The pressure on the ocean floor has to be calculated. Concept Introduction: Combined Gas Law : Boyle’s law: V α 1 P (at constant T) P f V f = P i V i (at constant T) Charles’s law: V α T (at constant P) V f T f = V i T i (at constant P) The boyle’s law and charles’s law is combined and stated as “the volume (V) of a given gas is directly proportional to temperature (T) and inversely proportional to pressure (P)” V α T P For a sample of gas supposing a change in temperature, volume and pressure, the combined gas law can be written as P f V f T f = P i V i T i Where, T i a n d T f are initial temperature and final temperature respectively V i a n d V f are initial volume and final volume respectively P i a n d P f are initial pressure and final pressure respectively To Calculate: The pressure on the ocean floor
The pressure on the ocean floor has to be calculated. Concept Introduction: Combined Gas Law : Boyle’s law: V α 1 P (at constant T) P f V f = P i V i (at constant T) Charles’s law: V α T (at constant P) V f T f = V i T i (at constant P) The boyle’s law and charles’s law is combined and stated as “the volume (V) of a given gas is directly proportional to temperature (T) and inversely proportional to pressure (P)” V α T P For a sample of gas supposing a change in temperature, volume and pressure, the combined gas law can be written as P f V f T f = P i V i T i Where, T i a n d T f are initial temperature and final temperature respectively V i a n d V f are initial volume and final volume respectively P i a n d P f are initial pressure and final pressure respectively To Calculate: The pressure on the ocean floor
Solution Summary: The author explains that the pressure on the ocean floor has to be calculated.
Study of body parts and their functions. In this combined field of study, anatomy refers to studying the body structure of organisms, whereas physiology refers to their function.
Chapter 5, Problem 5.137QP
Interpretation Introduction
Interpretation:
The pressure on the ocean floor has to be calculated.
Concept Introduction:
Combined Gas Law:
Boyle’s law:
Vα1P (at constant T)
PfVf=PiVi (at constant T)
Charles’s law:
Vα T (at constant P)
VfTf=ViTi (at constant P)
The boyle’s law and charles’s law is combined and stated as “the volume (V) of a given gas is directly proportional to temperature (T) and inversely proportional to pressure (P)”
VαTP
For a sample of gas supposing a change in temperature, volume and pressure, the combined gas law can be written as
PfVfTf=PiViTi
Where,
Tiand Tf are initial temperature and final temperature respectively
Viand Vf are initial volume and final volume respectively
Piand Pf are initial pressure and final pressure respectively
The number of imaginary replicas of a system of N particlesA) can never become infiniteB) can become infiniteC) cannot be greater than Avogadro's numberD) is always greater than Avogadro's number.
Electronic contribution to the heat capacity at constant volume
A) is always zero
B) is zero, except for excited levels whose energy is comparable to KT
C) equals 3/2 Nk
D) equals Nk exp(BE)
Chapter 5 Solutions
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