Calorimetry and Thermochemistry

Calorimetry and Thermochemistry

10th Grade - University

21 Qs

quiz-placeholder

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Calorimetry and Thermochemistry

Calorimetry and Thermochemistry

Assessment

Quiz

Chemistry

10th Grade - University

Hard

NGSS
HS-PS3-4, HS-PS1-4, HS-PS3-2

+3

Standards-aligned

Created by

Charles Martinez

FREE Resource

21 questions

Show all answers

1.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

The unit(s) for heat are?

calories
joules
calories or joules

2.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

135 g of aluminum (initially at 400oC) are mixed with an unknown mass of water (initially at 25oC). When thermal equilibrium is reached, the system has a temperature of 80oC. Find the mass of the water.

197.2g
168.6g
168.6J
23.1g

Tags

NGSS.HS-PS3-1

NGSS.HS-PS3-4

3.

MULTIPLE CHOICE QUESTION

15 mins • 1 pt

A piece of metal with a mass of 32.8 g is heated to 100.5°C and dropped into 138.2 g of water at 20.0°C.  The final temperature of the system is 30.2°C.  What is the specific heat capacity of the metal?

2.56 J/g°C
0.391 J/g°C
5.29 J/g°C
3.50 J/g°C

Tags

NGSS.HS-PS3-1

NGSS.HS-PS3-2

NGSS.HS-PS3-4

4.

MULTIPLE CHOICE QUESTION

30 sec • 1 pt

In the lab, an experimenter mixes 75.0 g of water (initially at 30oC) with 83.8 g of a solid metal (initially at 600oC). At thermal equilibrium, he measures a final temperature of 50.0oC. What was the specific heat of the metal?

0.672 J/g ⁰C
0.533 ⁰C
1.156 J/g ⁰C
0.133 J/g ⁰C

Tags

NGSS.HS-PS3-1

NGSS.HS-PS3-4

5.

MULTIPLE CHOICE QUESTION

3 mins • 1 pt

The specific heat of a substance is the amount of energy needed to raise the temperature of one gram, one degree Celsius of a substance.

True
False
sometimes

Tags

NGSS.HS-PS3-4

6.

MULTIPLE CHOICE QUESTION

3 mins • 1 pt

As a reaction is taking place,  the student notices that the temperature has dropped. This indicates that the system has increased in energy. What type of process is this?

Endothermic
Exothermic

Tags

NGSS.HS-PS1-4

7.

MULTIPLE CHOICE QUESTION

3 mins • 1 pt

For the formula:
 Q= m c ∆T
The  units for specific heat are:

g /J C
J/g⁰C
kJ/g
KJ/⁰Cg

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