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  2. There are 3 monovalent atoms in CH3 + and +1 cationic charge. So, the hybridization will be, X = 1 2[4 + 3 − 1 + 0] = 6 2 = 3 The value of X is 3, therefore, the hybridization is sp2 Since the number of surrounding atoms is equal to hybrid orbitals, therefore, there are no lone pairs in CH3 +. So, sp2 hybridization has a trigonal planar shape.
    www.vedantu.com/question-answer/which-has-a-tri…
    Since the number of surrounding atoms is equal to hybrid orbitals, therefore, there are no lone pairs in CH3+. So, sp2hybridization has a trigonal planar shape. What is the shape of CH3+? The shape of methyl cation (CH3)+ is shape of methyl cation will be of trigonal planar shaped as its hybridisation is SP2 and no lone pair is present.
    answer-all.com/common-questions/is-ch3-trigonal-…
    It forms 3 single bonds with H to form a planar structure with sp 2 hybridization. Hence, the correct answer is planar.
    www.toppr.com/ask/question/the-shape-of-c-h-3-is …
    Does CH3+ have trigonal planar shape? So, the correct answer is “Option A”.
    profoundqa.com/what-is-the-shape-of-ch3-ion/
    The carbanion has three bonding pairs and one lone pair. Thus, VSEPR theory predicts a tetrahedral electron geometry and a trigonal planar electron geometry.
    socratic.org/questions/what-is-the-structure-and-hy…
     
  3. 10.2: VSEPR Theory - The Five Basic Shapes

    We see from Figure \(\PageIndex{3}\) that the molecular geometry of CO 3 2 − is trigonal planar with bond angles of 120°. In our next example we encounter the effects of lone pairs and multiple bonds on molecular geometry for the first time.

     
  4. What is the structure and hybridisation of CH3

    Apr 28, 2018 · It is trigonal pyramidal and sp3 hybridized. The Lewis structure of CH3:- is. The carbanion has three bonding pairs and one lone pair. Thus, VSEPR theory predicts a tetrahedral electron geometry and a trigonal planar electron …

  5. CH3+ Geometry and Hybridization - Chemistry Steps

    The steric number of carbon is three which corresponds to sp 2 hybridization, and both electron and molecular geometries are trigonal planar. Check this 99-question multiple-choice quiz on Geometry and Hybridization:

  6. How can I derive whether the methyl cation or anion is planar?

  7. VSEPR Theory: Explanation, Chart, and Examples - Chemistry …

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  9. Geometry of Molecules - Chemistry LibreTexts

    Jan 30, 2023 · The bond angle can help differentiate between linear, trigonal planar, tetraheral, trigonal-bipyramidal, and octahedral. The ideal bond angles are the angles that demonstrate the maximum angle where it would minimize …

  10. 48 Predicting Molecular Shapes: VSEPR Model …

    The electron-pair geometry is trigonal planar and the molecular geometry is trigonal planar. Due to resonance, all three C–O bonds are identical and the bond angles are all 120 o . Whether they are single, double, or an average of the …

  11. 8.6: Molecular Geometries - Chemistry LibreTexts

    There are two molecular geometries that can come out of three electron domains, trigonal planar (no lone pairs) and bent with ≈ ≈ 120° bond angle (one lone pair) . These are of the form AX 3, where X represents an atom that is bonded to …

  12. Hybrid Orbitals and Hybridization - Master Organic …

    Oct 10, 2017 · None of the bonding orbitals in methane are 100% s or 100% p. Instead, they are hybrid orbitals that each have partial s character and partial p character. The three 2p orbitals and the single 2s orbital hybridize (i.e., mix) to …

  13. Trigonal planar molecular geometry - Wikipedia

    In chemistry, trigonal planar is a molecular geometry model with one atom at the center and three atoms at the corners of an equilateral triangle, called peripheral atoms, all in one plane. [1] In an ideal trigonal planar species, all three ligands …

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