The pressure should be defined and its unit should be given in terms of SI base units. Definition of Pressure: Pressure or Stress is the force applied perpendicular to the surface of an object per unit area. SI units: SI units are defined as International system of units and SI derived units are the units of measurements derived from the seven base units. They can be dimensionless or described as one or more of the base units. SI units are a system of physical units namely meter, second, kilogram, candela, Kelvin, ampere, and mole. SI derived unit of pressure is Pascal (Pa). 1 Pascal = N .m -2 = kg .m -1 s -2
The pressure should be defined and its unit should be given in terms of SI base units. Definition of Pressure: Pressure or Stress is the force applied perpendicular to the surface of an object per unit area. SI units: SI units are defined as International system of units and SI derived units are the units of measurements derived from the seven base units. They can be dimensionless or described as one or more of the base units. SI units are a system of physical units namely meter, second, kilogram, candela, Kelvin, ampere, and mole. SI derived unit of pressure is Pascal (Pa). 1 Pascal = N .m -2 = kg .m -1 s -2
The pressure should be defined and its unit should be given in terms of SI base units.
Definition of Pressure:
Pressure or Stress is the force applied perpendicular to the surface of an object per unit area.
SI units:
SI units are defined as International system of units and SI derived units are the units of measurements derived from the seven base units. They can be dimensionless or described as one or more of the base units.
SI units are a system of physical units namely meter, second, kilogram, candela, Kelvin, ampere, and mole.
SI derived unit of pressure is Pascal (Pa).
1 Pascal = N.m-2= kg.m-1s-2
Expert Solution & Answer
Explanation of Solution
When an object having one kilogram of mass and it is placed in one square meter area the pressure possessed by the object on the area is given by 1 kg/m2 is equals 9.80665 Pascal’s and it is shown in below figure 1,
Figure 1
Conclusion
The term Pressure is defined and SI unit is given.
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What are the IUPAC Names of all the compounds in the picture?
1) a) Give the dominant Intermolecular Force (IMF) in a sample of each of the following
compounds. Please show your work. (8) SF2, CH,OH, C₂H₂
b) Based on your answers given above, list the compounds in order of their Boiling Point
from low to high. (8)
19.78 Write the products of the following sequences of reactions. Refer to your reaction road-
maps to see how the combined reactions allow you to "navigate" between the different
functional groups. Note that you will need your old Chapters 6-11 and Chapters 15-18
roadmaps along with your new Chapter 19 roadmap for these.
(a)
1. BHS
2. H₂O₂
3. H₂CrO4
4. SOCI₂
(b)
1. Cl₂/hv
2. KOLBU
3. H₂O, catalytic H₂SO4
4. H₂CrO4
Reaction
Roadmap
An alkene 5. EtOH
6.0.5 Equiv. NaOEt/EtOH
7. Mild H₂O
An alkane
1.0
2. (CH3)₂S
3. H₂CrO
(d)
(c)
4. Excess EtOH, catalytic H₂SO
OH
4. Mild H₂O*
5.0.5 Equiv. NaOEt/EtOH
An alkene 6. Mild H₂O*
A carboxylic
acid
7. Mild H₂O*
1. SOC₁₂
2. EtOH
3.0.5 Equiv. NaOEt/E:OH
5.1.0 Equiv. NaOEt
6.
NH₂
(e)
1. 0.5 Equiv. NaOEt/EtOH
2. Mild H₂O*
Br
(f)
i
H
An aldehyde
1. Catalytic NaOE/EtOH
2. H₂O*, heat
3. (CH,CH₂)₂Culi
4. Mild H₂O*
5.1.0 Equiv. LDA
Br
An ester
4. NaOH, H₂O
5. Mild H₂O*
6. Heat
7.
MgBr
8. Mild H₂O*
7. Mild H₂O+
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell