People who view society as a set of interrelated parts that work together to produce a stable social system are said to employ the
a.
manifest function.
c.
interactionist perspective.
b.
theoretical perspective.
d.
functionalist perspective.

Answers

Answer 1

The people who see society as a collection of interconnected components that cooperate to create a stable social order are said to use a Functionalist Perspective. Hence, option D is correct.

What is a Functionalist Perspective?

Each component of society is interrelated and contributes to the stability and smooth operation of society as a whole, according to the functionalist perspective in sociology. For instance, the government pays for the education of the family's children, who then pay taxes that the state needs to function.

In other words, the family depends on the school to assist kids in getting decent careers as adults, so they can support and raise their own families.

If everything works out, society's constituent elements provide production, stability, and order. If things do not go as planned, the components of society must then adjust to reestablish a new order, stability, and productivity. 

Hence, the people who see society as a collection of interconnected components that cooperate to create a stable social order are said to use a Functionalist Perspective.

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Related Questions

According to statistics, currently there are approximately __________ drug users living in the United States.
A. 22 million
B. 15 million
C. 10 million
D. 5 million

Answers

A. 22 Million...........................................................

                                              

How long would it take to drive around earth's equator? (earth's circumference ≈ 40,000 km if driving at 143km?

Answers

The distance traveled is the circumference of the earth (around the equator). This distance is
d = 40,000 km

The average traveling speed is
V = 143 km/h
Note: Speed cannot have units of 143 km, as given in the question.

Because distance = Speed * time, therefore
time = distance/speed.

The time taken to travel around the equator is
time = (40,000 km)/(143 km/h)
        = 279.7 hours

Answer: About 280 hours (nearest hour)

Final answer:

To calculate the time it would take to drive around Earth's equator at a speed of 143 km/h, you use the formula t = d/v, resulting in approximately 279.7 hours. This is an ideal, theoretical scenario.

Explanation:

The question is asking how long it would take to drive around the Earth's equator if you were driving at 143 km/h, given that the Earth's circumference is approximately 40,000 km. To solve this, we will use the formula for speed which is v = d/t, where v is the velocity or speed, d is the distance, and t is the time.

To find the time, we rearrange the formula to t = d/v. Plugging in the values, we get t = 40,000 km / 143 km/h. This calculates to approximately 279.7 hours. However, this is an ideal scenario, ignoring factors such as the need for stops, variations in speed, and the impossibility of driving continuously around the equator due to oceans and other geographic barriers.

This diagram shows the magnetic field lines near the ends of two magnets. There is an error in the diagram.


Which change will correct the error in the diagram?
A-changing the N to S
B-Reversing the arrows on the left point toward the N
C-Changing the S to N
D-reversing the arrows on the right to point toward the S

Answers

i believe the answer is c

Answer:

C-Changing the S to N

Explanation:

As we know that magnetic field lines originated from North pole of magnet and then terminate into the south pole of magnet.

Now if we put similar poles of magnet in front of each other then we can say that the magnetic field lines of two poles will repel each other and due to this two similar poles have repulsion force.

Similarly if two different poles of magnet will place in front of each other then the magnetic field lines will originate from north pole and terminate at south pole.

This will show attraction force between the poles of magnet.

Now we can see the figure that magnetic field lines are originating from both poles here as well as these lines are repelling each other.

So here both poles must have North pole

So correction here must be

C)-Changing the S to N

As a solid element melts, the atoms become __________ and they have __________ attraction for one another. more separated, more more separated, less closer together, more closer together, less larger, greater

Answers

The complete statement is 

As a solid element melts, the atoms become more separated and they have less attraction for one another. 

Let me explain to you how this happens. In solid phase. Its molecules are arranged in a very compact manner that is why it takes a definite shape and volume. When it is heated, the kinetic energy of the molecules increases. This is characterized by more frequent collisions. The rise in temperature causes the molecules to move rapidly by vibrating. When it reaches an amount of energy that causes the solid to change phase, this is called the latent energy. The molecules break their form and move farther away from each other until it resembles that of a liquid melting. At this point, the molecules would have lesser attraction because of the distance between them.

How do noise canceling headphones work

Answers

Noise-canceling in headphones works from a combination of microphones, electronic circuitry, and speakers to reduce or eliminate external sounds.

A more tranquil and immersive listening experience is achieved with noise-canceling headphones, which use a mix of speakers, electronic circuitry, and microphones to decrease or completely remove outside noises.

This noise-cancellation procedure is performed in real-time, continuously modifying the anti-noise signal as the outside noise changes. Consequently, low-frequency disturbances like background chatter, air conditioner humming, and motor noise can be significantly reduced with the help of active noise-canceling headphones.

On the ear cups or earbuds of active noise-canceling headphones are small microphones. These microphones capture ambient and background noise from the outside world.

The noise-canceling circuitry in the headphones receives the noises captured by the microphones and cancels them out. This circuitry analyses the sound signals to find undesired outside noise.

Hence, noise-canceling in headphones works from a combination of microphones, electronic circuitry, and speakers to reduce or eliminate external sounds.

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Fluid clutches are used on equipment that is subjected to?

Answers

Fluid clutches are used on equipment that is subjected to higher torque per unit volume. This type of clutch makes use of an incompressible fluid like oil in order to transfer the input of a movement from a pedal and cylinder to an actuating cylinder. Releasing the this clutch would stop the transfer of power but still allowing the engine to turn continuously. 

Final answer:

Fluid clutches are used on equipment that is subjected to various loads and forces. In physics, fluid mechanics is the study of how fluids behave under different conditions, including how they transmit forces and pressures. Hydraulic systems, which use fluid clutches, are a key application of fluid mechanics in engineering.

Explanation:

Fluid clutches are used on equipment that is subjected to various loads and forces. In physics, fluid mechanics is the study of how fluids behave under different conditions, including how they transmit forces and pressures. Hydraulic systems, which use fluid clutches, are a key application of fluid mechanics in engineering.

For example, in heavy machinery like backhoes, hydraulic and mechanical lever systems, powered by fluid clutches, are used to transfer forces and lift heavy loads. These systems can increase or decrease the force applied to them by controlling the pressure and area of the fluid.

A plane can fly 600 miles in the same time as it takes a car to go 120 miles. if the car travels 120 mph slower than the plane, find the speed of the plane.

Answers

The answer is attached.

If the electric field is 12 v/m in the positive x-direction, what is the potential difference between the origin, (0, 0), and the point (3.0 m, 4.0 m)?

Answers

In electromagnetism, an electric field is induced between two oppositely charged parallel plates. This electric field is a consequence of the difference of the potential energy of the plates and the distance between them. The equation is E =V/d, where E is the electric field in volts/m or Joules, V is the voltage of the potential difference in volts, and d is the distance between the plates in meters.

First, we substitute the distance through the distance formula

d = √[(x2-x1)^2+(y2-y1)^2]
d = √[(3-0)^2+(4-0)^2]
d = 5 meters

Substituting the values:
E = V/d
12 = V/5
V = 60 volts
Final answer:

The potential difference between the origin and (3.0 m, 4.0 m) in an electric field of 12 v/m is 36 V, pointing in the direction opposite to the electric field.

Explanation:

The potential difference (ΔV) between two points in an electric field can be calculated using the formula: ΔV = -E x (Xf - Xi), where E is the electric field strength, and Xf and Xi are the final and initial positions, respectively. In this case, the electric field is in the positive x-direction and given as 12 v/m, and the point of interest is (3.0 m, 4.0 m). However, because the electric field is only in the x-direction, the y-coordinate does not affect the outcome.

So, Xf = 3.0 m (the x-coordinate of the point) and Xi = 0 (as we're calculating the potential difference from the origin).

Substituting the given values into the equation, we get ΔV = -12 v/m x (3.0 m - 0) = -36 V.

The negative sign indicates that the potential decreases in the direction of the electric field. So, the potential difference between the origin and the point (3.0 m, 4.0 m) is 36 V, in the direction opposite to the electric field.

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Which statement about human behavior would William James support

Answers

If these were the given choices:
Individuals can adapt their behavior to their environment. 
Behaviors are learned and reinforced by one's environment. 
Personalities are influenced by unconscious conflicts and desires. 
Individuals desire personal growth in order to reach their full potential

My answer would be:
INDIVIDUALS CAN ADAPT THEIR BEHAVIOR TO THEIR ENVIRONMENT.

William James had a theory about happiness. He believed that happiness is based on our free will. Being happy is not dependent on our social or biological background, rather it is based on our own decision to achieve happiness in our lives. 

Answer:

Individuals can adapt their behavior to their environment.

Explanation:

I just know (;

Who makes sure that planes fly in and out of airports safely and do not run into each other in the skies?

Answers

The correct answer to this is:

“Air traffic controllers”

These people are the personnel who is responsible for the safety, orderly, and swift flow of planes flying in and out of airports using the global air traffic control system. They are generally stationed in air traffic control centers and control towers on the airport ground. They monitor the position, speed, and elevation of aircraft in their designated airspace visually and by radar, and give directions to the pilots by radio.

 

A ball is thrown from ground level so as to just clear wall 4m height at distance 4m from wall and falls 14 m from wall . Velocity of ball ?

Answers

Ok, this is a 2d kinematics problem,  the falls 14 m part is confusing, I think it means in the x direction, but you don't need it anyway.

If we know it goes 4m into the air, we know  d = 4m (height of wall), we also know the acceleration a=-9.8m/s^2 (because gravity) and that the vertical velocity when it just clears the wall will be 0 m/s, which we'll call our final velocity (Vf). Using Vf^2 = Vi^2 +2a*d, we can solve this for Vi and drop Vf because it's zero to get: Vi = sqrt(-2ad), plug in numbers (don't forget a is negative) and you get 8.85 m/s in the vertical direction. The x-direction velocity requires that we solve the y-direction for time, using Vf= Vi + at, we solve for t, getting t= -Vi/a, plug in numbers t= -8.85/-9.8 = 0.9 s. Now we can use the simple v = d/t (because x-direction has no acceleration (a=0)), and plug in the distance to the wall and the time it takes to get there v = (4/.9) = 4.444 m/s, this is the velocity in the x direction, we use Pythagoras' theorem to find the total velocity, Vtotal = sqrt(Vx^2 + Vy^2), so Vtotal = sqrt(8.85^2+4.444^2) = 9.9m/s. Yay physics!

1. What 2 things can you check prior to starting your car to evaluate if it is safe to drive?

Answers

1) Check under the car for obvious leaks
2) Check fluids in the car periodically
Extra) Check Tire pressure/see if there is any damage to the tires
Check for leaks and tire pressure

Compared with a force, a torque involves

Answers

A rotational movement.

When the temperature of a coin is raised by 79 °f, the coin's diameter increases by 1.90 × 10-5 m. if the original diameter is 1.55 × 10-2 m, find the coefficient of linear expansion?

Answers

You should use next formula:

L=L0(1+αt) ⇒ α = (L-L0-1)/t

but check numbers, because according to this what you wrote in your question, the coin has 1000 times less diameter after the temperature increase.

The coefficient of linear expansion of the coin be 1.55 × 10 ^-5 /°f.

What is thermal expansion?

The phenomena known as thermal expansion can be seen in solids, liquids, and gases. In this procedure, the application of heat causes an object or body to expand (temperature). The term "thermal expansion" refers to an object's propensity to change its dimensions as a result of heat, including length, density, area, and volume. The substance's kinetic energy increases when it is heated.

Given that:

the original diameter of the coin: l = 1.55 × 10^-2 m.

Increase in temperature: Δt =  79 °f.

Increase in diameter of the coin: Δl = 1.90 × 10^-5 m.

So,  the coefficient of linear expansion: α = Δl/(lΔt )

=  1.90 × 10^-5 m/( 1.55 × 10^-2 m × 79 °f)

= 1.55 × 10 ^-5 /°f

Hence, the coefficient of linear expansion  be 1.55 × 10 ^-5 /°f.

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How much heat transfer occurs from a system, if its internal energy decreased by 150 j while it was doing 30.0 j of work?

Answers

In this case we apply the concepts in thermodynamics. When it comes to intensive properties like internal energy (U), heat transfer (Q) and work (W), there are already derived relationships for this which were based on differential equations. The equation is

ΔU = Q + W

But we should remember to incorporate their signs because these parameters are dependent on these. According to Van Ness, Smith and Abbott, the sign convention for decreasing is negative. For work, the sign is positive if it is work ON the system, but negative if it is work done BY the system. So, in this case,

ΔU = -150 J
W = - 30 J

Then, we can determine Q.

-150 J = Q - 30 J
Q = - 120 J

This means that 120 J of heat was released by the system to the surroundings.

Hence the heat transfer that occurs from a system will be -120 J.

What is heat transfer?

Heat transfer refers to the movement of heat. The flow of heat across a system's boundary is due to a temperature differential between the system and its surroundings.

The given data in  the  problem is;

ΔU is the internal energy -150 J

W is the work fon = - 30 J

Q is the heat transfer that occurs from a system

The internal energy of the system is found as;

[tex]\rm \triangle U = Q + W \\\\-150 =Q-30 \\\\ Q=-120 \ J[/tex]

The heat transfer that occurs from a system will be -120 J.

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Microwave ovens emit microwave energy with a wavelength of 12.9 cm. what is the energy of exactly one photon of this microwave radiation?

Answers

So, the equation that we will use to solve this problem is as follows:
E = hc / lambda where:
E is the required energy
h is Planck's constant = 6.626 × 10^-34 J∙s
c is the speed of light = 3 x 10^8 m / sec
lambda is the wavelength = 12.9 cm

Substituting with these values in the above equation, we can calculate the energy as follows:
E = (6.626 × 10^-34 x 3 x 10^8) / (12.9 x 10^-2) = 1.54 x 10^-24 Joules
Final answer:

The energy of a photon in a microwave is calculated by the Planck-Einstein relation, followed by substituting the given wavelength into the equation: E=(hc)/λ. Then convert the result, if necessary, from joules to electron-volts.

Explanation:

This problem requires knowledge of the relationship between wavelength, frequency, and energy in electromagnetic waves, such as those emitted by a microwave. The energy of a photon is given by the Planck-Einstein relation:

E=hf

where h is Planck's constant (6.62607015 × 10⁻³⁴ Js), f is the frequency, and E is energy. The frequency can be found from the speed of light (c) and the wavelength (λ) using c = f λ. Thus, E can also be computed as E=(hc)/λ.

For a microwave oven emitting waves of 12.9 cm wavelength, first convert the wavelength to meters: 12.9 cm = 0.129 m. Then substitute this, along with the values for h and c, into the equation to find the solution.

Remember, the resulting energy will be in joules but can be easily converted to electron-volts (eV), if necessary, as 1 eV = 1.602 x 10⁻¹⁹ J

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What causes a regular reflection?

A. Light waves strike a rough, uneven surface at a 45 degree angle and are reflected back at a 90 degree angle.

B. Parallel light waves strike a smooth, polished surface and reflect back in the same direction.

C. Parallel light waves strike a rough, uneven surface and reflect in different directions.

D. Light waves strike a smooth, polished surface at a 90 degree angle and are reflected back at a 45 degree angle.

Answers

The answer is B. A regular reflection is when a beam of parallel light rays hits a smooth and plane surface and reflects back parallel as well.

Answer:

Option B. Parallel light waves strike a smooth, polished surface and reflect back in the same direction.

Explanation:

Thinking process:

Light possess a dual nature. It has got wave properties as well as particle (electron-like) properties. This means that light travels in pockets or quanta.

When lights hits a smooth shiny surface, it is immediately reflected back. This can be expressed by the wave equation:

[tex]sin i = sin r[/tex]

Where i is the incident ray - the ray that hits the surface

an        r is the reflected ray  - the ray that leaves the surface.

If the surface is polished and even, it means that the angle of incident is equal to the angle of reflection.

Hence option B is correct.

What best describes the significance of albert einstein's famous equation e=mc^2?

Answers

Energy = mass x speed of light squared

Answer:

Scientists used it to develop nuclear power

What is true of electrolytic cells but is not true of galvanic cells?

Answers

they are non-spontaneous 

Answer:

They are Nonspontanious

Explanation:

(APEX)

An electric oven has a resistance of 10.0 Ω and a voltage of 220 V. How much current does it draw? 22 A 2.2 A 220 A 2,200 A

Answers

Final answer:

Using Ohm's Law, the electric oven with a resistance of 10.0 Ω and a voltage of 220 V draws a current of 22 A.

Explanation:

An electric oven with a resistance of 10.0 Ω connected to a voltage of 220 V will draw a current that can be calculated using Ohm's Law, which is I = V/R, where I is the current, V is the voltage, and R is the resistance.

Applying the values, we have I = 220 V / 10.0 Ω = 22 A. Therefore, the oven draws a current of 22 A when operating at 220 V.

What should sportsman always consider when hunting from a boat?

Answers

Hunting from a boat is very enjoyable but a sportsman should consider these things when hunting from a boat, to make the hunting successful and safe.
Safety: hunting from the boat can be dangerous, safety is one of the important thing. So, safety measures put in first place.
Communication means: if boat goes to deep water, before getting any problem, one should have many types of means of communication.
Hunting tools: you should keep different types of hunting tools.
One should know the kind of water, keep food with you and should know all the directions about it.

Answer:

Most accidents happen in open motorboats 16 feet or less.

If an engine operates on an input temperature of 800k and an exhaust temperature of 600k, calculate the efficiency of the engine.

Answers

The efficiency of a heat engine can be calculated as the ratio of the work obtained to the heat energy put in at the high temperature,
efficiency = Work_max/Thigh.  
or
efficiency=TH-TL/TH,
where TH is the high temperature and TL is the low temperature.
In our case the heat engine operates between 600K and 800K. SO, TH=800K and TL=600K.
The efficiency is: e=800-600/800=200/800=0,25

Answer:

25.0 %

Explanation:

If there's nothing faster than light, how did the dark get there first

Answers

It is true that the fastest matter in the universe is light which travels at a speed of 300 million meters per second. Dark is actually the absence of light. Hence, the dark does not travel. It is a vacuum space that appears to be dark because there is no light. In other words, the dark is dependent on light. If there is no light, there is no entity such as dark.

The bearing of a ship from a lighthouse was found to be n14 degrees14°e. after the ship sailed 7.27.2 miles dueâ south, the new bearing was n31 degrees31°e. find the distance between the ship and the lighthouse at each location.

Answers

To solve this problem, let us first assign some reference points. Let us say that initial position of the ship is called point A while the final position is called point B. While the position of the light house is called point L. Together they form a triangle.

 

The angles are:

angle LAB = 14°

angle ABL = (180 – 31)° = 149°

 

The lighthouse is at L.
The ship sails 7.2 miles to B.

 

We see that angle angle ALB = 180 – angle LAB – angle ABL

Therefore

angle ALB = 180 – 14 – 149 = 17°

 
Now in the triangle ABL, we use the Law of Sines:

 

AL / sin 149 = 7.2 / sin 17

AL = 12.68 miles

BL / sin 14 = 7.2 / sin 17

BL = 5.96 miles

The question requires using bearings and trigonometry to calculate distances between a ship and a lighthouse at two points in time. We form two right-angled triangles with common sides, representing the initial distance, and apply trigonometric functions to solve the distances.

The question involves finding the distance between a ship and a lighthouse at two different locations using bearings. Initially, the bearing of the ship from the lighthouse is N14°E. After the ship travels 7.2 miles due south, the bearing from the lighthouse becomes N31°E. To solve this, you can create two right-angled triangles sharing a common side (the initial distance from the lighthouse) - the first triangle for the initial position and the second for the position after the ship's southward journey. You can then use trigonometry to solve for the distances.

To find the initial distance, consider the bearing N14°E as the angle from due north. This implies the ship is east of the lighthouse. Apply the cosine of 14° to calculate the adjacent side, which represents the initial distance from the lighthouse to the ship. Similarly, for the new bearing of N31°E, after sailing due south, the ship will be further east. Use the cosine of 31° for calculating the new distance to the lighthouse. These calculations will require the use of a calculator.

Using the new position distance and the southward travel of 7.2 miles, it is also possible to calculate the initial distance to the lighthouse before the ship moved southwards. Add the distances traveled eastward from the two positions of the ship to find this initial distance.

A 900-N lawn roller is to be pulled over a 5-cm (high) curb. Radius of roller is 25 cm. What minimum pulling force is needed if angle made by handle is (a) 0 deg (b) 30 degrees?

Answers

Final answer:

When the handle angle is 0 degrees, no minimum pulling force is needed. When the handle angle is 30 degrees, the minimum pulling force needed is 36,000 N.

Explanation:

To calculate the minimum pulling force needed to pull a 900-N lawn roller over a 5-cm curb, we can use trigonometry and the concept of work. The work done to lift the roller over the curb is equal to the force applied multiplied by the distance moved in the direction of the force. Since the force is perpendicular to the direction of motion when the handle angle is 0 degrees, no work is done.

Therefore, no minimum pulling force is needed. When the handle angle is 30 degrees, the work done is equal to the force applied multiplied by the vertical distance lifted. Using trigonometry, the vertical distance lifted is given by 5 cm multiplied by the sine of 30 degrees, which is 2.5 cm (or 0.025 m). Therefore, the minimum pulling force needed is the work done divided by the distance moved, which is 900 N divided by 0.025 m, equal to 36,000 N.

When an electron moves 2.5 m in the direction of an electric field, the change in electrical potential energy of the electron is 8x10-17j. what is the strength of the electric field that causes the change in potential energy?

Answers

In the field of electromagnetism, when two charged plates that are situated opposite to each other by a certain distance, it forms an energy called the electric field. This energy is due to the difference in potential energy with respect to distance. Thus,

E = V/d

However, the voltage in volts is energy per coulomb. Thus,
V = (8x10-17 J/electron)*(1electron/1.60218x10^-19 C)
V = 499.32 volts

Therefore,

E = 499.32 volts /2.5 m
E = 199.73 N/C

The electric field that caused the change in potential energy is equal to 199.73 Newtons per Coulomb.

What would be your estimate of the age of the universe if you measured a value for hubble's constant of h0 = 30 km/s/mly ? you can assume that the expansion rate has remained unchanged during the history of the universe. express your answer using two significant figures. yr?

Answers

First, let's define the units of the Hubble's constant. It is kilometers per second per million light year. Light year is the length of time for the light to travel. Hence, we can use the light year to find the distance travelled by using the speed of light which is equal to 300,000,000 m/s or 300,000 km/s. 1 million light year is equal to 1.314 x 10^12 seconds.

d = s/t = 300,000 km/s ÷ 1.314 x 10^12 s = 3.942 x 10^17 km

Through dimensional analysis:

(3.942 x 10^17 km / 1 MLY) * (1/30km/s/MLY) = 1.314x 10^16 seconds = 10 billion years

When the net force that acts on a hockey puck is 12 n, the puck accelerates at a rate of 48 m/s2. determine the mass of the puck?

Answers

Given:
Applied force = 12 N
Acceleration = 48 m/s²

If the mass is m kg, then 
(12 N) = (m kg)*(48 m/s²)
Therefore
48m = 12
    m = 0.25 kg

Answer: 0.25 kg

You may have noticed that when water boils you can see the bubbles that rise to the surface of the water.. what is inside these bubbles?

Answers

The evaporation point of water at atmospheric condition is 100°C. Evaporation is a process by which the liquid phase water is transformed into gaseous phase. This means that at this point, the water starts to form bubbles. 

The formed bubbles are water vapor (gaseous phase). Because it has lesser density than liquid water, it rises to the topmost part of the layer. 

The bubbles that form and rise when water boils contain primarily water vapor. When the temperature reaches 100°C, the vapor pressure inside the bubbles equalizes with the atmospheric pressure, causing them to rise. This process is what we observe as boiling.

When water boils, you can see bubbles that rise to the surface. These bubbles contain water vapor. At lower temperatures, like 20°C, the bubbles start with some dissolved air and water vapor. As the temperature rises to boiling point (100°C), the amount of water vapor inside the bubbles increases because the vapor pressure reaches 1.00 atm, equalizing with atmospheric pressure. This causes the bubbles to grow and rise to the surface, where they burst, releasing water vapor into the air.

The number of significant figures in the measurement 0.000 305 kg is

six.

two.

seven.

three.

Answers

Three significant figures

We have that from the Question"The number of significant figures in the measurement 0.000 305 kg is " it can be said that  The number of significant figures in the measurement 0.000 305 kg is

3Option D

From the Question we are told

The number of significant figures in the measurement 0.000 305 kg is

six. two. seven. three.

Generally the rule of significant number state that

Leading zeros are NOT significant.

Therefore

We cont all none zero number

We have

X=3

Therefore

The number of significant figures in the measurement 0.000 305 kg is

3Option D

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