A rod extending between x = 0 and x = 14.0 cm has uniform cross-sectional area A = 9.00 cm 2 . Its density increases steadily between its ends from 2.70 g/cm 3 to 19.3 g/cm 3 . (a) Identify the constants B and C required in the expression ρ = B + Cx to describe the variable density. (b) The mass of the rod is given by m = ∫ all material ρ d V = ∫ all x ρ A d x = ∫ 0 14 .0 cm ( B + C x ) ( 9.00 cm 2 ) d x Carry out the integration to find the mass of the rod.
A rod extending between x = 0 and x = 14.0 cm has uniform cross-sectional area A = 9.00 cm 2 . Its density increases steadily between its ends from 2.70 g/cm 3 to 19.3 g/cm 3 . (a) Identify the constants B and C required in the expression ρ = B + Cx to describe the variable density. (b) The mass of the rod is given by m = ∫ all material ρ d V = ∫ all x ρ A d x = ∫ 0 14 .0 cm ( B + C x ) ( 9.00 cm 2 ) d x Carry out the integration to find the mass of the rod.
A rod extending between x = 0 and x = 14.0 cm has uniform cross-sectional area A = 9.00 cm2. Its density increases steadily between its ends from 2.70 g/cm3 to 19.3 g/cm3. (a) Identify the constants B and C required in the expression ρ = B + Cx to describe the variable density. (b) The mass of the rod is given by
m
=
∫
all material
ρ
d
V
=
∫
all x
ρ
A
d
x
=
∫
0
14
.0 cm
(
B
+
C
x
)
(
9.00
cm
2
)
d
x
Carry out the integration to find the mass of the rod.
Example
Two charges, one with +10 μC of charge, and
another with - 7.0 μC of charge are placed in
line with each other and held at a fixed distance
of 0.45 m. Where can you put a 3rd charge of +5
μC, so that the net force on the 3rd charge is
zero?
*
Coulomb's Law Example
Three charges are positioned as seen below. Charge
1 is +2.0 μC and charge 2 is +8.0μC, and charge 3 is -
6.0MC.
What is the magnitude and the direction of the force
on charge 2 due to charges 1 and 3?
93
kq92
F
==
2
r13 = 0.090m
91
r12 = 0.12m
92
Coulomb's Constant: k = 8.99x10+9 Nm²/C²
✓
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