
unreactive
D
strongly basic
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The noble gases have closed-shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other Interatomic Interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6. XeF_4 reacts violently with water to give XeO_3 The compound of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell. Argon is used In arc welding because of its:
The noble gases have closed-shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other Interatomic Interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6. XeF_4 reacts violently with water to give XeO_3 The compound of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell. Argon is used In arc welding because of its:
A
(A) low reactivity with metal
B
(B) ability to lower the melting point of metal
C
(C) flammablity
D
(D) high calorific value
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The noble gases have closed -shell electronic configuration and are monoatomic gases under normal conditions. The low bp of the ligher noble bp of the lighter noble gases are due to weak dispersion force between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6 . XeF_(4) reacts violently with water to give XeO_(3) . the compound of xenone exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell. XeF_(4) and XeF_(6) are expected to be
The noble gases have closed -shell electronic configuration and are monoatomic gases under normal conditions. The low bp of the ligher noble bp of the lighter noble gases are due to weak dispersion force between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6 . XeF_(4) reacts violently with water to give XeO_(3) . the compound of xenone exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell. XeF_(4) and XeF_(6) are expected to be
A
Oxidizing
B
Reducing
C
Unreactive
D
Strongly basic
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Based upon paragraph, 3 multiple choice questions have to be answered. Each question has 4 choices (A), (B). (C) and (D), out of which ONLY ONE is correct. Paragraph for Questions: The noble gases have closed-shell electronic configuration and are monoatomic gases under normal -conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2, +4 and +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs .: in the valence shell. QArgon is used in arc welding because of its
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Based upon paragraph, 3 multiple choice questions have to be answered. Each question has 4 choices (A), (B). (C) and (D), out of which ONLY ONE is correct. Paragraph for Questions: The noble gases have closed-shell electronic configuration and are monoatomic gases under normal -conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2, +4 and +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs .: in the valence shell. QThe structure-of XeO_(3) , is
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The noble gases have closed -shell electronic configuration and are monoatomic gases under normal conditions. The low bp of the ligher noble bp of the lighter noble gases are due to weak dispersion force between the atoms and the absence of other interatomic interactions. The direct reaction of xenon with fluorine leads to a series of compounds with oxidation numbers +2,+4 and +6 . XeF_(4) reacts violently with water to give XeO_(3) . the compound of xenone exhibit rich stereochemistry and their geometries can be deduced considering the total number of electron pairs in the valence shell. The structures of XeO_(3) is
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The noble gases have close shell electronic configuration and are monoatomic gases under normal conditions. The low boiling points of the lighter noble gases are due to weak dispersion forces between the atoms and the absence of other inter atomic interactions. The direct reactions of xenon with fluorine leads to a series of compounds with oxidation number +2, +4 " and" +6. XeF_(4) reacts violently with water to give XeO_(3) . The compounds of xenon exhibit stereochemistry and their geometries can be deduced considering the total number of electrons in valence shell Argon is used in are welding because of its.
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The noble gases have closed-shell electronic cordigaration and are monatomic gases under normal condition .The low bolling points of the ligher noble gases aree due to the weak dispersion points of the ligher noble gases an due to the weak dispersion forces between the atoms and the alsence of other interalumic interactions. The direct reaction of xenon with flarine loads to a series of compounds with water oxidation number +2, - 4 and +6, XeF_(4) reactsviolenatly with water to give XeO_(2) .The compound of deduced axbibt nci strouchemistry and their goometries can be deduced considering the total number of electron puirs in the valence shell. Argon is used in arc welding because of its
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