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Summary H3
H3: Energy
1 / 15
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Slide 1:
Slide
Natuurkunde
Middelbare school
vwo
Leerjaar 3
This lesson contains
15 slides
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interactive quizzes
and
text slides
.
Lesson duration is:
50 min
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Items in this lesson
H3: Energy
Slide 1 - Slide
What has a flame to do with this chapter?
Slide 2 - Open question
Chemical energy
Electrical energy
Slide 3 - Drag question
Lesson objectives
Teminste 2 formules uit H3 op te noemen en uit te leggen wat ze betekenen.
Tenminste 2 vormen van energie uit het hoofd op te noemen.
Zelfstandig kunnen werken aan opgaves via LessonUp
Slide 4 - Slide
Formulas (Energy)
specific heat
Electrical energy
Efficiency
E
=
P
⋅
t
Q
=
c
⋅
m
⋅
Δ
T
η
=
E
(
t
o
t
a
l
)
E
(
u
s
e
f
u
l
)
⋅
1
0
0
p
e
r
c
e
n
t
Slide 5 - Slide
Formulas (Power)
Insulation
Electrical energy
Efficiency
E
=
P
⋅
t
Q
w
=
U
⋅
A
⋅
Δ
T
η
=
P
(
t
o
t
a
l
)
P
(
u
s
e
f
u
l
)
⋅
1
0
0
p
e
r
c
e
n
t
Slide 6 - Slide
Constants
U
c
Slide 7 - Slide
Give examples of units matching with quantities.
P
Watt
m
kg
Slide 8 - Open question
Individual
Check excersise 6 (hw) -> not completed? -> start now
Otherwise start on excersise 7 -> new homework page 157
timer
3:00
Slide 9 - Slide
Excersise 6
a. Calculate the amount of heat released by the combustion of the natural gas.
Slide 10 - Slide
Excersise 6
a. Calculate the amount of heat released by the combustion of the natural gas
9.6 *10^6 J
V(m³)
1
0.30
E (J*10^6)
32
9.6
Slide 11 - Slide
Excersise 6
b. Calculate the amount of heat taken up by the water.
Given: 28 L -> 28 kg -> 28.000 gram water, c = 4.2, Tstart = 15C, Tend = 85C
Answered: 4.2*28.000*(85-15) = 8.2*10^6 J
Q
=
c
⋅
m
⋅
Δ
T
Slide 12 - Slide
Excersise 6
c. Calculate the efficiency of the combined boiler
8.2*10^6/9.6 *10^6 J * 100 = 86%
η
=
E
(
t
o
t
a
l
)
E
(
u
s
e
f
u
l
)
⋅
1
0
0
p
e
r
c
e
n
t
Slide 13 - Slide
Homework
Excersise 7,8 and 9 page 157
E-mail with link to the explanation of excersise 11
And a knowledge test about electricity
Slide 14 - Slide
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Slide 15 - Poll
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