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nexus9112 [7]
4 years ago
11

The voltage V in a simple electrical circuit is slowly decreasing as the battery wears out. The resistance R is slowly increasin

g as the resistor heats up. Use Ohm's Law, V = IR, to find how the current I is changing at the moment when R = 400 Ω, I = 0.02 A, dV/dt = −0.05 V/s, and dR/dt = 0.04 Ω/s. (Round your answer to six decimal places.)
Mathematics
1 answer:
wariber [46]4 years ago
6 0

Answer:

dI/dt= -0,000127 A/s

Step-by-step explanation:

From Ohm's Law we have V = IR . deriving on both sides of equality

dV/dt = dI/dt R + I dR/dt . clearing,   dI/dt = 1/R (dV/dt - I dR/dt)

replacing  by the values ​​of the statement

dI/dt = 1/400Ω (-0,05 V/s - 0,02 A 0,04Ω/s) . making calculations

dI/dt = -0,0508V/s / 400Ω = -0,000127 V/sΩ. simplifying the units

dI/dt = -0,000127 A/s

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madam [21]

Answer:

2.1%

Step-by-step explanation:

The formula for compound interest is given as:

A=P(1+I)^n\\\\P-Principal \\A-amount\\i-compound \ interest \ rate

Given the Principal amount as $6000, and the rate in the first two years as 1.5%:

A=P(1+i)^n\\\\A_2=6000(1+0.015)^2\\\\A_2=6181.35

We compound A_2 for 1 year at rate i to obtain $6311.16:

A=P(1+i)^n, n=1, i=i, P=6181.35, A=6311.16\\\\6311.16=6181.35(1+i)^1\\\\\frac{6311.16}{6181.35}=(1+i)\\\\i=\frac{6311.16}{6181.35}-1\\\\i=0.02100

Hence, the compound interest rate in the third year is 2.1%

7 0
4 years ago
Read 2 more answers
A group of hikers walks 3 miles east and then 1 mile north. After taking a break, they then hike 4 miles east to their final des
geniusboy [140]

Answer:

The vector that describes their hike from their starting position to their final destination is \vec r = 7\,\hat{i}+1\,\hat{j}\,\,\,[mi].

Step-by-step explanation:

In this problem we assume that orthogonal axes coincide with the north and east. We proceed to translate each sentence from statement into vectorial equations:

(i) <em>A group of hikers walks 3 miles east and then 1 mile north:</em>

\vec r_{A} = 3\,\hat{i}+1\,\hat{j}\,\,\,[mi]

(ii) <em>After taking a break, they then hike 4 miles east to their final destination:</em>

\vec r_{B} = 4\,\hat{i}\,\,\,[mi]

The vector that describes their hike from their starting position to their final destination is the sum of the vectors deducted above. That is:

\vec r = \vec r_{A}+\vec r_{B}  (1)

\vec r = (3\,\hat{i}+1\,\hat{j})+4\,\hat{i}\,\,\,[mi]

\vec r = 7\,\hat{i}+1\,\hat{j}\,\,\,[mi]

The vector that describes their hike from their starting position to their final destination is \vec r = 7\,\hat{i}+1\,\hat{j}\,\,\,[mi].

6 0
3 years ago
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lesya692 [45]

Answer:

(a) 110 mm Hg

(b) 70 mm Hg

(c) 3/4 second

(d) see the attachment

Step-by-step explanation:

(a) The sine function has a maximum value of +1, so the maximum value of p is ...

pmax = 20·(+1) +90 = 20+90 = 110 . . . . . mm Hg

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(b) The sine function has a minimum value of -1, so the minimum value of p is ...

pmin = 20·(-1) +90 = -20+90 = 70 . . . . . mm Hg

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(c) The period of the sine function is 2π, so the value of t that makes the argument be 2π will be the period.

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t = 2π·3/(8π) = 3/4 . . . . . . multiply by the inverse of the coefficient of t

The period of her heartbeat cycle is 3/4 seconds.

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(d) a graph is attached.

4 0
4 years ago
Factor completely. x^3-8x^2-2x+16
amm1812

Step-by-step explanation:

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8 0
4 years ago
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zlopas [31]
Multiply 2nd equqation by -1 and add to first

5x+4y=22
<u>-3x-4y=-10 +</u>
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sub back


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4y=-8
divide by 4
y=-2

(x,y)
(6,-2) is solution
6 0
3 years ago
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