Maximum orbital occupancy of 2 f , 2 d x y , 2 p , 4 p , 5 d x y orbitals should be determined. . Concept introduction: Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions. Below mentioned are four quantum numbers. 1. Principal Quantum Number It is represented by n . This quantum number is related to size and energy of different atomic orbitals. With increase in value of n , size of orbital becomes larger and electron is present farther from atomic nucleus for longer time. 2. Angular Momentum Quantum Number It is represented by l . It describes angular momentum of electron in any specific atomic orbital. Shape of orbitals is determined by this quantum number. It can have integral values from 0 to ( n − 1 ) . Designation of orbitals on basis of different l values is as follows: Value of l 0 1 2 3 Orbital s p d f 3. Magnetic Quantum Number This quantum number is denoted by m l . It describes orientation of angular momentum associated with atomic orbital. Its value ranges from − l to + l . Total values of magnetic quantum number is governed by 2 l + 1 4. Spin Quantum Number This quantum number is represented by m s . It indicates direction of electron spin. It can either + 1 2 or − 1 2 .
Maximum orbital occupancy of 2 f , 2 d x y , 2 p , 4 p , 5 d x y orbitals should be determined. . Concept introduction: Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions. Below mentioned are four quantum numbers. 1. Principal Quantum Number It is represented by n . This quantum number is related to size and energy of different atomic orbitals. With increase in value of n , size of orbital becomes larger and electron is present farther from atomic nucleus for longer time. 2. Angular Momentum Quantum Number It is represented by l . It describes angular momentum of electron in any specific atomic orbital. Shape of orbitals is determined by this quantum number. It can have integral values from 0 to ( n − 1 ) . Designation of orbitals on basis of different l values is as follows: Value of l 0 1 2 3 Orbital s p d f 3. Magnetic Quantum Number This quantum number is denoted by m l . It describes orientation of angular momentum associated with atomic orbital. Its value ranges from − l to + l . Total values of magnetic quantum number is governed by 2 l + 1 4. Spin Quantum Number This quantum number is represented by m s . It indicates direction of electron spin. It can either + 1 2 or − 1 2 .
Solution Summary: The author explains that energy, size, shape, and orientation of atomic orbitals are determined with help of quantum numbers.
Interpretation:Maximum orbital occupancy of 2f , 2dxy , 2p , 4p , 5dxy orbitals should be determined.
.
Concept introduction:Energy, size, shape, and orientation of atomic orbital are determined with help of some numbers. These numbers are called quantum numbers and are obtained from solution of Schrodinger equation of hydrogen atom by application of boundary conditions.
Below mentioned are four quantum numbers.
1. Principal Quantum Number
It is represented by n . This quantum number is related to size and energy of different atomic orbitals. With increase in value of n , size of orbital becomes larger and electron is present farther from atomic nucleus for longer time.
2. Angular Momentum Quantum Number
It is represented by l . It describes angular momentum of electron in any specific atomic orbital. Shape of orbitals is determined by this quantum number. It can have integral values from 0 to (n−1) .
Designation of orbitals on basis of different l values is as follows:
Value of l0123Orbitalspdf
3. Magnetic Quantum Number
This quantum number is denoted by ml . It describes orientation of angular momentum associated with atomic orbital. Its value ranges from −l to +l . Total values of magnetic quantum number is governed by 2l+1
4. Spin Quantum Number
This quantum number is represented by ms . It indicates direction of electron spin. It can either +12 or −12 .
Dr. Mendel asked his BIOL 260 class what their height was and what their
parent's heights were. He plotted that data in the graph below to determine if
height was a heritable trait.
A. Is height a heritable trait? If yes, what is the heritability value? (2 pts)
B. If the phenotypic variation is 30, what is the variation due to additive alleles?
(2 pts)
Offspring Height (Inches)
75
67.5
60
52.5
y = 0.9264x + 4.8519
55
60
65
MidParent Height (Inches)
70
75
12pt v
V
Paragraph B IUA
>
AT2 v
V
Experiment:
Each team will be provided with 5g of a mixture of acetanilide and salicylic acid. You will divide it into three 1.5 g portions in separate 125 mL Erlenmeyer flasks savıng some for melting point analysis. Dissolve the mixture in each flask in ~60mL of DI water by heating to boiling on a hotplate. Take the flasks off the hotplate once you have a clear solution and let them stand on the bench top for 5 mins and then allow them to cool as described below.
Sample A-Let the first sample cool slowly to room temperature by letting it stand on your lab bench, with occasional stirring to promote crystallization.
Sample B-Cool the second sample 1n a tap-water bath to 10-15 °C
Sample C-Cool the third sample in an ice-bath to 0-2 °C
Results:
weight after recrystalization and melting point temp.
A=0.624g,102-115°
B=0.765g, 80-105°
C=1.135g, 77-108
What is the percent yield of A,B, and C.
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.