(i) The root-mean-square speeds and average kinetic energies of the Helium both compared. (ii) The frequency and force has to be compared. Concept Introduction: Root mean-square speed is the parameter to measure the speed of particles in a gas. M is the molecular mass of the molecule at temperature T, root mean-square speed ( u rms ) has to be calculate using the formula u rms = 3RT M
(i) The root-mean-square speeds and average kinetic energies of the Helium both compared. (ii) The frequency and force has to be compared. Concept Introduction: Root mean-square speed is the parameter to measure the speed of particles in a gas. M is the molecular mass of the molecule at temperature T, root mean-square speed ( u rms ) has to be calculate using the formula u rms = 3RT M
Solution Summary: The author explains that the root-mean-square speed and average kinetic energies of the Helium are compared. The frequency and force of collisions are measured.
(i) The root-mean-square speeds and average kinetic energies of the Helium both compared.
(ii) The frequency and force has to be compared.
Concept Introduction:
Root mean-square speed is the parameter to measure the speed of particles in a gas. M is the molecular mass of the molecule at temperature T, root mean-square speed (urms) has to be calculate using the formula
urms=3RTM
(b)
Interpretation Introduction
Interpretation:
(i) The frequency and force of helium has to be compared.
(ii) The frequency and force has to be compared.
(c) The given statement valid
Concept Introduction:
The main useful of the idea is in the study of the standard impact force during collisions. Used for collisions, the mass and change in velocity are often willingly measured, other than the force during the collision is not.
(c)
Interpretation Introduction
Interpretation:
The given statement has to be valid.
Concept Introduction:
Root mean-square speed is the parameter to measure the speed of particles in a gas. M is the molecular mass of the molecule at temperature T, root mean-square speed (urms) has to be calculate using the formula
Recognizing ampli
Draw an a amino acid with a methyl (-CH3) side chain.
Explanation
Check
Click and drag to start drawing a
structure.
X
C
Write the systematic name of each organic molecule:
structure
name
×
HO
OH
☐
OH
CI
CI
O
CI
OH
OH
く
Check the box under each a amino acid.
If there are no a amino acids at all, check the "none of them" box under the table.
Note for advanced students: don't assume every amino acid shown must be found in nature.
COO
H3N-C-H
CH2
HO
CH3
NH3 O
CH3-CH
CH2
OH
Onone of them
Explanation
Check
+
H3N
O
0.
O
OH
+
NH3
CH2
CH3-CH
H2N C-COOH
H
O
HIC
+
C=O
H3N-C-O
CH3- - CH
CH2
OH
Х
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