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- For spherical polar coordinate system 1 -Zr Zr. еxp(- X2)sin 6Cosø 4/2 a 2a a Ju„v„dv = 6 =? pxCan you help me with #136 I'm condfusedA ALEKS - Julianna Graham - L x + ← → www-awu.aleks.com/alekscgi/x/Isl.exe/10_u-IgNslkr7j8P3JH-IQUHIQg6bJxmeSyVPHOEB1plef9xyC5Ca9QIUX9FDNS1kHQvOMzcrVprA IBP5q2HYWPCASZQKNla...✰ Ο Naming and Drawing Organic Molecules Numbering the main chain of branched alkanes For each organic compound in the table below, enter the locant of the highlighted side chain. compound locant of highlighted side chain CH₂ CH3-CH2-C- CH₂ T CH3 CH₁₂ | CH3-CH2-CH-CH-CH3 CH3 CH3 CH3-CH2-CH- CH3 Explanation Check esc F2 DOD D MacBook Air # 80 $ 000 F4 % & G F7 0/5 Julianna olo 2024 McGraw Hill LLC. All Rights Reserved. Terms of Use | Privacy Center Accessibility FB F10 dele
- Consider the molecules: CH2=CH-CH=CH-CH=CH-CH=CH-CH=CH2. Let’s assume that the 10 electrons that make up the double bonds can exist everywhere along the carbon chains. The electrons can then be considered as particles in a box; the ends of the molecule correspond to the boundaries of the box with a finite or zero potential energy inside. In this “molecular box”, 2 electrons can occupy an energy level. What’s the smallest frequency of light that can excite the electron? Briefly explain why.Consider the molecules: CH2=CH-CH=CH-CH=CH-CH=CH-CH=CH2. let’s assume that the 10 electrons that make up the double bonds can exist everywhere along the carbon chains. The electrons can then be considered as particles in a box; the ends of the molecule correspond to the boundaries of the box with a finite or zero potential energy inside. In this “molecular box”, 2 electrons can occupy an energy level. What are quantum states that the electrons from this molecule can occupy in the ground state? What’s the smallest frequency of light that can excite the electron? Briefly explain why. Note that the length of a C-C bond is about 1.54A and the length of a C=C bond is 1.34A to allow you to estimate the length of the “molecular box”Consider the molecules: CH2=CH-CH=CH-CH=CH-CH=CH-CH=CH2. Let’s assume that the 10 electrons that make up the double bonds can exist everywhere along the carbon chains. The electrons can then be considered as particles in a box; the ends of the molecule correspond to the boundaries of the box with a finite or zero potential energy inside. In this “molecular box”, 2 electrons can occupy an energy level. What are quantum states that the electrons from this molecule can occupy in the ground state? Note that the length of a C-C bond is about 1.54A and the length of a C=C bond is 1.34A to allow you to estimate the length of the “molecular box”
- Many chemistry problems result in equations of the form 1.44 × 10¬2 (0.298 – x) When this equation is solved, the two values of the unknown x are and Submit Answer Retry Entire Group No more group attempts remainHow can I get the multiplicity if it is singlet, doublet, triplet? Is this the HRMN for this molecule? What are the signs? Thank youu!!Consider the molecules: CH2=CH-CH=CH-CH=CH-CH=CH-CH=CH2. Let’s assume that the 10 electrons that make up the double bonds can exist everywhere along the carbon chains. The electrons can then be considered as particles in a box; the ends of the molecule correspond to the boundaries of the box with a finite or zero potential energy inside. In this “molecular box”, 2 electrons can occupy an energy level. What are quantum states that the electrons from this molecule can occupy in the ground state? What’s the smallest frequency of light that can excite the electron? Note that the length of a C-C bond is about 1.54A and the length of a C=C bond is 1.34A to allow you to estimate the length of the “molecular box”