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Compared to a 1.0 M NaCl(aq) solution at 1.0 atm, a 2.0 M NaCl(aq) solution at 1.0 atm has
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Which sample of matter can not be broken down by a chemical change?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Which list includes three forms of energy?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Which property is determined by the structure, arrangement, and interactions of the molecules of a substance at a given temperature and pressure?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Which process is a chemical change?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Under which conditions of pressure and temperature is a real gas most like an ideal gas?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
Which sample of argon gas has the same number of atoms as a 100.-milliliter sample of helium gas at 1.0 atm and 300. K?
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
A collision between reactant particles is most likely to result in a reaction when the particles have proper orientation and proper
electromagnetic, nuclear, chemical
synthesis of MgO(s)
physical state
low pressure and high temperature
100. mL at 1.0 atm and 300. K
a higher boiling point and a lower freezing point
antimony
energy
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