QUESTION IMAGE
Question
- a process in which heat moves into the system is called
a) endothermic
b) exothermic
c) entropic
d) spontaneous
- the measurement of heat flow is called
a) chromatography
b) stoichiometry
c) spectroscopy
d) calorimetry
- which of these represents a net gain of energy by a closed system?
a) heat moves into the system
b) the system loses mass to the surroundings
c) the system expands into the surroundings
d) the temperature of the surroundings increases
- iron (fe) has a specific heat capacity of 0.450 j/g·°c. it takes ______ of heat to raise the temperature of 50.0 g of fe from 25.0 °c.
a) 113 j
b) 5.62 kj
c) 563 j
d) 4.44 kj
- when comparing possible lewis structures using a formal charge analysis, negative formal charge should be placed
a) on a metal
b) on the atom with the highest electronegativity
c) on the atom with the lowest electronegativity
d) on the atom with the highest atomic number
- the electron configuration for rn is
a) kr5s²4d¹⁰
b) kr4s²3d¹⁰
c) ar4s²4d¹⁰
d) kr5s²4d¹⁰
- overlap of s atomic orbitals form which of these sets of molecular orbitals?
a) σ and π
b) π and π*
c) σ and σ*
d) σ and π
- in terms of molecular orbital theory, as bond order increases, bond strength ____ and bond length ____.
a) increases, increases
b) decreases, decreases
c) increases, decreases
d) decreases, increases
- which of these molecules would you expect to be polar?
a) c₂h₂
b) ch₄
c) ch₂cl₂
d) ccl₄
Question 52
To solve this, we recall the definitions: Endothermic processes absorb heat (heat moves into the system), Exothermic releases heat, Entropic relates to entropy, Spontaneous is about reaction spontaneity. So the correct term for heat moving into the system is Endothermic.
Chromatography separates mixtures, Stoichiometry is about reaction ratios, Spectroscopy studies light - matter interaction, Calorimetry measures heat flow. So the measurement of heat flow is Calorimetry.
- Option A: Heat moving into the system means the system gains energy (heat is a form of energy), so this shows a net gain.
- Option B: Losing mass to surroundings doesn't directly relate to energy gain (mass and energy are related but this isn't a net energy gain in the context of heat/energy transfer here).
- Option C: Expanding into surroundings is about volume change, not net energy gain.
- Option D: Temperature increase of surroundings means the system is losing energy (heat is leaving the system), not gaining. So the answer is A.
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A) Endothermic