(a)
Interpretation:
Whether the position of equilibrium will shift to right or left when some amount of
Concept Introduction:
When product is removed the equilibrium is shifted to product side.
(b)
Interpretation:
Whether the position of equilibrium will shift to right or left when some amount of
Concept Introduction:
When reactant is removed the equilibrium is shifted to reactant side.
(c)
Interpretation:
Whether the position of equilibrium will shift to right or left when some amount of
Concept Introduction:
When product is added the equilibrium is shifted to reactant side.
(d)
Interpretation:
Whether the position of equilibrium will shift to right or left when temperature is decreased for the following equilibrium.
Concept Introduction:
When temperature is decreased for an exothermic reaction then the equilibrium is shifted to product side.
(e)
Interpretation:
Whether the position of equilibrium will shift to right or left after a catalyst is added for the following equilibrium.
Concept Introduction:
When catalyst is added then activation energy is reduced and thus equilibrium is attained faster.
(g)
Interpretation:
Whether the position of equilibrium will shift to right or left when pressure is increased for the following equilibrium.
Concept Introduction:
When pressure is increased for a reversible reaction then the equilibrium is shifted to less mole side.
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Chapter 7 Solutions
INTRO.TO GENERAL,ORGAN...-OWLV2 ACCESS
- Try: Convert the given 3D perspective structure to Newman projection about C2 - C3 bond (C2 carbon in the front). Also, show Newman projection of other possible staggered conformers and circle the most stable conformation. Use the template shown. F H3C Br Harrow_forwardNonearrow_forward16. Consider the probability distribution p(x) = ax", 0 ≤ x ≤ 1 for a positive integer n. A. Derive an expression for the constant a, to normalize p(x). B. Compute the average (x) as a function of n. C. Compute σ2 = (x²) - (x)², the variance of x, as a function of n.arrow_forward
- 451. Use the diffusion model from lecture that showed the likelihood of mixing occurring in a lattice model with eight lattice sites: Case Left Right A B C Permeable Barrier → and show that with 2V lattice sites on each side of the permeable barrier and a total of 2V white particles and 2V black particles, that perfect de-mixing (all one color on each side of the barrier) becomes increasingly unlikely as V increases.arrow_forward46. Consider an ideal gas that occupies 2.50 dm³ at a pressure of 3.00 bar. If the gas is compressed isothermally at a constant external pressure so that the final volume is 0.500 dm³, calculate the smallest value Rest can have. Calculate the work involved using this value of Rext.arrow_forwardNonearrow_forward
- 2010. Suppose that a 10 kg mass of iron at 20 C is dropped from a heigh of 100 meters. What is the kinetics energy of the mass just before it hits the ground, assuming no air resistance? What is its speed? What would be the final temperature of the mass if all the kinetic energy at impact is transformed into internal energy? The molar heat capacity of iron is Cpp = 25.1J mol-¹ K-1 and the gravitational acceleration constant is 9.8 m s¯² |arrow_forwardell last during 7. Write the isotopes and their % abundance of isotopes of i) Cl ii) Br 8. Circle all the molecules that show Molecular ion peak as an odd number? c) NH2CH2CH2NH2 d) C6H5NH2 a) CH³CN b) CH3OHarrow_forwardCalsulate specific heat Dissolution of NaOH ก ง ง Mass of water in cup Final temp. of water + NaOH Initial temp. of water AT Water AH Dissolution NaOH - "CaicuraORT. AH (NaOH)=-AH( 30g (water) 29.0°C 210°C 8°C (82) 100 3.. =1003.20 Conjosarrow_forward
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