Sulfur tetrafluoride (SF4) reacts slowly with O2 to form sulfur tetrafluoride monoxide (OSF4) according to the following unbalanced reaction: SF4(g) + O2(g) → OSF4(g) The O atom and the four F atoms in OSF4 are bonded to a central S atom. (c) Use average bond enthalpies (Table 8.3) to estimate the enthalpy of the reaction. Is it endothermic or exothermic?
Ch.9 - Molecular Geometry and Bonding Theories
9장, 문제 114e
Sulfur tetrafluoride 1SF42 reacts slowly with O2 to form sulfur
tetrafluoride monoxide 1OSF42 according to the following
unbalanced reaction:
SF41g2 + O21g2¡OSF41g2
The O atom and the four F atoms in OSF4 are bonded to a
central S atom.
(e) For each of the molecules you drew in part (d), state how many
fluorines are equatorial and how many are axial.
검증된 단계별 안내1
Identify the molecular geometry of SF_4. SF_4 has a seesaw shape due to the presence of one lone pair on the sulfur atom.
In a seesaw geometry, there are two types of positions for the fluorine atoms: equatorial and axial.
Determine the positions of the fluorine atoms in SF_4. In a seesaw shape, there are typically two equatorial positions and two axial positions.
Now, consider the molecular geometry of OSF_4. The presence of an additional oxygen atom bonded to sulfur may alter the geometry slightly, but the basic seesaw shape remains.
For OSF_4, identify the positions of the fluorine atoms. Typically, the equatorial positions are occupied first, so expect two equatorial and two axial fluorines.

비슷한 문제에 대한 검증된 영상 답변:
이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
6m주요 개념
질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.
Molecular Geometry
Molecular geometry refers to the three-dimensional arrangement of atoms within a molecule. It is determined by the number of bonding pairs and lone pairs of electrons around the central atom, which influences the shape of the molecule. For sulfur tetrafluoride (SF4), the geometry is based on the VSEPR (Valence Shell Electron Pair Repulsion) theory, which predicts that the molecule adopts a seesaw shape due to the presence of one lone pair.
추천 영상:
가이드 코스
Molecular Geometry with Two Electron Groups
Equatorial and Axial Positions
In molecules with a trigonal bipyramidal geometry, such as SF4, the positions of atoms can be classified as equatorial or axial. Equatorial positions are located in the plane of the molecule and are 120 degrees apart, while axial positions are aligned above and below the equatorial plane at 90 degrees to the equatorial atoms. Understanding these positions is crucial for predicting molecular behavior and reactivity.
추천 영상:
가이드 코스
Equatorial vs. Axial Positions
Bonding and Hybridization
Bonding in molecules involves the overlap of atomic orbitals to form covalent bonds. In SF4, sulfur undergoes sp3d hybridization, which allows it to form four equivalent bonds with fluorine atoms and accommodate one lone pair. This hybridization is essential for understanding the molecule's geometry and the distribution of electron density around the central sulfur atom.
추천 영상:
가이드 코스
Hybridization
관련 실천
교과서 질문
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교과서 질문
Sulfur tetrafluoride (SF4) reacts slowly with O2 to form sulfur tetrafluoride monoxide (OSF4) according to the following unbalanced reaction: SF4(g) + O2(g) → OSF4(g) The O atom and the four F atoms in OSF4 are bonded to a central S atom. (b) Write a Lewis structure of OSF4 in which the formal charges of all atoms are zero.
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교과서 질문
The phosphorus trihalides 1PX32 show the following variation
in the bond angle X¬P¬X: PF3, 96.3°; PCl3, 100.3°;
PBr3, 101.0°; PI3, 102.0°. The trend is generally attributed
to the change in the electronegativity of the halogen.
(b) What is the general trend in the X¬P¬X
angle as the halide electronegativity increases?
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교과서 질문
Sulfur tetrafluoride 1SF42 reacts slowly with O2 to form sulfur tetrafluoride monoxide 1OSF42 according to the following unbalanced reaction: SF41g2 + O21g2¡OSF41g2 The O atom and the four F atoms in OSF4 are bonded to a central S atom. (a) Balance the equation.
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