The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person’s bank account balance. The units of x would be dollars ($), and velocity v would give the rate at which the balance changes (in units of, for example, $/month). Acceleration would give the rate at which v changes. Suppose a person begins with ten thousand dollars in the bank. Initial money management, leads to no net change in the account balance so that v 0 = 0. Unfortunately, management worsens over time so that a = −2.5 × 10 2 $/month 2 . Assuming a is constant, find the amount of time in months until the bank account is empty
The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person’s bank account balance. The units of x would be dollars ($), and velocity v would give the rate at which the balance changes (in units of, for example, $/month). Acceleration would give the rate at which v changes. Suppose a person begins with ten thousand dollars in the bank. Initial money management, leads to no net change in the account balance so that v 0 = 0. Unfortunately, management worsens over time so that a = −2.5 × 10 2 $/month 2 . Assuming a is constant, find the amount of time in months until the bank account is empty
The kinematic equations can describe phenomena other than motion through space and time. Suppose x represents a person’s bank account balance. The units of x would be dollars ($), and velocity v would give the rate at which the balance changes (in units of, for example, $/month). Acceleration would give the rate at which v changes. Suppose a person begins with ten thousand dollars in the bank. Initial money management, leads to no net change in the account balance so that v0 = 0. Unfortunately, management worsens over time so that a = −2.5 × 102 $/month2. Assuming a is constant, find the amount of time in months until the bank account is empty
17. Two charges, one of charge +2.5 × 10-5 C and the other of charge +3.7 × 10-6 C, are 25.0 cm apart.
The +2.5 × 10−5 C charge is to the left of the +3.7 × 10−6 C charge.
a. Draw a diagram showing the point charges and label a point Y that is 20.0 cm to the left of the
+3.7 × 10-6 C charge, on the line connecting the charges. (Field lines do not need to be drawn.)
b. Calculate the net electric field at point Y.
3
Set
ба
||Axl
49.32
6b
71
Ay
22
Magnitude of A
Angle of A
24.04
Angle of -A
22
54
155.96
° (pos Ax) 204.04
° (neg Ax) 335.96
°
(pos Ax)
° (neg Ax)
115.77
° (pos Ax) 295.77
° (pos Ax)
-39
81
208.78
° (neg Ax) 28.78
°
(neg Ax)
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