Four wires meet at a junction. it is assumed that two currents, i1 and i4, enter the node. an ammeter records a value of +4a for i1. currents i2 and i3 are travelling out of the node. i2 has 3a running through it, and i3 has 0.5 a running through it. what is the current in i4?

Answers

Answer 1
Kirchhoff’s Current Law states that sum of entering currents is equal to sum of exiting currents.
[tex] I_{IN} = I_{OUT} [/tex]

We are given information:
[tex] I_{1} = 4A \\ I_{2} = 3A \\ I_{3} =0.5A \\ I_{4} = ?[/tex]

Kirchhoff’s Current Law for our example is:
[tex] I_{1} + I_{4} = I_{2} + I_{3} [/tex]
[tex] 4 + x = 3 + 0.5 [/tex]
[tex] 4 + x = 3.5 [/tex]
[tex] x = -0.5A [/tex]

We got negative value for current. This means that current I₄ is not entering but it is leaving from the junction.

Related Questions

the saclike structure that surrounds the glomerulus is the. a. renal pelvis b. calyx c. bowman’s capsule d. cortex e. none of the above

Answers

 i believe that it is the bowman capsule

What is the source of all magnetism?

Gravitational waves
Sound waves
The core of the Earth
Electric current

Answers

the answer is electric current

Electric current. The source of all magnetism is electric current, both at macroscopic and microscopic levels, responsible for phenomena including Earth's magnetic field and ferromagnetism.

The source of all magnetism is electric current. This includes both macroscopic currents, such as those flowing through a wire, and microscopic currents, such as those associated with electrons orbiting an atomic nucleus or the spin of subatomic particles like protons and electrons. In the case of Earth's magnetic field, it is mostly generated by electric currents in the planet's molten outer core. In common materials, magnetism arises from the internal cooperative alignment of electron spins, a phenomenon known as ferromagnetism. The relationship between electricity and magnetism is such that separate north and south magnetic poles, or magnetic monopoles, do not exist; instead, magnetic effects are always due to the presence of electric currents forming magnetic dipoles.

a machine does 1500 joules of work in 30 second What is the power of the machine

Answers

This is simple as power in watts is equal to joules per second so we can do 1500 joules divided by 30 seconds which equals 50 watts
Final answer:

The power of the machine is calculated as the work done divided by the time taken, which in this case is 50 watts for a machine that does 1500 joules of work in 30 seconds.

Explanation:

To calculate the power of the machine, we need to use the formula power equals work done divided by time taken. In this scenario, the machine does 1500 joules of work in 30 seconds. Using the definition of power (1 watt = 1 joule/second), we can compute the machine's power output.

Power = Work / Time
Power = 1500 joules / 30 seconds
Power = 50 watts

The power of the machine is 50 watts.

Which statement correctly lists the electromagnetic waves from highest to lowest energy?
Choose one answer.
a. gamma rays, ultraviolet waves, microwaves
b. radio waves, X-rays, ultraviolet rays
c. microwaves, visible light, gamma rays
d. ultraviolet waves, infrared waves, X-rays
a?
@agent0smith

Answers

The correct answer is a. gamma rays, ultraviolet waves, microwaves. The electromagnetic spectrum consists of gamma rays, x-rays, ultraviolet rays (which are all invisible) and infrared, microwave, television waves, and radio waves (which are visible). Violet has the highest frequency and the shortest wavelength.

Answer:

a

Explanation:

A tow truck exerts a force of 8000 N to move a car a distance of 4 m in 20 seconds. Calculate the power of the tow truck..
1. 0.01 W
2. 100 W
3. 1600 W

Answers

3. 1600 Do the math on the calculator

Answer:

Power  = 1600Watts

Explanation:

Power is given by the rate of energy expended or work done by a body (or object).

Power = [tex]\frac{Workdone}{time}[/tex]

Where;

Workdone = Force x distance

=> Power = Force x distance / time   -----------------------(i)

According to the question,

Force = 8000N

distance = 4m

time = 20 s

Substitute these values into equation (i) above

=> Power = 8000 x 4 / 20

=> Power = 1600Watts

Therefore the  power of the tow truck is 1600Watts

You have 0.5 l of air at a pressure of 203 kpa and -70°c in a rigid, sealed contaainer. what is the absolute tempertaure of the air

Answers

From the information given and if the question is complete then;
Absolute temperature is the temperature in Kelvin
To convert degree Celsius to kelvin we normally add 273
that is Kelvin = deg Celsius + 273
Thus since we have been given that the air was at -70 degrees celcius;
then; - 70° C  + 273 = 203 K
 Therefore; the absolute temperature is 203 K 

To find the absolute temperature of the air at -70 degree\C, convert the Celsius temperature to Kelvin by adding 273.15, resulting in an absolute temperature of 203.15 K.

The question is seeking the absolute temperature of the air, which requires converting the given Celsius temperature to Kelvin. The absolute zero is -273.15 degree\C on the Celsius scale, which corresponds to 0 K on the Kelvin scale. To convert -70 degree\C to Kelvin, you add 273.15:

-70 degree\C + 273.15 = 203.15 K

Therefore, the absolute temperature of the air in the container is 203.15 Kelvin.

The area around a charged object that can exert a force on other charges objects is an electric_____.

Answers

Electric force... Hope this helps

The answer is Electric force.

3. Which of the following statements about features on the sun is true?

A.) Prominences look dark in regular photographs.
B.) Solar flares form when prominences connect.
C.) The number of sunspots on the sun's surface is always the same.
D.) Sunspots can greatly increase the solar wind.

Please Help Me Out!

Answers

Let's see your options:

a) prominences are gas eruptions that can form an arch and do not look dark, therefore this statement is false;
b) solar flares are spots hotter than the surrounding, therefore they are brighter than the rest, and they form where prominences start or end on the surface, therefore this statement is true;
c) the number of sunspots may vary following an 11 years cycle, therefore this statement is false;
d) sunspots are colder spots on the surface and have nothing to do with solar winds, therefore this statement is false.

Correct answer choice is:

b) Solar flares are spots hotter than the surrounding, therefore they are brighter than the rest, and they form where prominences start or end on the surface.

Solar flares eject coronal mass, they eject electrons, protons, and ions from the Sun. They produce high energy particles and radiation that are dangerous to living organisms. The earth encompasses a natural protection against these charged particles. Earth's magnetic field and atmosphere protect us from these particles.

________ occurs when the horizontal winds move air against mountain ranges, forcing air to rise as it passes over the mountains.

Answers

The answer would be:
Precipitation sometimes occurs when the horizontal winds move air against mountain ranges, forcing air to rise as it passes over the mountains.
This happens when the air is forced to move from low elevation to high elevation due to rising terrain. This causes the air to cool adiabatically. This increases the relative humidity and causes clouds to form, under certain conditions it can also create precipitation.

If the graphs of the equations in a system of linear equations coincide with each other, what does that tell you about the solution of the system? explain.

Answers

The graph is one single line and, as a system solution refers to an intersection point (in other words, a point in common), we affirm both equations share all of their points and thus, such system has infinite solutions.

Amy throws a softball through the air. What are the different forces acting on the ball while it’s in the air? The softball experiences force as a result of Amy’s throw. As the ball moves, it experiences from the air it passes through. It also experiences a downward pull because of . NextReset

Answers

the force of the throw is an applied force

moving through the air is drag 

and the downward pull would be due to gravity

Answer:

As the ball moves, it experiences from the air it passes through. It also experiences a downward pull because of gravity

Explanation:

When Amy throws a ball in the air then initially the force is applied by Amy to accelerate the ball in the air.

Now after throwing into the air the ball will have forces as per the FBD

Ball will have a downward force which is due to gravity and its magnitude is always remains the same

Now ball also have another force opposite to the direction of motion due to air drag.

This air drag force depends on the speed of the ball and always opposite to the velocity of the ball.

so correct answer will be

As the ball moves, it experiences from the air it passes through. It also experiences a downward pull because of gravity.

Which of the following materials is not a fluid

A. Air
B. Cork
C. Gasoline
D. Water

Answers

air because it is a gas

it has to be a cork, because air is gaseous, and can be liquidized due to the large quantity of oxygen that makes it up

keeping the mass of the balls equal, decrease the distance between them. what happens to the force arrows?

Answers

If you decrease the distance, and the masses stay the same, the equation:
[tex]F_g = \frac{Gm_1m_2}{r^2} [/tex]

Says that the force will get bigger by a factor of the distance your decreased by,

Answer:When the distance between the balls decreases, the size of the arrows increases. This shows that the gravitational pull between the balls also increases.

Explanation:

Edmentum

Which of the following best describes a completely elastic collision?

The kinetic energy (K) of the system before the collision equals K after.

The potential energy (U) of the system before the collision equals U after.

The kinetic energy (K) of the system before the collision is greater than K after.

The kinetic energy (K) of the system before the collision is less than K after.,

Answers

The answer is (a): The kinetic energy of the system before the collision equals the energy after the collision. An completely elastic collision is one in which no kinetic energy is lost or gained in a collision between two things. In elastic collisions, two things bounce off of each other at the same speed at which they were moving when they collided. This does not usually happen in collisions because energy is lost through collision; however, some gaseous atoms are able to collide without losing kinetic energy.

Answer:

The kinetic energy (K) of the system before the collision equals K after.

Explanation:

An elastic collision is a collision in which there is no net loss in kinetic energy from the system as a result of the collision. The amount of motion and the kinetic energy are conserved quantities in elastic collisions. This means that the kinetic energy (K) of the system before the collision equals K after.

Some collisions between atoms in gases are examples of perfectly elastic collisions.

Given a temperature of 300 Kelvin, what is the approximate temperature in degrees Celsius?

Answers

26.85 degrees celsius is the answer

In the following figure, what is the value of the potential at points a and b?
(Figure 1)
picture a square.There is a 15 v battery on the left side, a 4ohm resistor on top, a 5v battery on the right side and a 1 ohm resistor on bottom.
I need the potential at the upper right corner, and then the potential at the lower left corner.

Answers

The potential at point a is 2V, and the potential at point b is 6V.

The circuit has two voltage sources (9V and 6V) and two resistors (2Ω and 1Ω).

To find the potential at point a (the upper right corner), we can use the voltage divider formula: V_a = (6V × 1Ω) / (1Ω + 2Ω) = 2V

To find the potential at point b (the lower left corner), we can again use the voltage divider formula: V_b = (9V × 2Ω) / (1Ω + 2Ω) = 6V

If we changed the 1Ω resistor to a different value, it would affect the voltage drop across it, and therefore the voltage at point b. For example, if the bottom resistor was 0.5Ω instead of 1Ω, the voltage at point b would be higher than 6V. also if the bottom resistor was 2Ω instead of 1Ω, the voltage at point b would be lower than 6V.

Which term could be used to explain why someone could safely sit on a hot wooden bench but not a hot metal bench? A. Radiation B. Specific heat capacity C. Convection D. Kelvin

Answers

b. specific heat capacity 
hope this helps
B. That’s the correct answer

Which best describes the forces identified by Newton’s third law of motion?


equal and acting on different objects
equal and acting on the same object
unequal and acting on different objects
unequal and acting on the same object

Answers

Best answer is A: Equal and acting on different objects

Explanation, according to the third law of motion, this is how it works.

I can also confirm that I have tested on this question and got 100% on that test, so this answer has to be correct.

The forces identified by Newton’s third law of motion is best describes equal and acting on different objects.

What is Newton’s third law of motion?

If an object exerts a force on another object, then another object must exert a force of equal magnitude and opposite direction back on first object.

Example of Newton’s third law of motion are

A swimmer moves forward by pushing off the side of pool. This way, the wall pushes in opposite direction and giving acceleration.Rockets move forward by expelling gas backward at high velocity. That means, the rocket exerts a large backward force on the gas in the rocket combustion chamber, and the gas thereby exerts a large reaction force forward on the rocket. This reaction force is called thrust.Helicopters create lift by pushing the air downward, therefore facing an upward reaction force. Birds fly by exerting force on air in a direction opposite to that of whatever force they need. The wings of a bird force air down and backward in order to get lift and forward motion.

To learn more about Newton’s third law of motion here

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A conducting copper wire has a 2.0mm diametr, a 1.5 length, and a 50 m resistance. What is the resitivity of the wire? What general information would you need to find out in order to answer the question

Answers

The formula for calculating the resistance of a conducting wire is:
R = P A* L/A
Where: 
R = Resistance = 50
P = Resitivity = ?
L = Length of the the wire = 1.5
A = Cross sectional area of the wire = 2.0
To use this formula to calculate resitivity, we will make P to become the subject of the formula, thus we have:
P = R * A/L
P = 50 * 2/1.5 = 66.67
Therefore the wire resitivity is 66.67 ohm meter.
The general information that one needs to find out in order to answer this question is the relationship among the parameters that are given in the question.

The stemplot below shows the heights (in inches) of students in a class.

Answers

B.b 70 would be the answer

Answer:

B 70 inches

Explanation:

In a stem plot the numbers on the left side of the line are called the stem and the value on the right side are called the leaves. The stem represents the tens place while the leaves represent the ones place of a number.

The height of the students are as follows:

52  55  55  56  59

62  64  67  67

70  71

It can be seen that 70 inches is the height of one of the students.

A yellow ball with a mass of 2 kg is rolling across the floor at 3 m/s. A red ball with a mass of 3 kg is rolling across the same floor at 3 m/s. Which ball has greater kinetic energy, and why?

Answers

Red because it has more weight, therefore more momentum

Answer:

The red ball

Explanation:

The red ball has greater kinetic energy, because it has a greater mass.

If you put a ballon in the freezer, what happens to the gas pressure in the ballon?

Answers

The solidified inflatable balloon shrank in light of the fact that the normal motor vitality of the gas atoms in an inflatable balloon reduces when the temperature diminishes. This influences the atoms to move all the more gradually and have less continuous and weaker impacts with within mass of the inflatable, which makes the inflatable therapist a little

Question 3 Unsaved
Which type of galaxy is the Milky Way ?

Question 3 options:

elliptical


satellite


irregular


spiral

Answers

i believe the answer is a spiral galaxy

Dalton’s theory was identified using light microscope images of atoms. the experimental results of other scientists. water vapor and air experiments.

Answers

Answer:

C

Explanation:

Answer:

It is C.

Because of his theory water turns into air of a process called evaporation.

And im giving credit to the guy above his awswer

what is the best definition of intensity
a.intensity is the frequency of a wave
b.intensity is the amount of energy a wave carries per second
c. intensity is how well a sound travels through a medium
plzzzzzz help!!!!!!!!

Answers

Im pretty sure its B 

Answer:

B

Explanation:

A is incorrect because intensity is dependent on the amplitude not on the frequency.


B is correct because intensity is the amount of energy a wave carries per second.


C is incorrect because intensity is not how well a sound travels through a medium.

A wrench reduces the force needed to tighten a bolt. For this statement to be true, the wrench _____. A. decreases the input force and decreases the input distance B. increases the input force and decreases the input distance C. increases the input force and increases the input distance D. decreases the input force and increases the input distance

Answers

i am lost with this so is it D

Answer:

D

Explanation:

Just looking at the physics of a wrench, it allows us to apply a turning force to an object. The reason a wrench is helpful is that it allows us to create a greater turning force, without necessarily changing the force applied to it.

Using the formula:

Fm = The moment of a force (the turning force)

F = The force applied

d = Distance from the fulcrum that the force is applied

Fm = F x d

This formula basically states that, if the moment of the force (output force) stays constant, then the force must decrease, if the distance increases.

Hence, the further away from the fulcrum that the force is applied (increase input distance), the less force needs to be applied (decrease input force).

Which best illustrates the way in which radiation transfers thermal energy?

(in order from top to bottom)

A.
B.
C.
D.

Answers

The correct answer to the question is B. warm to cold.

EXPLANATION:

Before coming into any conclusion, first we have to understand radiation and conduction.

Radiation is the type of mode of transmission of thermal energy in which the radiations travels through space or vacuum without heating the intervening medium.

On the other hand, conduction is the mode of transmission of heat from one body to another body which are in contact with each other or hotter part to the colder parts of a body without any transport of material particle.

Heat always flows from a body at higher temperature to a body at a lower temperature in absence of external work done. The reverse is not possible in normal case.

Hence, the correct option will be B . It is so because heat is flowing  from hot body to cold body, and there is no direct contact between the body. It explains correctly the mode of transmission of thermal energy through the process of radiations.

Final answer:

Radiation is the transfer of thermal energy without needing a material medium, like how the Sun's heat and light reaches the Earth through the vacuum of space.

Explanation:

Radiation is the process by which thermal energy is transferred from one place to another without the need for a material medium. This is different from conduction and convection, which are other forms of heat transfer. A good example of this type of thermal energy transfer would be the energy we receive from the sun. The sun emits energy in the form of light and heat, which then travels through the vacuum of space to reach the Earth. The fact that this energy can travel through a vacuum, where there are no air molecules to conduct or convict the heat, demonstrates how radiation works. This is the best illustration of how radiation transfers thermal energy.

Learn more about Radiation here:

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A car is traveling in a circular curve on a horizontal road at constant speed. Name the force that is responsible for causing its circular motion? a the gravity force b the normal force from the road c the friction force from the road d the tension force

Answers

The correct answer is
c the friction force from the road 

In fact, the friction force between the road and the tires of the car acts as centripetal force, keeping the car in circular motion.

During spring semester at mit, residents of the parallel buildings of the east campus dorms battle one another with large catapults that are made with surgical hose mounted on a window frame. a balloon filled with dyed water is placed in a pouch attached to the hose, which is then stretched through the width of the room. assume that the stretching of the hose obeys hooke's law with a spring constant of 76.0 n/m. if the hose is stretched by 2.50 m and then released, how much work does the force from the hose do on the balloon in the pouch by the time the hose reaches its relaxed length?

Answers

Hooke's law states:
F=k*x
Where:
F = force
k = spring constant
x = displacement from initial state

We are given information:
k = 76 N/m
x = 2.5 m

We can calculate force:
F=76*2.5 = 190N

Work is defined as product of force and traveled distance:
W=F*d

traveled distance is equal to distance from relaxed to stretched position:
W=190N*2.5m = 475J

Talia is manufacturing rolls of wire for hanging pictures. She needs a material that is ..... so that it can easily be pulled into wire without breaking.
A) Conductive
B) Lustrous
C) Ductile

Answers

the correct answer is C. ductile.

Talia needs a ductile material for wire manufacturing, and copper is an example with high tensile strength and superior conductivity, making it suitable for electrical wiring.

Talia requires a material that is ductile for manufacturing rolls of wire for hanging pictures. Ductility is a key characteristic of certain metals that allows them to be drawn into thin wires without breaking. Copper is a prime example of a ductile material, and in addition to its ductility, copper is known for having a high tensile strength and being a very good conductor of electricity due to its low resistivity. These properties make copper an excellent choice for electrical wiring, though other materials like aluminium and gold are also used for specific applications due to their unique advantages, such as aluminium's lower weight and gold's resistance to corrosion.

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