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Ludmilka [50]
2 years ago
9

Payroll is best defined as

Social Studies
2 answers:
pashok25 [27]2 years ago
6 0
The answer is b.<span> wages and benefits paid to employees.

hope that this will help you
</span>
Paha777 [63]2 years ago
4 0
I'm pretty sure it B. wages and benefits paid to the employees
because anytime you get a job, you will be put on payroll
and thats why we get our paychecks

Hope this helps :)
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Assume that the rod in Fig.31.2 has a length of 0.86 m,the resistor has value 2.2 ,and a magnetic field of 8.0 T is directed int
frutty [35]

1) 0.48 m/s

2) Clockwise

3) 10.3 N

Explanation:

1)

The figure is missing: find it in attachment.

As the rod is pulled along the rails, in the region of magnetic field, an electromotive force is induced in the rod itself, due to the change in magnetic flux through the circuit enclosed by the rod and the rails.

The magnitude of this induced electromotive force (which is equivalent to the potential difference induced in the rod) is

V=BvL

where:

B is the strength of the magnetic field

v is the speed of the rod

L is the length of the rod

Also we know that according to Ohm's law, the potential difference across the resistance is equal to

V=RI

where

R is the resistance of the rod

I is the current

Since the potential difference across the resistor is equal to the potential difference across the rod, we can combine the two equations, and we get:

BvL=RI\\v=\frac{RI}{BL}

Here we have:

R=2.2 \Omega\\B=8.0 T\\L=0.86 m\\I=1.5 A

Therefore, the speed of the rod must be:

v=\frac{(2.2)(1.5)}{(8.0)(0.86)}=0.48 m/s

2)

Here we have to apply Lenz's law, which states that the direction of the induced emf (and so, of the induced current) is such that it opposes the change in magnetic flux through the system.

First of all, here we notice that as the rod moves, the area enclosed by the circuit decreases: this means that the magnetic flux through the circuit decreases too.

As a result, the induced current must produce a magnetic field which goes in the same direction as the external field, in order to "restore" the magnetic flux. Here the external magnetic field points inside the paper, so the magnetic field produced by the induced current must also point inside the paper.

In order for that to happen, we see that the induced current must flow clockwise: in fact, if we take the rod and we apply the right-hand rule, we see that if we place the thumb towards the left (direction of the clockwise current), the other fingers "wrapped" point into the paper at the center of the circuit, so this is the correct direction.

3)

A current-carrying wire in a magnetic field experiences a force of magnitude

F=ILB

where

I is the current

L is the length of the wire

B is the strength of the magnetic field

Here we have

I = 1.5 A

L = 0.86 m

B = 8.0 T

So the force experienced by the rod is

F=(1.5)(8.0)(0.86)=10.3 N

Therefore, we must apply an equal and opposite force of 10.3 N in order to maintain keep the acceleration of the rod to zero, so that the velocity is constant, and the current is constant as well.

7 0
2 years ago
Pls help I will give u brain master
34kurt

Answer:

pliers

Explanation:

5 0
2 years ago
The goal of many religious altered states of consciousness is to achieve a unitary state. Group of answer choices True False
sergiy2304 [10]

Answer:

True

Explanation:

6 0
2 years ago
What starts the home fires that cause the most deaths?
romanna [79]

Answer:

i pretty sure its electrical wiring or cooking not 100% sure though

Explanation:

3 0
3 years ago
Read 2 more answers
To make a U-turn, you must ensure that no cars are closer than _____ feet in each direction.
uysha [10]

Answer: 200 feet

Explanation: Making a U turn is making a turn of 180 degrees to an opposite direction.

their are rules in making a U turn while driving and they are:

1. Make sure there is no sign prohibiting you from making a u turn.

2. There must be a U turn only sign at the point.

3. There must be a 200 feet in each direction before the U turn is made.

4. Keep the vehicle on the right side of the lane in preparation to make the U turn.

5 0
3 years ago
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