A rocket travels in a straight line at a speed of 5000 m/s. After 1 min, it is 10,000 m/s. What is the rocket's acceleration?

Answers

Answer 1

A rocket travels in a straight line at a speed of 5000 m/s. After 1 min, it is 10,000 m/s. 83.33ms⁻² is the rocket's acceleration.

What is an acceleration ?

The rate of change of velocity is defined as acceleration. Acceleration usually indicates that the speed is changing, but this is not always the case. When an object moves in a circular path at a constant speed, it is still accelerating because its velocity direction changes.

Vf = Vo + at

Vf = Final velocity

Vo = Initial Velocity

a = acceleration

t = time required

Making "a" the subject

a = Vf - Vo/(t)

a = 10,000–5,000/(60)

a = 5,000/60

a = 83.33ms⁻²

Thus, 83.33ms⁻² is the rocket's acceleration.

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Related Questions

Which of the following represents the overall chemical equation for the reaction and the rate law for elementary step 2

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H2(g) + 2ICI(g) = 2HCI(g) + I2(g) is the overall reaction  Step 2's rate law is rate = k [HI][ICI]

It is critical to consider not only the chemical properties of the reactants, but also the conditions under which the reaction occurs, the mechanism by which it happens, the rate at which it occurs, and the equilibrium toward which it is progressing in a chemical reaction. The substances that influence the reaction rate are usually one or more of the reactant's side, but products can also be included. Catalysts, which are not included in the balanced chemical equation, can also influence the reaction rate.

For a chemical reaction, the rate law (also known as the rate equation) is an expression that describes the relationship between the rate of the response and the concentrations of the reactants involved.

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The complete question is:

Step 1:

H2(g) + ICl(g) ----------- HI(g) + HCI(g) (slow)

Step 2:

HI(g) + ICI(g) ------------ HCI(g) + I2 (g) (fast)

Which of the following represents the overall chemical equation for the reaction and the rate law for elementary step 2?

A) The overall reaction is H2(g) + 2 ICI(g) --------- HCI(g) + I2(g); the rate law for step 2 is rate = k[H2] [HI] [ICI]

B) The overall reaction is H2(g) + 2 ICI(g) -------- 2 HCI(g) + I2(g); the rate law for step 2 is rate = K[H2][ICI]2.

C) The overall reaction is Ha(g) + ICI(g) --------- HCI(g) + 1(g); the rate law for step 2 is rate = K-[H2][ICI].

D) The overall reaction is H2(g) + 2 ICI(g) ------- 2 HCI(g) + I2 (g); the rate law for step 2 is rate = [K][HI] [ICI]

Heating Curve Question. I tried to be very deliberate solving this problem, but none of my answers - +50, -50, +49.6, etc. - were accpeted and I've just been stuck on this question for a few days. Any help is appreciated, thanks : )

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Answer:

It sounds like the writer's experiences of scouting have had a profound impact on his life. He values the connection with nature and the skills he learnt, as well as the importance of preserving the environment for future generations. He also mentions the words and phrases associated with scouting, which he says can act as a reminder of the experience and the joy he felt during his time in the Scouts. It's clear that the writer values the experiences of scouting and has a strong appreciation for the outdoors.

A ball leaves a girl's hand with an upward velocity of 6 meters per second. What is the maximum height of the ball above the girl's hand?

Answers

The maximum height that is attained by the ball that leaves the hand is 1.8 m.

What is the maximum height?

We know that we can be able to use the equation of the motion of a body that occurs under gravity to be able to obtain the maximum height that has been attained by the ball as it is leaving the hand of the girl.

We would then have that;

v^2 = u^2 - 2gh

v = final velocity

u = initial velocity

g = acceleration due to gravity

h = height of the ball

If v = 0 m/s at the maximum height

u^2 = 2gh

h = u^2/2g

h = (6)^2/2 * 9.8

h = 36/19.6

h = 1.8 m

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in part 1, sort the orbitals in order of energy, with the lowest-energy orbital at the bottom. then in part 2, consider how many of these orbitals are filled with electrons.

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The lowest energy orbital will be closest to the nucleus of an atom. Each and every orbital is filled with electrons in the order: 1s, 2s, 2p, 3s, 3p, 4s, 3d, 4p, 5s, 4d, 5p, 6s, 4f, 5d, 6p, 7s, 5f, 6d, 7p, and so on.

The lowest energy sublevel always be the 1s sublevel, which consists of one orbital. The single electron of an hydrogen atom will be occupy the 1s orbital when the atoms are in its ground state. As we proceed with atoms with multiple electrons, those electrons are added to the next lowest sublevel: 2s, 2p, 3s, and so on. Orbitals will be ranked in the increasing order of orbital energy as follows: 1s < 2s = 2p < 3s = 3p = 3d <4s = 4p = 4d= 4f.

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In the context of a drug misuse, match the types of chemicals (in the left column) with the corresponding definitions of misuse (in the right column)

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As in the context of drug misuse, the following chemical types are linked to their corresponding definitions of misuse:

"Prescription drugs" should be matched with "use of drugs in greater amounts than, or for purposes other than, those prescribed by a physician or dentist." "Nonprescription drugs or chemicals" should be matched with "any use other than the use intended by the manufacturers of those chemicals."

Drug misuse refers to the incorrect or harmful use of a substance, including prescription and over-the-counter drugs, as well as illegal drugs. This can include taking a higher dose than prescribed, using someone else's medication, using a drug for non-medical purposes, or combining drugs in a way that is dangerous. Drug misuse can lead to negative health consequences and may also contribute to the development of a substance use disorder.

Prescription drugs (not in the context of misuse) are medications that are prescribed by a healthcare professional and are intended for use in the treatment of a specific medical condition.

Nonprescription drugs, also known as over-the-counter (OTC) drugs, (not in the context of misuse) are substances that are available for purchase without a prescription. They are used to treat common health issues, such as pain or a headache, but can also be abused. Chemicals refer to any substance, whether natural or man-made, that can be used for a specific purpose, including but not limited to drugs.

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From the formula for calcium acetate,Ca(C2H3O2)2, calculatethe mass of carbon that can be obtained from 65.3 g of thecompound.

Answers

The mass of carbon that can be obtained from 65.3 g of the compound is 19.83 grams of carbon,

First, you should calculate the % of carbon in calcium acetate

% of carbon - (12.01 x 4)/(40.08+12.01 x 4+ 1.008 x 6+16x 4)

% of carbon-48.04/158.168 x 100%

% of carbon 30.37% In 65.3 g of compound,

there are 65.3 x 30.37% -19.83 grams of carbon.

What do you mean by compound?

A object created by joining several different elements or parts. Particularly: a separate substance created by the chemical fusion of two or more substances in a certain weight-to-volume ratio. a fresh antibiotic substance.

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which of the following has the correct curved arrows placement to show resonance for the given allylic carbocation>

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An allylic lone pair is the appropriate positioning for the curved arrows to indicate resonance for the specified allylic carbocation.

What is a carbocation and how does one create one?

The carbocation is indeed an organic molecule that develops when two valence electrons, which are typically shared by two atoms of carbon, are lost from such a carbonyl group that already possesses four bonds. As a result, a carbon atom with three rather than four bonds and a positive charge is created.

What distinguishes a carbocation?

All carbon atoms in carbocations, also referred to as carbonium ions, are positively charged. A ion is indeed a positive charge, and the "carbo" part of the term refers to an atom of carbon.

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write a balanced equation for the synthesis reaction that occurred in experiment 1. include physical states.

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The equation NaCl + AgNO3 => AgCl + NaNO3 incorporates the physical states for the synthesis reaction that took place in experiment 1. Factors are denoted by symbols in chemical equations.

When two or more chemical equations combine in a synthesis reaction, the result is A + B AB. This form makes it easy to spot synthesis reactions because there are more reactants than products. When two or more reactants react, a larger compound is produced depending on the direction of the reaction and the physical characteristics of the reactants. In 1615, chemist Jean Beguin of France formulated the first chemical equation. Chemical processes are present everywhere, beginning with food metabolism.

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How many atoms are in 30.1 L of Water vapor at STP?

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First ⬆️. Second ⬆️

I hope this helps ✌

3. For the carbon in the structure shown, determine the followi
H
(a) Hybridization:
(b) Molecular shape_
(c) Number of electron domains:
(d) Bond Angle:

Answers

The carbon that is SP2 hybridized in the compound is carbon 4 (C4).

What is the hybridization?

When we talk about the hybridization of the carbon atom, we mean the fact that the orbitals that are in the carbon atom are mixed in such a way that the orbitals that have the appropriate energy to be able to participate in the chemical bonds are formed.

As such looking at the compound that we have been shown in the image, we can see that not all the carbon atoms would be at the same state of hybridization.

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Consider the composition. information from the SDS. What is a possible name of this compound?

A. Glycine
B. Glycol
C. Glycogen
D. Glycerol​

Answers

Answer: B

Explanation:

which of the following would decrease the rate of a chemical reaction? adding more reactants stirring the reaction more vigorously squeezing the reactants into a smaller volume increasing the temperature raising the activation energy

Answers

Raising the activation energy would decrease the rate of a chemical reaction.

The rate of a chemical reaction refers to the speed at which the reactants are converted into products. There are several factors that can affect the rate of a chemical reaction, including the concentration of reactants, temperature, and the presence of catalysts or inhibitors.

Adding more reactants would generally increase the rate of a chemical reaction, as there would be more particles present to collide and react. Stirring the reaction more vigorously would also increase the rate of the reaction, as it would increase the chances of successful collisions between reactant particles. Squeezing the reactants into a smaller volume would also increase the rate of the reaction, as it would increase the concentration of reactants and the chances of successful collisions.

On the other hand, increasing the temperature would generally increase the rate of a chemical reaction, as it would increase the kinetic energy of the reactant particles and increase the chances of successful collisions.

However, raising the activation energy would decrease the rate of a chemical reaction, as it would require more energy for the reactant particles to overcome the activation energy barrier and undergo a successful reaction. Activation energy is the energy required to start a chemical reaction.

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define each of the following as atomic element, molecular element, ionic compound, or molecular compound. h2s [ select ] xe [ select ] br2 [ select ] cacl2 [ select ] i2 [ select ] al2s3 [ select ] pb [ select ] no2

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Xe and Pb are atomic elements. I₂ and Br₂ are molecular elements. CaCl₂ and Al₂S₃ are ionic compounds and NO₂ and H₂S are molecular compounds.

Atomic elements are the elements which cannot be broken down further and combine together to form molecules. Among the substances given to us, Xenon (Xe) and Lead (Pb) can be categorised as atomic elements. Molecular elements are formed when the same elements combine with each other. I₂ and Br₂ are molecular elements.

Ionic compounds are consist of ions bound together. CaCl₂ and Al₂S₃ are ionic compounds. Molecular compounds are formed up of two or more elements and NO₂ and H₂S are molecular compounds.

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A freshener is the best choice of tonic lotion for mature or __ skin?

Answers

Answer: A freshener is the best choice of tonic lotion for mature or SENSITIVE skin.

Explanation: The ingredients reduce aging.

the reaction of 2,2-dimethyl-1-propanol, also known by the common name neopentyl alcohol with hbr gives 2-bromo-2-methylbutane as the major product. giving the structures of the reactant and the product of the reaction, show mechanistic explanation for the product of the reaction.

Answers

The reaction of 2,2-dimethyl-1-propanol, also known as the neopentyl alcohol with HBr gives 2-bromo-2-methylbutane as the major product. It is a SN₁-mechanism.

Neopentyl alcohol is a primary alcohol, but the bulky group has hindered it. The backside attack is not possible, so instead of the SN₂ mechanism SN₁ followed to get the desired rearranged product. The reaction will forms a rearranged stable carbocation from the primary carbocation to the tertiary carbocation.

Protonation of the Neopentyl alcohol will converts the hydroxy group into a good leaving group. Water will leaves form a primary carbocation rearranged through the methyl shift, which is thus forming a stable tertiary carbocation. Bromide ion will also attacks the carbocation to form a product 2-bromo-2-methylbutane. Mechanism will showing the formation of 2-bromo-2-methylbutane.

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control of metal-support interactions in heterogeneous catalysts to enhance activity and selectivity

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Control of metal-support interactions (MSIs) in heterogeneous catalysts can enhance both activity and selectivity.

 

MSIs refer to the interactions between the metal catalyst and the support material it is placed on. By fine-tuning the MSIs, the activity of the catalyst can be increased by optimizing the distribution and dispersion of the metal particles. In addition, by controlling the MSIs, the selectivity of the catalyst can be improved, allowing for the production of specific products in a reaction. This is done by manipulating the electronic and geometric properties of the metal-support interface, which affect the adsorption and activation of reactant molecules.

In general, controlling MSIs is a powerful way to make heterogeneous catalysts work better.

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chromium and cadmium can be removed from wastewater by treatment with sodium hydroxide. show the net ionic reactions of cr3 (aq) with naoh(aq) and cd2 (aq) with naoh(aq).

Answers

The following are the net ionic processes for removing chromium (III) and cadmium from wastewater using sodium hydroxide: Sodium hydroxide with chromium (III): Cr3+(aq) + 3NaOH(aq) -> Na3Cr(OH)3.

Cadmium in the presence of sodium hydroxide: Cd2+(aq) + 2NaOH(aq) -> Na2Cd(OH)2. Metal ions react with hydroxide ions in both processes to generate insoluble metal hydroxide precipitates that can be readily removed from the solution. Precipitation is a treatment method that is excellent for removing heavy metal ions from wastewater.chromium and cadmium can be removed from wastewater by treatment with sodium hydroxide. show the net ionic reactions of cr3 (aq) with naoh(aq) and cd2 (aq) with naoh(aq).The following are the net ionic processes for removing chromium (III) and cadmium from wastewater using sodium hydroxide: Sodium hydroxide with chromium (III): Cr3+(aq) + 3NaOH(aq) -> Na3Cr(OH)3.

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Given the density of Au is 19.3 g/cm^{ 3} , determine the mass of gold in an ingot with the dimensions of 10. in x 4.00 in x 3.00 in. Give your answer as a number with correct sig figs only.

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The mass of the gold with the density of 19.3 g/cm³ with dimensions of 10.0 in x 4.00 in x 3.00 in is 38,011.48 grams.

How to calculate mass?

The mass of a substance can be calculated from the density by using the following expression;

Density = mass ÷ volume

According to this question, the dimensions of gold is given as 10.0 in x 4.00 in x 3.00 in. The density of gold is 19.3 g/cm³.

Volume of gold = 10 × 4 × 3 = 120in³

120in³ is equivalent to 1966.45cm³

19.3g/cm³ = mass ÷ 1966.45cm³

mass = 19.3 × 1966.45

mass = 38,011.48 grams.

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The hottest temperature yet recorded in Phoenix, Arizona, was 122 O F on June 26, 1990. IVhat is that temperature in 0 C? In K?

Answers

The temperature in Celsius and kelvin is 50°C and 323.15 K.

The three most used temperature scales for usage in business, science, and daily life are Kelvin, Celsius, and Fahrenheit.

A scale in Kelvin is absolute. There are no degree symbols after its values, which begin at absolute zero.

Both Celsius and Fahrenheit are relative scales. The degree symbol is used to indicate Fahrenheit and Celsius temperatures.

Given the temperature is 122°F

Temperature in Celsius is -

⇒ C = (F - 32)/1.80

⇒ C = (122 - 32) / 1.80

⇒ C = 90 / 1.80

C = 50°C

Temperature in Kelvin is -

K = 5/9(F - 32) + 273.15

⇒ K = 5/9 (122 - 32) + 273.15

K = 323.15 K

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you want to determine the heat of reaction when a sodium chloride solution is formed using a 10.0 g sample of nacl(s) and 50.0 ml of water in a coffee cup calorimeter. which of the following equations would you use? assume the specific heat of the solution is the same as the specific heat of water.

Answers

The heat of reaction when a sodium chloride solution is formed using a 10.0 g sample of NaCl(s) and 50.0 ml of water in a coffee cup calorimeter. The equation is :

E. q = ((60.0 g)(4.18 J/g K)(T f - T i))/(10.0 g/(58.44 g/mol))

Given that :

The mass of the NaCl = 10 g

The volume of sample = 50 mL

The molar heat of the reaction for NaCl ( sodium chloride ) = + 3.9 kJ/mol

The equation for the heat is given as :

q = m c ΔT

Where,

q = heat energy

m = mass

c = specific heat capacity

ΔT = change in temperature

Therefore the equation is given as :

q = m c ΔT

q = ( 50 g + 10 g) (4.184 J/g °C) (T f - T i)

q / mol = q water / mol NaCl

q = ((60.0 g)(4.18 J/g K)(T f - T i)) / (10.0 g/(58.44 g/mol))

The given question is incomplete, the complete question is :

You want to determine the molar heat of solution of sodium chloride using a 10.0 g sample of NaCl(aq) and 50.0 mL of water in a coffee cup calorimeter. Which of the following equations would you use? Assume the specific heat of the solution is the same as the specific heat of water.

A. q = (50.0 g)(4.18 J/g K)(T i - T f)

B. q = ((10.0 g)(4.18 J/g K)(T f - T i))/(10.0 g/(58.44 g/mol))

C. q = (60.0 g)(4.18 J/g K)(T f - T i)

D. q = (60.0 g)(4.18 J/g K)(T i - T f)

E. q = ((60.0 g)(4.18 J/g K)(T f - T i))/(10.0 g/(58.44 g/mol))

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NEED HELP ASAPPPPPPP​

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A color's degree of purity is measured by intensity, commonly referred to as saturation or chroma. While a low-intensity color is more muted or neutral, a very intense hue is dazzling.

What adjectives best characterize a color's intensity?A color's brightness or dullness is determined by its intensity, often known as chroma or saturation. The intensity of a color is maximum when it is displayed on a color wheel (bright). It turns boring when used with white, gray, or black. When blended with their complement, colors also lose intensity (the opposite color on the wheel).A color's degree of purity is measured by intensity, commonly referred to as saturation or chroma. While a low-intensity color is more muted or neutral, a very intense hue is dazzling.A color's degree of purity is measured by intensity, commonly referred to as saturation or chroma.

The complete question is,

What is a hue that is quite intense?

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the linear order of amino acids (blank structure), with the varying properties of their side chains (or blank groups), determines what blank and blank structures will form to produce a protein. the resulting unique blank shapes of proteins are key to their specific and diverse functions.

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The linear order of amino acids (primary structure), with the varying properties of their side chains (R groups), determines what secondary and tertiary structures will form to produce a protein. The resulting unique three-dimensional shapes of proteins are key to their specific and diverse functions.

Amino acids are the building blocks of proteins, and the order of their assembly is known as the primary structure.

Each amino acid has a side chain, or R group, that is composed of different atoms, giving each amino acid a unique property that affects the structure and function of the proteins they create.

Depending on the primary structure and the chemical characteristics of the side chains, proteins can assume a variety of secondary and tertiary structures. It is these unique three-dimensional shapes that enable proteins to carry out their specific and varied functions.

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Deduce the structure of a compound of molecular formula C4H9Br which exhibits the following 1H NMR spectrum.

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The structure C₄H₉Br that is 2-bromo-2-methylpropane , exhibits the ¹H NMR is as follows :

                        CH₃

                          |

              CH₃ - CH - CH₃

                         |

                        Br

In the 2-bromo-2-methylpropnae molecule, all the 9 protons has the same chemical environment and  there no splitting of the ¹H NMR resonance.  All the protons are chemically equivalent, and they will have the same resonance frequency in the NMR.

In the molecule , 9 protons of the 2-bromo-2-methylpropane, as all the hydrogen atoms are having the same chemical environment. In the  the Chemical shift (a) of the 1.80 ppm on the ¹H NMR spectrum for the 2-bromo-2-methylpropane is present.

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The density of air at ordinary atmospheric pressure and 25 ∘C is 1.19 g/L. What is the mass of the air in a room that measures 14.5×16.5×6.0 ft?

Answers

Answer:

40,827.34 g

Explanation:

First find the volume of the room and then multiply it by the density of air at ordinary atmospheric pressure and 25 ∘C.

In this case, the room has a length of 14.5 ft, a width of 16.5 ft, and a height of 6.0 ft.

volume = 14.5 ft x 16.5 ft x 6.0 ft = 1209.25 ft^3

To convert ft^3 to L, we can use the conversion factor 1ft^3 = 28.316846592 L

1209.25 ft^3 = 1209.25 * 28.316846592 = 34,416.99 L

Calculate the mass of the air in the room by multiplying the volume of the room by the density of air:

mass = 34,416.99 L x 1.19 g/L = 40,827.34 g

So, the mass of the air in the room is 40,827.34 g

Explain how to use molecular shapes to predict molecular polarity

Answers

An molecule is polar if the lengths of the arrows differ and they not balance each other.

What is the straightforward meaning of a molecule?

Pay close attention to the sound. the smallest part of a molecular that includes both its physical and chemical properties pronounced (MAH-leh-kyool). Molecules are made up of one or more electrons.

Water: A Molecular or Not?

Molecules are created when atoms come together. Two hydro (H) ions and one oxygenation (O) atom make up the three atoms that make up a water molecule. Because of this, water is occasionally abbreviated as H2O. There are trillions of water molecules in a single drop of liquid.

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a layer of mineral oil is poured on top of a layer of ethylene glycol and a piece from a board game is placed at rest with its midpoint in line with the boundary between the two layers, as shown. the piece remains at rest because the density of the sphere is greater than the density of mineral oil and less than the density of ethylene glycol. earth, the mineral oil, and the ethylene glycol exert forces on the piece with magnitudes fearth , fmineraloil , and fethyleneglycol , respectively. which of the following, where the dot represents the piece, correctly identifies the direction and relative magnitude of these forces?

Answers

The earth's force would be applied to the object (the earth) in a downward direction, toward the planet's centre. The force that the mineral oil would apply to the object (fmineraloil) would be directed

Mineral oil is a liquid that is produced from petroleum and is transparent, colourless, and odourless. It frequently appears in a wide range of consumer and industrial goods, including lubricants, fuels, cosmetics, and personal care products. Mineral oil functions as a moisturiser and occlusive agent in cosmetics and personal care products, helping to stop water loss from the skin. In several applications for food processing, it is also utilised as a lubricant. Despite its extensive use, certain questions have been raised regarding mineral oil's possible negative effects on health, particularly when it is used in cosmetics and personal care items. According to certain research, regular use of products containing mineral oil may cause skin irritation and blocked pores. But there is conflicting da

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Determine the empirical formula of each of the following compounds from the percent composition: a. 7.8% carbon and 92.2% chlorine b. 10.0% C c. 0.80% H, 89.1% Cl

Answers

The empirical formula of a compound with 7.8% carbon and 92.2% chlorine is CCl₄ and that of a compound with 10.0% C, 0.80% H and 89.1% Cl is CHCl₃.

In order to determine the empirical formula of the compounds, we have to divide the percentage by mass of each of the elements by their relative atomic masses and then divide them through the lowest ratio.

Carbon = 7.8%

7.8/12 = 0.65

Chlorine = 92.2%

92.2 / 35.5 = 2.59

Dividing by the lowest ratio,

Carbon  = 0.65/0.65 = 1

Chlorine = 2.59/0.65 = 3.98 ≅ 4

So the empirical formula is CCl₄.

Hydrogen = 0.80%

0.80/1 = 0.80

Chlorine = 89.1%

89.1/35.5 = 2.50

Carbon = 10.0%

10/12 = 0.83

Dividing by the lowest ratio,

Hydrogen = 0.80/0.80 = 1

Carbon = 0.83/0.80 = 1.03  ≅ 1

Chlorine = 2.50/0.80 = 3.1  ≅ 3

So the empirical formula is CHCl₃

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What is the correct reading of the volume in the pictured buret? Make sure to report your reading with the appropriate significant figures. Select one: a. 39.9 mL b. 39.5 mL c. 40.0 mL d. 39.950 mL e. 39.95 mL f. 40.05 mL

Answers

The correct reading of the volume in the pictured burette is e) 39.95 mL. The picture is attached below.

The purpose of the burette reading is to show that how much the solution has been dispensed, not the how much the burette contains. As compared to the volumetric glassware, the zero scale on the burette is written on the top. The Measurement scale on the burette is at the 1.0 intervals.

The intervals can be calculated as :

Intervals = (larger value - small value) / 2

Intervals = 1

The reading will be 39.95 mL.

Thus, according to the picture of the burette, the reading of the burette is the 39.95 mL.

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question mode multiple choice question which one of the following irreversibilities describes the force that opposes the relative motion between two bodies in contact with one another? multiple choice question. friction heat transfer chemical reactions mixing of two fluids

Answers

The force that resists the relative motion of two bodies is referred to as irreversibility. Examples of this include chemical reactions, mixing two fluids, and electrical resistance.

Why do we use the term "chemical"?

Any material with a known composition is a chemical. To put it another way, a chemical always consists of the same "substance." There are some substances in nature, like water. Chlorine and other chemicals are made at factories.

What instances from chemistry?

All of these things are made of chemical, some natural and others synthetic, including air, water, iron, fuel, clothes, stone, equipment, plastics, plants, and food. Chemicals can be made up of several different chemicals or they can be specific chemical molecules like water. Ammonia, oxygen, water, carbon dioxide, and other substances are all present in air.

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Given the following balanced equation, determine the rate of reaction with respect to [O2]: 2O3 (g).....yields.....3O2 (g)
a. Rate = -2deltaO2 over delta t
b. Rate = -2/3delta O2 over delta t
c. Rate = +1/3delta O2 over delta t
d. Rate = +3delta O2 over delta t
e. it is not possible to determine without more information

Answers

The balanced equation is :

2O₃(g)   ----->   3O₂(g)

The rate of the reaction with [O₂] :The correct option c) Rate = + (1/3) Δ[O₂] /Δt  

The balanced chemical equation is as follows :

2O₃(g)   ----->   3O₂(g)

The rate of the reaction is the speed of the reaction at which the product is formed from the reaction in the chemical reactions. The rate for the chemical reaction is expressed by the decrease in the concentration of the reactants or the increase in the concentration of the products:    

The rate of reaction with respect to the [O₂] is expressed as :

The rate =  + (1/3) Δ[O₂] /Δt  

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