m = 14.24706 grams, = 0.003 grams. (uncertainty) in = 7.35 kg = 4*10-1kg (uncertainty) (show all work)

Answers

Answer 1

The density of the object is 1.940 g/L with an uncertainty of 4.08*10^-7 g/L.

We want to calculate the density (ρ) of an object with mass m and uncertainty Δm, and volume V.

The formula for density is:

ρ = m/V

To find the uncertainty in density, we use the formula:

Δρ = |(∂ρ/∂m)Δm|

where ∂ρ/∂m is the partial derivative of density with respect to mass, and | | denotes absolute value.

Taking the partial derivative of the density formula with respect to mass, we get:

∂ρ/∂m = 1/V

Substituting the given values, we get:

m = 14.24706 g

Δm = 0.003 g

V = 7.35 kg = 7350 cm^3 = 7.35*10^6 mm^3 = 7.35*10^9 μm^3

So, the mass is known to three decimal places, and the volume is known to nine significant figures. We need to round the volume to three decimal places to match the precision of the mass measurement.

V = 7.35*10^9 μm^3 = 7.35*10^3 cm^3 = 7.35 L (rounded to three decimal places)

Substituting these values in the density formula, we get:

ρ = m/V = 14.24706 g/7.35 L = 1.940 g/L

To find the uncertainty in density, we use the formula:

Δρ = |(∂ρ/∂m)Δm|

Substituting the values, we get:

Δρ = |(1/V)Δm| = |(1/7.35 L)*0.003 g| = 4.08*10^-7 g/L

Therefore, the density of the object is 1.940 g/L with an uncertainty of 4.08*10^-7 g/L.

Complete question:

WRITE IN PROPER ROUNDED FORM m = 14.24706 grams

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Related Questions

19.Which of the following is the best definition of heat?Select one:a. The amount of energy transferred between 2 groups of molecules at the same high temperatures.b. The amount of energy transferred between 2 groups of molecules at the same low temperatures.c. The amount of energy transferred between 2 groups of molecules at different temperatures.d. All of the above.

Answers

c. The amount of energy transferred between 2 groups of molecules at different temperatures.

Heat transfer is given with a difference of temperatures

A ball rolls off a table and it traveling with a horizontal velocity of 2 m/s and 1 point
has a final vertical velocity of 3 m/s just before it hits the ground. How far
from the base of the table did the ball hit the ground?

Answers

Answer:

The velocity when the ball hits the ground is obtained using v2. 2 = v1. 2 + 2 g Dy with v1=0 and Dy=h. Thus solving for v2 yields 17.1 m/s v2 = 2 g h =.

21 pages·330 KB

Answer:

I e jofh ndoj eohe nc n very nic e

the faster your vehicle moves the less kinetic energy T/F

Answers

The statement is false, the faster the vehicle moves the less the kinetic energy. As fast the thing in motion the highest is kinetic energy.

An object's mass and velocity both affect its kinetic energy. According to the formula for kinetic energy,

KE = 0.5 mv^2, where m is the mass of the object and v is its velocity. As the velocity of an object increases, so does its kinetic energy. This means that a faster-moving vehicle has more kinetic energy than a slower-moving vehicle with the same mass. Kinetic energy has a number of important applications in physics and engineering. For example, in mechanics, it is used to calculate the amount of work that can be done by a moving object and to analyze the behavior of objects in motion. In thermodynamics, kinetic energy is used to describe the thermal energy of particles in a substance, such as the random motion of gas molecules.

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A 0.48-kg ball is thrown with a speed of 8.8 m/s at an upward angle of 36 degrees.
(a) What is its speed at its highest point?
(b) How high does it go? (Use conversation of energy.)

Answers

Answer: (a) The velocity of the ball at its highest point is 10.12 m/s

              (b) The height that the ball goes is 1.13 m.

Mass of ball, m = 0.48 kg

Initial velocity, u = 8.8 m/s

Initial angle, θ = 36°

Using the principle of conservation of energy, the final velocity at the highest point can be found. The potential energy of the ball is converted into kinetic energy at its highest point, where the ball will stop momentarily. Then, we know that the total energy at the top will be equal to the potential energy at the beginning. That is, Initial Potential Energy + Initial Kinetic Energy = Final Potential Energy∴

mgh + 1/2mu² = mgh(max) where h(max) is the maximum height the ball attains. At this point, the kinetic energy will be zero. Therefore,0.5mv² + mgh = mgh(max). Since the kinetic energy of the ball at the top is zero, the total energy at the top of the projectile’s trajectory is the potential energy at the start of the trajectory, which is mgh.∴ v = √(2gh).

This is the velocity at the maximum height.

(a) Speed at its highest point:

Initial velocity of ball, u = 8.8 m/s

Angle made with horizontal, θ = 36°

The vertical component of velocity, v_y = usinθv_y = 8.8 sin 36°v_y = 5.0 m/s

Now using the formula, v = √(u² + v_y²)v = √(8.8² + 5.0²)v = √(77.44 + 25)v = √102.44v = 10.12 m/s

Therefore, the velocity of the ball at its highest point is 10.12 m/s

(b) How high does it go: lets calculate the potential energy at the initial position. Potential energy, Ep = mgh

Ep = 0.48 * 9.8 * 0Ep = 0 J. The total energy at the top will be equal to the potential energy at the beginning. That is, Initial Potential Energy + Initial Kinetic Energy = Final Potential Energy∴ mgh + 1/2mu² = mgh(max). Substituting the values,0.48*9.8*h(max) + 0.5*0.48*8.8² = 0.48*9.8*0hmax = (0.5*0.48*8.8²)/(0.48*9.8)h(max) = 1.13 m.

Therefore, the height that the ball goes is 1.13 m.

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Liquid ammonia flows through a pipe at a mass flow rate of 100
kg/s .
If the cross-sectional area of the pipe is 0.01
m^2, determine the flow rate of momentum through the
pipe.

Answers

The momentum flow rate through the pipe carrying liquid ammonia is 1 × \(10^6\) kg·m/s.

The flow rate of momentum (Ṁ) through the pipe can be calculated by multiplying the mass flow rate (ṁ) by the velocity (v). The speed can be determined using the equation v = ṁ / (ρA), where ρ is the density of the liquid ammonia and A is the pipe's cross-sectional area.

Given:

ṁ = 100 kg/s

A = 0.01 m²

Assuming the density (ρ) of liquid ammonia is 700 kg/m³, we can calculate the velocity (v):

v = ṁ / (ρA)

v = 100 kg/s / (700 kg/m³ × 0.01 m²)

v = 10000 m/s

Now, we can calculate the flow rate of momentum (Ṁ):

Ṁ = ṁv

Ṁ = 100 kg/s × 10000 m/s

Ṁ = 1 × \(10^6\) kg·m/s

Therefore, the momentum flow rate through the pipe is 1 × \(10^6\) kg·m/s.

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The driving force for heat transfer through physical contact between two objects is determined by:_______

Answers

The driving force for heat transfer through physical contact between two objects is determined by: The temperature gradient between the objects.

Briefing :Temperature gradient is what drives heat transfer. When it occurs between two things, this process is known as conduction. The rules of thermodynamics state that, without an external force, heat will move from high-temperature systems to low-temperature systems.Temperature is what drives heat transfer or the passage of heat. A state of higher temperature moves heat into a state of lower temperature. The potential difference or voltage between two terminals or electrodes is what generates electricity.For instance, the antifreeze that runs along the cylinder walls of your car's engine conducts heat from the engine by conduction. This stops your car's engine from overheating.

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Hi, I want to know how to approach how the trajectory of a NASA spacecraft called "Lucy". Can anyone explain it at the pre-college level? If you can't, please tell me what I need to study.
Or Can anyone explain this to me?

Answers

It should be noted that to begin exploring the mission's directives, understanding the scientific objectives of the voyage is imperative.

How to explain the information

The focus of Lucy's exploration aims to study a unique collective of asteroids referred to as Trojan asteroids that revolve around the sun in conjunction with Jupiter. By comprehensively examining these primitive asteroids, scientists hope to uncover critical insights into how our Solar System came into existence.

Once familiar with the pursuable matters at hand during this expedition, learning about the vessel responsible for conducting such research becomes pertinent. Equipped with an array of advanced scientific instruments catered towards thoroughly studying asteroids and solar panels to power its operations, Lucy also boasts flexible trajectory capabilities due to its propulsion system.

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A proton is located at x = 1.0 nm, y=0 nm and an electron is located at x=0 nm, y=4.0 nm. Find the attractive Coulombic force between them.

Answers

The attractive Coulombic force between the proton and electron is approximately 2.3 x 10^-8 N.

To calculate this force, we can use Coulomb's law: F = (kq1q2)/r^2, where F is the force, k is Coulomb's constant, q1 and q2 are the charges of the two particles, and r is the distance between them. Plugging in the values, we get F = (9x10^9 Nm^2/C^2)(1.6x10^-19 C)*(-1.6x10^-19 C)/(4x10^-18 m^2) = -2.3x10^-8 N. The negative sign indicates that the force is attractive.

In summary, the attractive Coulombic force between the proton and electron is -2.3 x 10^-8 N, which is found using Coulomb's law and the charges and distances given in the problem.

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if the total magnification using a microscope is 800x and the objective magnifies the object 40x, what would the magnification be from the lens in the ocular?

Answers

The ocular microscope magnification is 20x.

We need to know about microscope magnification to solve this problem. Microscope is a device utilized for seeing a small object. The microscope has two lenses which are objective and ocular. The total magnification of the microscope lens is

M = Moc x Mobj

where M is total magnification, Moc is ocular magnification and Mobj is objective magnification.

From the question above, we know that

M = 800x

Mobj = 40x

By substituting the following parameter, we get

M = Moc x Mobj

800 = Moc x 40

Moc = 800 / 40

Moc = 20x

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would you expect your experimental measurements of 8 to be more precise if you used a tuning fork with large f or small f? explain.

Answers

The precision of an experimental measurement is determined by the smallest possible increment of the measuring instrument. In the case of a tuning fork, the frequency of the fork is the quantity being measured.

If a tuning fork with a larger frequency (f) is used, the resulting oscillations will be more rapid, and the time period between successive oscillations will be shorter. Therefore, measuring the frequency of a high-frequency tuning fork requires a more precise measurement of time. This could lead to a less precise measurement of the frequency because measuring short time intervals accurately can be challenging.

On the other hand, if a tuning fork with a smaller frequency (f) is used, the resulting oscillations will be slower, and the time period between successive oscillations will be longer. Measuring the frequency of a low-frequency tuning fork is less sensitive to small variations in time measurements. Therefore, using a low-frequency tuning fork may result in more precise measurements of the frequency.

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a solid iron sphere and a solid lead sphere of the same size are each suspended by strings and are submerged in a tank of water. Which of the of the following statements are valid? (more than one may be correct). (A) the buoyant force on each is the same. (B) the buoyant force on the lead sphere is greater than the buoyant force on the iron sphere because lead has the greater density. (C) The tension in the string supporting the lead sphere is greater than the tension in the string supporting the iron sphere. (D) the buoyat force on the iron sphere is greater than the buoyant force on the lead sphere because lead displacees more water. Please explain why or why not for each choice.

Answers

According to Archimedes' principle, the buoyant force experienced by an object submerged in a fluid is equal to the weight of the fluid displaced by the object. The correct statement is (A)

The magnitude of the buoyant force depends solely on the volume of the fluid displaced, not on the material or density of the object itself.

In this scenario, both the iron sphere and the lead sphere are of the same size, meaning they displace the same volume of water. Consequently, the buoyant force acting on each sphere is equal. The buoyant force on each is the same, as the weight of displaced water is equal for both spheres of the same size.  Therefore, the only correct statement is (A) .

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1. What is the kinetic theory?

2. What happens to a bimetallic strip when it is placed in heat?

3. Describe two applications of a bimetallic strip.

Answers

Answer:

1 =The kinetic theory of gases is a simple, historically significant model of the thermodynamic behavior of gases, with which many principal concepts of thermodynamics were established. The model describes a gas as a large number of identical submicroscopic particles, all of which are in constant, rapid, random motion.

2 =When this bimetallic strip is heated, the brass expands more than the steel and the strip curves with the brass on the outside. If the strip is cooled, it curves with the steel on the outside.

3 =Bimetal strips are also used in time-delay relays, gas oven safety valves, thermal flashers for older turn signal lamps, and fluorescent lamp starters.

Define what velocity means.

Answers

Answer:

The velocity of an object is the rate of change of its position with respect to a frame of reference, and is a function of time. Velocity is equivalent to a specification of an object's speed and direction of motion (e.g. 60 km/h to the north).

The figure below shows the position of an object as a function of time. At which times is the particle moving to the right?

The figure below shows the position of an object as a function of time. At which times is the particle

Answers

Assuming that A represents movement to the right and -A movement to the left, we would have that the times at which the particle ismoving to the rigth are:

t = 0, 4, 8

A
heat engine is measured to have 30% efficiency. Is the theoretical
efficiency going to be greater or less than that? Why?

Answers

The theoretical efficiency is greater than that of the actual efficiency of the engine. This is because heat engine always produces some waste heat.

The Second Law of Thermodynamics states that a heat engine cannot be 100% efficient. In practice, a heat engine is only 100% efficient when it is operating at about 30-50% efficiency.

If we were to multiply this by 100, we would get the efficiency as a percent: 49%. This is the theoretical maximum efficiency. If we were to actually build an engine, it would be less efficient than the theoretical engine. The theoretical engine that can achieve this theoretical maximum efficiency is called the Carnot Engine.

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Which substance can be identified as a homogeneous mixture?
A. chocolate milk
B. pepperoni pizza
C. chocolate chip cookie
D. peanut butter sandwich

Answers

Answer:

Chocolate Milk

Explanation:

because the composition is uniform throughout the mixture.

can someone help me and give me the right answer

can someone help me and give me the right answer

Answers

Answer:

C. sedimentary

Explanation:

Answer:

Sedimentary

Explanation:

Igneous rock- A rock that's formed through the cooling and solidification of magma or lava.

Metamorphic rock- A rock that starts out as another rock and often has a striped appearance.

Volcanic rock- A rock that's formed from lava that erupted from a volcano.

Sedimentary is the only right answer. A Sedimentary rock is a rock thats made from the deposition of lots of pieces of eroded rock particles.

If Speed = Distance / Time, then a marble rolling 49 cm in 7 seconds is
moving at
343 cm/s
.142 cm/s
7 cm/s
not moving at all.

Answers

Distance = 49

Time = 7

49/7 = 7

7 CM/S

How to calculate specific heat.

Answers

Need more information to answer this question

What is the weight of a truck that has a mass of 3500kg?
Please help me!! I will mark u brainliest if u answer me!!!

Answers

Answer:

7716.179 pounds? Are you asking for a conversion or something different?

a vertical spring of spring constant 115 n/m supports a mass of 75 g. the mass oscillates in a tube of liquid. if the mass is initially given an amplitude of 5.0 cm, the mass is observed to have an amplitude of 2.0 cm after 3.5 s. by neglecting the buoyant force, estimate the damping constant b.

Answers

By neglecting the buoyant force and using the given information, we estimate the damping constant (b) for this mass-spring system to be approximately 0.066 kg/s.

To estimate the damping constant (b) for a mass-spring system, we can use the following steps:

1. Calculate the angular frequency (ω) of the system using the spring constant (k) and mass (m):
ω = sqrt(k/m)

2. Determine the decay constant (α) using the initial amplitude (A0) and final amplitude (A) after time (t):
α = (1/t) * ln(A0/A)

3. Calculate the damping constant (b) using the angular frequency (ω) and decay constant (α):
b = 2 * m * α

Let's apply these steps to your problem:

1. Convert mass to kg: m = 75 g = 0.075 kg
ω = sqrt(115 N/m / 0.075 kg) ≈ 39.1 rad/s

2. Calculate decay constant (α):
α = (1/3.5 s) * ln(5.0 cm / 2.0 cm) ≈ 0.44 s^(-1)

3. Estimate the damping constant (b):
b = 2 * 0.075 kg * 0.44 s^(-1) ≈ 0.066 kg/s

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someone please helppp

someone please helppp

Answers

okay, so what i have learned from my experiences with doing school on e.d.g.e.n.u.i.t.y (they won't let me say the website name on here lol) is that after you write an extended response, they show you a sample response as well as these checkboxes which show things they wanted you to have included in your answer. ideally they want you to select all of them, meaning that all of those elements were included in your answer. it's not a matter or right or wrong; none of those checkboxes contain a wrong answer. you just select the ones that apply to your answer, and you won't get penalized if you don't select all of the checkboxes. you don't even have to select any of them. there's been times where my answer has been not at all what it should've been and i just click done without checking any of those boxes because i did not include any of those elements in my response. as long as the box that you wrote your answer in is outlined in green (which yours is, and that means that the computer likes your answer), you will be fine.

i hope this makes sense! it's sort of hard to explain. if you have any questions, just comment and i'll try my best to explain better lol. have a great rest of your day! <3

Create a simple series circuit with a 20-volt battery, one 10.0 ohm resistor, and one 15-ohm light bulb. Set the wire resistivity to "tiny" and the battery resistance to 0.0 ohms What is the current in the circuit? 0.5A 0.4 A 0.8A 1.0 A​

Answers

Answer:

O.8A

Explanation:

Consider a system of two blocks that have masses m1 and m2 . Assume that the blocks are point-like particles and are located along the x axis at the coordinates x1 and x2 as shown (Figure 1) . In this problem, the blocks can only move along the x axis.
Part G
Suppose that v⃗cm=0 . Which of the following must be true?
a. |p1x|=|p2x|
b. |v1x|=|v2x|
c. m1=m2
d. none of the above

Answers

When the velocity of the centre of mass (vcm) is zero, the whole system is either at rest or moving at a steady speed. So, the right answer is (d) none of the above.

Let's look at the choices we have:

a. |p1x| = |p2x|

The object's momentum is given by the equation p = m * v, where m is the object's mass and v is its speed. Only when the mass is the same does the size of the momentum equal the size of the speed. However, the question doesn't say anything about how heavy the blocks are. So, we can't say that |p1x| is the same as |p2x| based on the information we have. So, choice an isn't always the right answer.

b. |v1x| = |v2x|

This choice says that the individual blocks' speeds, v1x and v2x, are the same size. Since the speed of the centre of mass is zero, this means that the blocks are going at the same speed but in different directions. But this doesn't mean that their speeds are the same. The different speeds can be the same size but have opposite signs. So, choice b might not always be true.

c. m1 = m2

The blocks' weights are written as m1 and m2. The question doesn't say anything specific about whether the masses are equal or not. So, we can't say that m1 and m2 are the same based on what we know. So, choice c might not always be true.

d. None of these.

Based on what we've learned so far, we can see that a, b, and c are not always true. So, the right answer is (d) none of the above.

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Which key difference between carbon and silicon makes carbon better suited to forming molecules for living things?

Carbon has the right number of outer electrons to form a wide range of molecules.

Oxidized carbon is a gas at room temperature, rather than a solid.

Carbon has a greater atomic mass, allowing for stronger molecules.

Carbon is a naturally occurring element, so it is readily available.

Answers

Oxidized carbon is a gas at room temperature, rather than a solid is the difference between carbon and silicon which makes carbon better suited to forming molecules for living things and is denoted as option B.

What is Carbon?

This is referred to an element with as symbol of C and an atomic number of 6. It has four valence electrons and is able to form different types of substances by sharing the electrons with other elements which resulting in the formation of a new product.

It also has the ability to form multiple bonds which makes it unique and is present in nature in the form of gas, solids etc and is used by plants to manufacture food during photosynthesis.

Plants are a major source of food for animals and the oxidized carbon which is carbon dioxide which is a gas at room temperature is the reason why they are better suited to form molecules for living things.

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Answer:

B

Explanation:

Want in own words please

What determines whether something is solid or liquid or gas

Answers

Answer:

An object could be determined as solid:

-It doesn't change shape easily.

-when lots of heat applied till melting point, it would melt or thaw (basically turn into liquid).

-turn to pieces or bent when enough force applied to it.

-the molecules attached with each other by strong forces, creating strong bonds.

An object could be determined as liquid:

-It changes shaped based on the container.

-when lots of heat applied till boiling point, it would vaporize

-the molecules have weak bonds, creating a lot of spaces.

-when heat extracted from the liquid till freezing point, it would freeze/hardened (turn into solid)

An object could be determined as gas:

-it doesn't have any shape or form.

-if fills in the container.

-if lots of heat applied, its molecules are going to move, vibrate,and transist faster; increasing pressure and volume.

-The molecules have very weak bonds, creating spacious space.

-when the heat are being extracted till certain freezing point, it is going to turn into liquid, then solid.

A 120 kg statue exerts what force on the Earth? (a = 9.8 m/s²)

Answers

1176 N is the correct answer .

What is acceleration ?

Acceleration is  a measure of how quickly an object changes its velocity, or the rate at which its velocity changes over time. It is a vector quantity, which means it has both magnitude and direction. In physics, acceleration is usually defined as the change in velocity per unit time, and is expressed in units of meters per second squared (m/s^2). Acceleration can result from a change in speed, direction, or both. Objects that are accelerating  are said to be undergoing a net force, and their acceleration is proportional to the magnitude of the force and inversely proportional to their mass.

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The equilibrium [H+] in a 1.0 M HF solution is 2.7 x 10-2 M, and the percent dissociation of HF is 2.7%. Calculate [H+] and the percent dissociation of HF in a solution containing 1.0 M HF (Ka = 7.2 x 10-4) and 1.0 M NaF

Answers

The [H+] in a 1.0 M HF solution with a Ka of 7.2 x 10⁻⁴ is 2.7 x 10⁻² M.

The percent dissociation of HF in a solution containing 1.0 M HF and 1.0 M NaF is 100%.

The dissociation of HF in water can be represented by the equation:

HF + H₂O ⇌ H₃O⁺ + F⁻

where HF is the weak acid, H₂O is the solvent, H₃O⁺ is the hydronium ion, and F⁻ is the conjugate base of HF.

The equilibrium constant for this reaction is the acid dissociation constant (Ka) of HF:

Ka = [H₃O⁺][F⁻] / [HF]

Given that the Ka of HF is 7.2 x 10⁻⁴, we can use this equation to calculate the equilibrium concentrations of H₃O⁺ and F⁻ in a 1.0 M HF solution:

Ka = [H₃O⁺][F⁻] / [HF]

7.2 x 10⁻⁴ = (x)(x) / (1.0 - x)

where x is the concentration of H3O+ and F- at equilibrium.

Solving for x using the quadratic formula, we get:

x = [H₃O⁺] = 2.7 x 10⁻² M

Therefore, the [H⁺] in a 1.0 M HF solution with a Ka of 7.2 x 10⁻⁴ is 2.7 x 10⁻² M.

To calculate the percent dissociation of HF in a solution containing 1.0 M HF and 1.0 M NaF, we need to determine the concentration of HF that has dissociated in the presence of its conjugate base F⁻. This can be done by calculating the amount of HF that has been converted to F- in the solution, using the stoichiometry of the reaction:

HF + NaF ⇌ NaHF₂

At equilibrium, the concentration of F⁻ in the solution will be equal to the concentration of NaF, which is 1.0 M. Therefore, the concentration of HF that has been converted to F- is:

[H⁺] = [F⁻] = 1.0 M

Substituting these values into the equation for the percent dissociation of HF, we get:

% dissociation = ([H+] / [HF]) x 100%

% dissociation = (1.0 / 1.0) x 100%

% dissociation = 100%

Therefore, the percent dissociation of HF in a solution containing 1.0 M HF and 1.0 M NaF is 100%. This is because the presence of a high concentration of F⁻ in the solution shifts the equilibrium towards the side of the reaction that produces HF, increasing its dissociation.

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Which part of the microscope is responsible for enlarging the specimen?
A. magnifying parts
B. illuminating parts
C. mechanical parts
D. supporting parts​

Answers

Answer:

A

Explanation:

magnifying = enlarging something or making it seem bigger

A



The first guy answered right also sorry I kind a need some points

A metre rule is used to measure a length Which reading is shown to the nearest millimetre? A 0.7 m B 0.76 m с 0.761 m D 0.7614 m​

Answers

Answer:A

Explanation:because the smallest measurement is nearest to millimeter so on choose A. 0.7m is the small.

Other Questions
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