Due to the distance and vulnerability in supply chains and procurement systems, in order to determine the cost effectiveness of local sourcing, a practical step to do this could be a. Utilize a single

Answers

Answer 1

Employing a single cost comparison model provides a practical approach to evaluating the cost effectiveness of local sourcing in the context of distance and vulnerability in supply chains and procurement systems.

A practical step to determine the cost effectiveness of local sourcing in the given scenario would be to utilize a single cost comparison model.

This model would involve comparing the costs associated with local sourcing against those of distant sourcing, taking into account factors such as transportation costs, lead times, inventory holding costs, quality control measures, and any other relevant expenses.

The cost comparison model would involve gathering data on the various cost components associated with both local and distant sourcing options.

This would include collecting information on the prices of raw materials, transportation costs, import/export duties, storage costs, and any other relevant expenses.

The model would then calculate the total cost for each sourcing option and compare them to determine which one is more cost-effective.

By utilizing a single cost comparison model, organizations can systematically assess the financial implications of local sourcing.

This step allows for an objective evaluation of the costs involved and enables decision-makers to make informed choices based on a comprehensive understanding of the economic factors at play.

Additionally, it helps identify potential cost savings and highlights any potential risks or challenges associated with local sourcing.

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Related Questions

In a complete description of a force vector, which is usually not necessary?

Answers

Answer:

Position

Explanation:

A force vector has both magnitude and direction, which can be represented by a line with an arrow head. The length of the line describes magnitude, while the arrows points in the required direction.

generally, the position of a vector is unimportant when describing the vector. Thus, when a force vector is to be described, it is unnecessary to make reference to its original position. Majorly, its magnitude and direction is considered.

Two swimmers relax close together on air mattresses in a pool. One swimmer’s mass is 48 kg, and the other’s mass is 55 kg. If the swimmers push away from each other,

A. their total momentum triples.

B. their momentums are equal but opposite.

C. their total momentum doubles.

D. their total momentum decreases.

Answers

B . their momentums are equal but opposite .

In the case when the swimmer push away so the momentum should be equal but it should be opposite.

What is momentum?

Momentum means the product of the mass of a particle and its velocity. It is a vector quantity, it applied to both magnitude and direction. Since the swimmers are push away so here the momentum should be equal but it should be an inverse direction, not the direct direction.

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The point on the graph that lies on the y-axis (vertical axis) is called the y-intercept. What does the y-intercept tell you about the runner? ( look at photo)
the ending position of the runner

Choices:

the runners distance from the state

the starting position of the runner

the runners speed

Answers

Answer:

The starting position of the runner.

Explanation:

When you look at the graph, you can see that the first point on the graph is twenty on the y-axis.

The runner starts at twenty, and ends at thirty.

Therefore, the runner starts at twenty on the y-axis, so it's the starting position of the runner.

The y-intercept tell you about the starting position of the runner.

What is y-intercept of a function?

The intersection of the graph of the function with the y-axis gives y-intercept of that function. The y-intercept is the value of y on the y-axis at which the considered function intersects it.

Assume that we've got: y = f(x)

At y-axis, we've got x = 0, so putting it will give us the y-intercept.

Thus, y-intercept of y = f(x) is y = f(0)

When we look at the graph, we can see that the first point on the graph is twenty on the y-axis.

The runner starts at twenty and ends at thirty.

Thus, the runner starts at twenty on the y-axis, so it is the starting position of the runner.

The y-intercept tell you about the starting position of the runner.

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please help!!
There are more electrons in the orbitals of an atom that there are protons in the nucleus of the atom true or false

Answers

Answer:

An element is a pure substance that contains only one type of atom. TRUE. 2. ... FALSE, they are all carbon atoms. 7. The smallest unit of matter is an atom. TRUE. 8. When an ... TRUE. 10. Most of the mass of an atom is found in the electron layers. FALSE. 11. The nucleus of an atom contains protons and neutrons. TRUE ...

Explanation:

What is the force that causes you t land on the floor when you fall out of bed?

Answers

Answer: gravity.

Explanation:

Answer:gravity

Explanation:

x = 20
v = 3.5 m/s
t = ?

Answers

Answer:

16.5 I think

Explanation:

please help me with this question asap

Answers

I can explain . Of an object is not moving then all the forces must be balanced. So the weight is balanced by a normal contact force.

PLEASE HELP ME WILL GIVE BRAINLIEST
The horizontal and vertical components of a projectile's velocity are......
A. always changing
B. independent of each other
C. dependent on each other
D. always equal

Answers

Answer:

A.always changing

Explanation:

Answer:

always equal

The horizontal and vertical components of a projectile's velocity is always equal. The horizontal and vertical have different charges.

what is the properties of polarization

Answers

Answer:

Explanation:

The polarization characteristics depend on the shape, size, and optical properties of the surface particles. Generally, the radiation is linearly polarized and is said to be negatively polarized if it lies in the scattering plane and positively polarized if it is perpendicular to the scattering plane.

PLEASE HURRY AND HELP
What is the correct unit for acceleration?
A. m
B. m/s
C. m/s2

Answers

The answer is C. m/s^2

PLEASE HELP!!!!! 30 POINTS!!!!! I HAVE NO IDEA HOW TO DO THIS!!
Match these items and the phrases with which they are associated.

1. upward force of a liquid on an object
2. H 2 O
3. basic unit of matter
4. amount of matter in an object
5. n = 1
6. l × w × h
7. drew first picture of atom
8. mass/volume


mass,
atom,
water,
buoyancy,
inner shell,
volume,
density,
Neils Bohr,
concrete

Answers

1.) buoyancy
2.) water
3.) atoms
4.)mass
5.) inner shell
6.)volume
7.)neils bohr
8.) density

if Sarah melts 10g of tin. What mass of melted tin would she have at the end of the experiment?​

Answers

Answer:

10g

Explanation:

As the Law of Conservation of Mass states that " Mass can neither be created nor be destroyed in a chemical reaction".

Though melting of tin isn't a chemical change, the same logic is applied here...

Hence,

The mass of tin will be 10 g itself...

Answer:

10g

Explanation:

The experiment is about melting of tin. When solid tin is melted, it retains the amount of substance it originally has and we expect it to still be 10g.

Mass is the quantity or amount of matter contained in a substance. For most chemical processes, the law of conservation of matter is always succinctly observed.

The law states that "matter is neither created nor destroyed in a chemical reaction or process". Although melting is a phase change, we can adapt this law to the process. Owning to no loss of matter in the melting procedure, the amount of substance remains the same.

Therefore, we are left with about the same mass of substance we started with which is 10g.


12. A train is traveling away from you at a constant speed.
What would a distance-time graph look like for this train?

Answers

Answer:

b

Explanation:because think about it its going straight so you have to coiunt the miles the train is going and boom your answer is b

Answer:

It would be choice b

Explanation:

speed is constant so they value won't change, on the other hand time is always going.

The temperature of a sample of iron with a mass of 10.0 g changed
from 50.4°C to 25.0°C with the release of 114.3 J of heat. What is the
specific heat of iron

Answers

Answer:

Q  =  mc(θ₂-θ₁)

47 calories =  10 g *c*(50.4 - 25)

47cal = 10*c* 25.4

47 /(10*25.4) = c

0.185 = c

Specific heat of iron = 0.185 cal/g°C

Explanation:

which statement is an example of the law of conservation of energy

Answers

Answer:

The law of conservation of energy can be seen in these everyday examples of energy transference: Water can produce electricity. Water falls from the sky, converting potential energy to kinetic energy. This energy is then used to rotate the turbine of a generator to produce electricity.

Explanation:

Answer:

When a light bulb is turned on, electrical energy is converted to light and heat.

Explanation:

got it right :)

An object moves in a straight path. Its position x as a function of time t is presented by the equation x(t) = at – bt2+c, where a = 1.4 m/s, b = 0.06 m/s2 and c =50 m. a. Calculate the average velocity of the object for the time interval t = 0 to t = 5 s b. Calculate the average velocity of the object for the time interval t = 0 to t = 10 s c. Calculate the average velocity of the object for the time interval t = 10 to t = 15 s

Answers

Answer:

The answer is below

Explanation:

Given that:

x(t) = at – bt2+c

a) x(t) = at – bt2+c

Substituting a = 1.4 m/s, b = 0.06 m/s2 and c =50 m gives:

x(t) = 1.4t - 0.06t² + 50

At t = 5, x(5) = 1.4(5) - 0.06(5)² + 50 = 55.5 m

At t = 0, x(0) = 1.4(0) - 0.06(0)² + 50 = 50 m

The average velocity (v) is given as:

[tex]v=\frac{x(5)-x(0)}{5-0}\\ \\v=\frac{55.5-50}{5-0}=1.1\\ \\v=1.1\ m/s[/tex]

b) x(t) = 1.4t - 0.06t² + 50

At t = 10, x(10) = 1.4(10) - 0.06(10)² + 50 = 58 m

At t = 0, x(0) = 1.4(0) - 0.06(0)² + 50 = 50 m

The average velocity (v) is given as:

[tex]v=\frac{x(10)-x(0)}{10-0}\\ \\v=\frac{58-50}{10-0}=0.8\\ \\v=0.8\ m/s[/tex]

c) x(t) = 1.4t - 0.06t² + 50

At t = 15, x(5) = 1.4(15) - 0.06(15)² + 50 = 57.5 m

At t = 10, x(10) = 1.4(10) - 0.06(10)² + 50 = 58 m

The average velocity (v) is given as:

[tex]v=\frac{x(15)-x(10)}{15-10}\\ \\v=\frac{57.5-58}{15-10}=0.1\\ \\v=0.1\ m/s[/tex]

State Newton’s first law of motion in your own words.

Answers

Answer:

An object in motion will stay in motion until an outside force is acted upon it.An object at rest will stay at rest until an outside force acts upon it.

Explanation:

Answer:

An object in motion will stay in motion until an outside force is acted upon it. An object at rest will stay at rest until an outside force acts upon it.

Explanation:

as a car skids to a stop, friction transforms kinetic energy to

Answers

Answer:

potential energy

Explanation:

A handball is hit toward a wall with a velocity of 14.3 m/s in the forward direction. It returns with a velocity of 13.5 m/s in the backward direction. If the time interval during which the ball is accelerated is 0.011 s, what is the handball's average acceleration?

Answers

Answer:

Let's define t = 0 as the moment when the ball hits the wall.

in this moment, we have a given acceleration, but if we only want to calculate the average acceleration, then let's consider the acceleration constant.

a(t) = A.

To find the velocity equation we should integrate, and the constant of integration will be the initial velocity, in this case, is 14.3m/s.

v(t) = A*t + 14.3m/s

Now we know that at t = 0.011s, the velocity is -13.5m/s (the sign is negative because the ball is moving in the opposite direction as before).

Then we can solve the equation:

v(0.011s) = -13.5m/s = A*0.011s + 14.3m/s

Now we can solve it for A, the average acceleration:

-13.5m/s - 14.3m/s = A*0.011s

(-27.8m/s)/0.011s = A = -1313.5 m/s^2

Does the kinetic energy of an object depend on its gravitational potential energy? use evidence to explain your answer.

Answers

Answer:

Short answer: No

Explanation:

Long answer: Kinetic energy is the amount of energy in a moving object. Gravitational potential energy is the energy in an object because of the object's position in the gravitational field.

Imagine a car travelling along a road. There is a wall at one end of the road and car collides with this wall. The energy released when the car collides with the wall is the kinetic energy of the moving car. To have kinetic energy an object must have velocity. The equation for the kinetic energy of a moving object is

K.E = [tex]\frac{1}{2} mv^{2}[/tex] , where m is the mass of the object and v is velocity. So, if velocity is zero (i.e. the object isn't moving), K.E = 0.

Now, imagine a car falling from a plane which is flying at a height of 300 metres from the ground. The energy the car possesses at a height of 300m is its gravitational potential energy. This is the energy which causes the falling car to move toward the ground in the first place.

You might think that as the car moves towards the ground, it has velocity since it's moving.  Well, yes; the car does have kinetic energy, but only when it starts moving; the car does not have any kinetic energy when it's on the cargo hold of the plane. It is the gravitational potential energy of the car which causes an increase in kinetic energy. The equation for gravitational potential energy is:

[tex]G.P.E = mgh[/tex]  , where m= mass of the object, g is the gravitational field strength (i.e 10N/kg) and h is the height of the object from the ground. So, imagine if the car parked on the ground, its gravitational potential energy would be zero, and if gravitational potential energy is zero, then there will be no force to cause the car to start moving and gain kinetic energy.

In this sense, you might say that the kinetic energy of the object does depend on its gravitational potential energy, but remember, in the first example, the car was not moving downwards; it was moving horizontally. So gravitational potential energy only affects kinetic energy downwards, but kinetic energy can be in any direction.

And hence, gravitational potential energy does not affect kinetic energy.

I really need help with this question, I can't wrap my brain around this.

Answers

region 4: warm, low pressure air

region 1: higher pressure air fills vacancy from low pressure air

region 3; cool high pressure air

region 2: warm air cools and increases in pressure.

During an ,
experiment, a siginal from a spaceship
reached the ground station in five minutes. What was the
distance of
the spaceship from
the ground station? The
signal travels at the speed of light, that is 3x 109 ms‐1

Answers

Answer:

1.5*10^9

Explanation:

distance =V x T

=3x10^8x5

=1.5*10^9

HELPPPP!!!!!
The air we breathe is a(n) _____.

A. compound
B. mixture
C. element
D. alloy

Answers

Oxygen - element
carbon dioxide - compound

Which of the following was/were used by the Greek philosophers in
order to understand the world?
a Observation
b Experiment
C Reason
d All of the above


Need help

Answers

Answer:

a and c are both correct

Explanation:

The Greek Philosophers had to reject many existing explanations (mostly from the babylonians and the egyptians) because of possible religion bias. They resorted to logic and reason to provide understanding for the world around them. The first set of Greek Philosophers were the Milesian thinkers; whom aside from logic and reason also placed value on Observation in understanding the world.

There are generally no evidence to support the use of experiment to support the claims of the Greek philosophers

The answer is reason C (reason).

difference between
Atmospheric pressure and Liquid pressure.​

Answers

Answer:

one is Atmospheric and one is a Liquid

Explanation:


What is the momentum of a baseball with a mass of 4 kg being thrown at a velocity of 84 m/s towards the hitter

Answers

Answer:

The answer is 336 kgm/s

Explanation:

The momentum of an object can be found by using the formula

momentum = mass × velocity

From the question

mass = 4 kg

velocity = 84 m/s

We have

momentum = 4 × 84

We have the final answer as

336 kgm/s

Hope this helps you

a body at rest in one reference frame may be in motion in another reference frame what does it mean?​

Answers

Answer:

Explanation:

Suppose you are standing on a platform connected to a train station. You appear to be at rest to a third person looking at you from the parking lot.

But what happens if you are observed by someone in the dining car of the train that just passed you?

You appear to be moving. He can prove it because your relative size is getting smaller. How does he know that it is he that is moving and that you are standing still? If he has no idea what's going on with his motion, he also has no idea who is moving.

A 100 kg steel beam is being lifted by a crane to the top of 15 meter building. How much Potential Energy is in the steel be a m when it reaches the top of the building.​

Answers

gravitational potential energy = mgh
gpe= 100 * 9.81 * 15 = 14715 Joules

Processes such as dissolving, melting, freezing, and evaporationg can affect the appearance of a substance, but the identity of the substance remains the same. These processes are called

A. physical properties
B. chemical change
C. chemical process
D. physical change

Answers

The answer to this question is D

Use the information below to solve this problem: A B note has a frequency of 493.88 Hz. Calculate its wavelength in meters. Question 2 options: 0.6945 m 0.7204 m 1.439 m 343 m

Answers

Answer:

Option (1). 0.6945 m

Explanation:

Frequency of a B note = 493.88 Hz

Speed of sound in the air = 343 meters per second

Since, formula to calculate the wavelength of a note is,

λ = [tex]\frac{v}{f}[/tex]

By substituting the given values in the formula,

λ = [tex]\frac{343}{493.88}[/tex]

λ = 0.6945 m

Therefore, wavelength of the music note is 0.6945 m.

Option (1) will be the answer.

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