The energy of the universe is constant. That what mentioned by the first law of ?thermodynamics, Does this mean that AE is always equal to zero اخترأحد الخيارات a. No, AE never equals zero because work is always being done on the system or by the .system .b No, AE does not always equal zero because it refers to the system's internal energy, which is .affected by heat and work .c. No, AE does not always equal zero, but this is only due to factors like friction and heat d. Yes, AE = O at all times, which is why q = -w O e. No, AE never equals zero because energy is always flowing between the system and O .surroundings

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The energy of the universe is constant. That what mentioned by the first law of
?thermodynamics, Does this mean that AE is always equal to zero
اخترأحد الخيارات
a. No, AE never equals zero because work is always being done on the system or by the O
.system
.b O
No, AE does not always equal zero because it refers to the system's internal energy, which is
.affected by heat and work
.c. No, AE does not always equal zero, but this is only due to factors like friction and heat O
d. Yes, AE = 0 at all times, which is why q
= -W O
e. No, AE never equals zero because energy is always flowing between the system and O
.surroundings
Transcribed Image Text:The energy of the universe is constant. That what mentioned by the first law of ?thermodynamics, Does this mean that AE is always equal to zero اخترأحد الخيارات a. No, AE never equals zero because work is always being done on the system or by the O .system .b O No, AE does not always equal zero because it refers to the system's internal energy, which is .affected by heat and work .c. No, AE does not always equal zero, but this is only due to factors like friction and heat O d. Yes, AE = 0 at all times, which is why q = -W O e. No, AE never equals zero because energy is always flowing between the system and O .surroundings
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