This discussion on The bond energies of H2, F2 and Cl2 decreases in the following order:a)H2 F2 Cl2b)Cl2 F2 H2c)F2 Cl2 H2d)H2 Cl2 F2Correct answer is option 'D'. soon. Can you explain this answer? (i) N2, O2, F2, Cl2 (Increasing order of bond dissociation energy), (ii) F, Cl, Br, I (Increasing order of electron gain enthalpy), (iii) F2, N2, Cl2, O2 (Increasing order of bond length). Can you explain this answer? Reference: Huheey, pps. Fluorine just happens to be a exception because it is so small. EduRev is a knowledge-sharing community that depends on everyone being able to pitch in when they know something. The Questions and Answers of The bond energies of H2, F2 and Cl2 decreases in the following order:a)H2 F2 Cl2b)Cl2 F2 H2c)F2 Cl2 H2d)H2 Cl2 F2Correct answer is option 'D'. If the answer is not available please wait for a while and a … A-21 to A-34; T.L. Apart from being the largest Chemistry community, EduRev has the largest solved
are solved by group of students and teacher of Chemistry, which is also the largest student community of Chemistry. Answers of The bond energies of H2, F2 and Cl2 decreases in the following order:a)H2 F2 Cl2b)Cl2 F2 H2c)F2 Cl2 H2d)H2 Cl2 F2Correct answer is option 'D'. Students (upto class 10+2) preparing for All Government Exams, CBSE Board Exam, ICSE Board Exam, State Board Exam, JEE (Mains+Advance) and NEET can ask questions from any subject and get quick answers by subject teachers/ experts/mentors/students. I 2 has a bond energy of 151 kj/mol while Cl 2 has a bond energy of 242 kj/mol. Can you explain this answer? These are both non polar covalent compounds but the chlorine bond is closer to the nucleus of each of the two chlorine atoms than the iodine bond is and this makes the chlorine bond tighter and harder to break. F, Cl, Br, I. over here on EduRev! The former parameter tends to be favored in theoretical and computational work, while the latter is more convenien… N2 O2 , F2 , Cl2 (Increasing order of bond dissociation energy) 2. The term bond-dissociation energy is similar to the related notion of bond-dissociation enthalpy (or bond enthalpy), which is sometimes used interchangeably. Welcome to Sarthaks eConnect: A unique platform where students can interact with teachers/experts/students to get solutions to their queries. F2 is highly reactive 2. Question bank for Chemistry. Arrange the following as stated: (i) N2, O2, F2, Cl2 (Increasing order of bond dissociation energy), Arrange the following as stated: 1. Correct answer is option 'D'. F, Cl, Br, I F, Cl, Br, I asked 5 days ago in Periodic Classification of Elements by Rajan01 ( 20.0k points) Can you explain this answer? Stronger thr bond more is the bond energy, Due to small size of H2 molecule the bond is quite strong...For Cl2 size is quite big , has 3d so inter electronic repulsion of cl2 is quite less than F2 ...so F2 has lowest bond dissociation energy. You can study other questions, MCQs, videos and tests for Chemistry on EduRev and even discuss your questions like
The bond energies of H2, F2 and Cl2 decreases in the following order:a)H2 F2 Cl2b)Cl2 F2 H2c)F2 Cl2 H2d)H2 Cl2 F2Correct answer is option 'D'. Can you explain this answer? N2 O2 , F2 , Cl2 (Increasing order of bond dissociation energy) 2. Arrange the species in each group in order of increasing ionization energy and give reason: 1. is done on EduRev Study Group by Chemistry Students. agree to the. In making the bond for F By continuing, I agree that I am at least 13 years old and have read and
(b) Predict the position of the element with atomic number, Classification of elements and periodicity in properties. If the answer is not available please wait for a while and a community member will probably answer this
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The bond enthalpy of F2 is exceptionlly high, (a) Arrange F, Cl, Br and I in increasing order of electron affinity. community of Chemistry. However, some authors make the distinction that the bond-dissociation energy (D0) refers to the enthalpy change at 0 K, while the term bond-dissociation enthalpy is used for the enthalpy change at 298 K (unambiguously denoted DH°298). Cottrell, "The Strengths of Chemical Bonds," 2nd ed., Butterworths, London, 1958; B. deB.
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