when put out a fire that threatens to be ahazard to which part of flame should be aim the extinguisher​

Answers

Answer 1

The fire extinguisher should be aimed at the base of the flame.

A fire extinguisher is an active safety tool that is frequently used in emergencies to put out or control minor flames.

The most crucial thing to remember while utilizing a fire extinguisher is to keep your distance and aim towards the fire's base.

The majority of untrained individuals are prone to point fire extinguishers at the flames, however doing so causes the extinguishing ingredient to flow into the flames, rendering the entire procedure ineffectual. It's crucial that the extinguishing agent reaches the fire's foundation.

A fire extinguisher typically consists of a hand-held cylindrical pressure vessel that may be discharged with a chemical to put out a fire.

There are five basic types of fire extinguishers: wet chemical, dry powder, carbon dioxide, foam, and water.

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Related Questions

13. In a science experiment, the
manipulated or changed.
dependent
stipulated
independent
none of the above
variable is the one that is

Answers

Answer:

In a science experiment, the

manipulated or changed.

= Independent variable

I HOPE IT HELP YOU

5. Determine how the Sun can continue to heat the atmosphere at night. SC.6.E.7.5​

Answers

Some terminator atmosphere streams over the horizon, and there may be a trace of warmth from sunlight reflected off the lunar surface.

What is the atmosphere?

The layer of gases held by Earth's gravity that surrounds the planet and constitutes its planetary atmosphere is known as the atmosphere or air. The Earth's atmosphere supports life by producing pressure on the Earth's surface, absorbing ultraviolet solar radiation, warming the surface through heat retention (greenhouse effect), and decreasing temperature extremes between day and night.

Some terminator atmosphere streams over the horizon, and there may be a trace of warmth from sunlight reflected off the lunar surface. However, the sun does not, in general, warm the environment at night. As a result, the atmosphere tends to cool during the night, reaching its coldest point right before morning.

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Which is an example of poor safety practices when working outdoors?
O A. Cleaning up your trash
B. Wearing gloves when working with soil
C. Wearing a helmet in dangerous areas
OD. Eating a plant to test it

Answers

Answer:

A poor safety practice would be to eat a plant to test it.

Explanation:

D. Eating a plant to test it.


→ You shouldn’t eat a random plant without knowing what it is or without washing it.


hopefully this helps you ^^

Answer:

D. Eating a plant to test it

Explanation:

Cleaning up, wearing gloves and a helmet are safe when working outdoors. Eating certain plants can be harmful, especially if you're not familiar with it.

Metals participate in two types of single-displacement reactions. A reactive metal can displace _____ gas either from water or from an aqueous acid. A _____ reactive metal can also displace the ion of a _____ reactive metal from solution.

Answers

A reactive metal can displace HYDROGEN gas either from water or from an aqueous acid.

A MORE reactive metal can also displace the ion of a LESS reactive metal from the solution.

A more reactive metal (one that forms positive ions more easily) can displace a less reactive metal from a compound. This is called a displacement reaction. Metal can only displace another metal from a compound if it is located above it in the reactivity series.

As a result, the more reactive metal enters the solution as a cation, whereas the less reactive metal's cations are converted to metal. So more reactive metals displace less reactive metals from their salt solutions.

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A cube of gold-colored metal with a volume of 54 cm3 has a mass of 980 g. The density
of gold is 19.3 g/cm3. Is this sample of metal pure gold?

Answers

Answer:

A gold-colored metal with a volume of 59 cm3 and a mass of 980 g will have a density of 16.61 g/cm3 instead of 19.3 g/cm3

Recall that the density of a substance is the ratio of its mass and that of its volume.

In other words; density = mass/volume

In this case, the mass of the gold-colored metal is 980 g while the volume is 59 cm3

 density of the metal = 980/59

                             = 16.61 g/cm3

Thus, the density of the gold-colored metal is 16.61 g/cm3, instead of 19.3 g/cm3

Explanation:

What is the chemical formula for sugar?​

Answers

Answer:

C12H22O11

Explanation:

The answer is = C12H22011

suppose 2 pints of a 19% alcohol solution is mixed with 8 pints of a 90% alcohol solution. what is the concentration of alcohol in the new 10-pint mixture

Answers

If we suppose 2 pints of a 19% alcohol solution is mixed with 8 pints of a 90% alcohol, then the amount of alcohol is calculated as 92.8%

What is molarity?

A chemical species' concentration in a solution, specifically the amount of a solute per unit volume of solution, is measured by its molar concentration.

Molarity (M) is the amount of a substance that is present in a certain volume of solution.

Molarity is defined as the moles of a solute per liters of a solution which can further be formulated as:

M= Moles of the solute/ volume of solution.

Herein we have

0.19 (2 pints) + 0.90 (8 pints) = 9.28 pints

So, the concentration is:

9.28 pints / 10 pints × 100% = 92.8%.

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Blue ink from two different pens appears to be the exact same color. Explain how
to determine whether the inks are identical.

Answers

A paper ink chromatogram can also be used to detect compounds by comparing them to already identified substances. If two substances create the same number of dots that match in color, they are most likely the same.

The spots travel up the page the same distance (have the same R f value). A paper chromatogram can also be used to detect compounds by comparing them to already identified substances. If two substances create the same number of dots that match in color, they are most likely the same. Thus, ink is a mixture since it is composed of two substances: water (solute) and dye (solvent).

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Sodium phosphate reacts with sulfuric acid to form sodium sulfate and phosphoric acid. What is the stoichiometric coefficient for sulfuric acid when the chemical equation is balanced using the lowest whole-number stoichiometric coefficients?.

Answers

When sodium phosphate reacts with sulfuric acid, forming sodium sulfate and phosphoric acid, the stoichiometric coefficient for sulfuric acid in the balanced chemical equation is 3.

In every balanced chemical equation, the total number of individual atoms on the reactant side must be equal to the total number of individual atoms on the product side. The stoichiometric coefficient is the number written in front of each reactants and products that tells how many moles of each are needed in the reaction.

The chemical equation for the given reaction is:

[tex]Na_{3} PO_{4}[/tex] + [tex]H_{2} SO_{4}[/tex] = [tex]Na_{2} SO_{4}[/tex] + [tex]H_{3} PO_{4}[/tex]

Put the necessary stoichiometric coefficient to balance each element.

Balancing Na:

[tex]2Na_{3} PO_{4}[/tex] + [tex]H_{2} SO_{4}[/tex] = [tex]3Na_{2} SO_{4}[/tex] + [tex]H_{3} PO_{4}[/tex]

Balancing P:

[tex]2Na_{3} PO_{4}[/tex] + [tex]H_{2} SO_{4}[/tex] = [tex]3Na_{2} SO_{4}[/tex] + [tex]2H_{3} PO_{4}[/tex]

Balancing S:

[tex]2Na_{3} PO_{4}[/tex] + [tex]3H_{2} SO_{4}[/tex] = [tex]3Na_{2} SO_{4}[/tex] + [tex]2H_{3} PO_{4}[/tex]

Notice that H and O are already balanced.

Hence, the balanced chemical equation for the reaction is:

[tex]2Na_{3} PO_{4}[/tex] + [tex]3H_{2} SO_{4}[/tex] = [tex]3Na_{2} SO_{4}[/tex] + [tex]2H_{3} PO_{4}[/tex]

where 3 is the stoichiometric coefficient of sulfuric acid, [tex]H_{2} SO_{4}[/tex].

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. How do molecules move during passive transport?

Answers

In passive transport, substances move from an area of higher concentration to an area of lower concentration in a process called diffusion. A physical space in which there is a different concentration of a single substance is said to have a concentration gradient.

In passive transport, substances move from an area of higher concentration to an area of lower concentration in a process called diffusion. A physical space in which there is a different concentration of a single substance is said to have a concentration gradient.

what is net ionic equation for the reaction shown below? AgNO3(aq)+NaCl(aq)=AgCl(s)+NaNO3(aq)

Answers

The net Ionic equation for the reaction is

Ag⁺+ Cl⁻ AgCl

The symbolic depiction of a chemical reaction using symbols and equations is known as a chemical equation.Spectator ions are ions that are present on both sides of chemical reactions but do not take part in the reaction itself. The spectator ions on both sides of the equation are cancelled in the net chemical reaction.

Steps for writing net ionic equation:

write the balanced chemical equation.Split soluble compounds into ions.cross out the spectator ions on the both side of the ionic equation.Write the remaining substances as net ionic equation.

Balanced Chemical equation:

AgNO₃(aq) + NaCl(aq) → AgCl(s) + NaNO₃(aq)

Splitting

Ag⁺ + NO³⁻ + Na⁺ + Cl⁻ → AgCl + Na⁺ + NO³⁻

Net Ionic Equation

Ag⁺+ Cl⁻→ AgCl

Na⁺ and NO³⁻ are spectator ions, hence they are not included in the net ionic equation. Because it exists in solid form, AgCl cannot be separated into ions.

Therefore, net ionic equation is

Ag⁺+ Cl⁻→ AgCl

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is granola a homogeneous or heterogeneous mixture??

Answers

Granola is a heterogeneous mixture.

Heterogeneous mixture is a mixture that does not resemble the uniform mixture and the mixture appears non-uniform.

Granola is a heterogeneous mixture in which Oats, nuts, honey, or other sweetener including brown sugar are commonly incorporated to make granola, that is then typically roasted until it is crunchy, toasted, and golden brown. Periodically, raisins will be added.

Since, different individual could be seen hence it is a heterogeneous mixture.

Hence, Granola is a heterogeneous mixture.

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. if you are presented with the structure a carbon-containing compound, or trying to draw one yourself, what is the rule about the number of covalent bonds to carbon that are normally found in these structures?

Answers

The number of covalent bonds formed by carbon is four.

What kind of bond does carbon form?

Covalent bonds are formed between carbon atoms and atoms of other elements or carbon. Carbon compounds come in a wide variety, with atom counts ranging from one to thousands.

Since carbon has four valence electrons, it can create four covalent bonds to reach its full outer energy level. The most stable configuration of electrons is at the maximal outer energy level.

Covalent bonds formed between carbon atoms can be single, double, or triple bonds. One pair of electrons is shared by two carbon atoms to form a single bond. They share two pairs of electrons in a double bond and three pairs in a triple bond.

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The speed limit on a many u.s. highways is 70 miles per hour. convert this speed to kilometers per day.

Answers

The speed limit on a many highways is 70 miles per hour. this speed to kilometers per day is 2703.69 km / day.

The speed limit on u.s highways is given as,

speed = 70 miles per hour or 70 mile / h

we have to convert it in kilometers per day,

so,

1 miles =  1.609344 kilometers

and, 1 day = 24 hours

therefore, in 1 hour = 1/ 24 day

applying above values, we get,

70 mile per hour = ( 70 × 1.609344 ) kilometers × 24 / day

70 miles per hour = 112.65408 kilometers × 24 / day

70 miles per hour = 2703.698 kilometers per day

Hence,The speed limit on a many highways is 70 miles per hour. this speed to kilometers per day is 2703.69 km / day.

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using the results of our calculations in class (you do not need to rederive these relationships, just use them!), what is the maximum radius of an atom that will just fit into a octahedral hole site in fcc ni without distorting the structure?.... the octahedral hole site of bcc fe

Answers

The radius of the atom that just fits into the octahedral site is 0.414 times the radius of Fe.

What is the radius ratio rule?

The ratio of a cation's lower ionic radius to its greater ionic radius (anion) is known as the radius ratio.

What is the importance of this rule?

This rule aids in figuring out how ions are arranged in distinct crystal formations. It aids in determining an ionic crystal structure's stability.

According to the limiting radius ratio,

= 0.414

R = radius of an atom

r = radius of Fe

Hence, the radius of the atom that just fits into the octahedral site, R = 0.414 ×r

R= 0.414 times radius of Fe(r)

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Which two elements make up this mixture, element C and B element C, and an element D and C or element B And D?

Answers

Element B and D that two mixtures

What intermolecular force or forces govern the solubility of 9-fluorenone in diethyl ether?.

Answers

Dipole-induced dipole attraction intermolecular force governs the solubility of 9-fluorenone in diethyl ether.

A dipole-induced dipole attraction is a type of weak attraction as it results when a polar molecule induces a dipole either in an atom or in a non-polar molecule by disturbing the electron arrangement in the particular non-polar species.

Most organic molecules are polar since they have a dipole moment. On behalf of solvents, polarity refers to solvents having higher polarity, and non-polar solvents with lower polarity. Diethyl ether is located at the lower end of the polarity scale and is generally considered a type of  'non-polar' solvent. Therefore, diethyl ether has a small dipole.

As Diethyl ether has a very low polarity value, if any, it is clear that H-bonding is not possible. London dispersion forces are present in all either polar or non-polar molecules, so it is clear that they are present here too. Since it is slightly polar so it may be exhibiting weak dipole-dipole interactions.

Carbon-donated hydrogen bonding is a real thing but they are generally very very weak non-covalent interactions. . London Dispersion Force is present in every chemical system but is weak as well . There are many exceptions where these forces may be significant in the case of binding energies of several dispersion-dominated molecules.

Therefore, the solubility of 9-fluorenone in diethyl ether is governed by dipole-induced dipole attraction or London dispersion forces.

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A beaker contains a mixture of sand and salt. A student adds water to dissolve the salt. Which processes can be used to separate out the sand and salt?

Answers

Filtration and evaporation are used to separate sand and salt mixture.

Separation of salt and sand mixture is as follows :-

The mixture of salt and sand is separated by filtration followed by an evaporation processes.Filtration is used to separate sand from a combination of sand and salt solution  Sand is left  on the filter paper as a residue after filtering. By boiling the filtrate left on filter paper , common salt may now be produced. Boiling causes all of the water to evaporate, leaving salt behind . This is known as evaporation.

In other words,  based on the fact that salt is soluble in water, while sand is not. So, you used the difference in solubility to separate a mixture of sand and salt.


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Answer: Filtration to collect the sand and distillation to collect the salt.

Explanation:

Your lab supervisor tells you to heat a chemical until it is 165 degrees* F . What should your thermometer (which measures in C) read when it reaches the correct emperature ?

Answers

Answer:

73.8888 repeated

Explanation:

acetanilide has a solubility of 1.00 g/185 ml in 25 0c water and 1.00 g/10 ml in 100 0c water. if 250 mg of acetanilide was dissolved in 2.5 ml of water, how much acetanilide would remain in solution when the solution was cooled to 25 0c?

Answers

The remaining acetanilide when the solution was cooled to 25°C is 13.513 mg.

What happens in the crystallization process?

The solid compound is dissolved in the solvent at elevated temperatures during the crystallization process, and the crystallized product is obtained by slowly cooling the solution.

Given that,

The solubility of acetanilide at 100°C is 1 g per 10 mL of water. Thus, to dissolve 250 mg of acetanilide at a high temperature, that is 100 °C, we need 2.5 mL of water. At 25°C after the re-crystallization there will be some dissolved acetanilide, which can be calculated as- 185mL of water is needed to dissolve 1g or 1000mg of acetanilide at 25°C. Thus, in 2.5 mL of water, there will be

               (2.5×1000)/185 = 13.5135 mg of acetanilide.

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At the end of an enzymatic reaction, what will the concentrations of the substrate, product, and enzyme be relative to the start of the reaction?.

Answers

At the end of an enzymatic reaction there remains a product and the unaltered enzyme.

What happens when the substrate concentration in an enzymatic reaction is increased?

Concentration of Substrate: To a point, increasing the substrate concentration also increases the rate of reaction. Any increase in substrate will have no effect on the rate of reaction once all of the enzymes have bound, because the available enzymes will be saturated and working at their maximum rate.The products of the reaction are released from the active site and diffuse away after the reaction occurs." by OpenStax College, Biology, CC BY 3.0. We know that when an enzyme binds to its substrate, it lowers the activation energy of the reaction, allowing it to happen faster.One of the most important properties of enzymes is that the reactions they catalyse leave them essentially unchanged. After catalysing a reaction, an enzyme releases its products (substrates).This means that as the enzyme concentration decreases, so will the reaction rate. In most biological environments, the enzyme concentration is lower than the substrate concentration. The proportionality between enzyme concentration and enzyme activity is direct.

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Suppose you have 100. 00 ml of a solution of a dye and transfer 2. 00 ml of the solution to a 100. 00ml volumetric flask. After adding water to the 100. 00 ml mark, you take 5. 00 ml of that solution and again dilute to 100. 00 ml. If you find the dye concentration in the final diluted sample is 0. 000158 m, what was the dye concentration in the original solution.

Answers

Using the dilution formula, the dye concentration in the original solution was 0.158 M.

What was the dye concentration in the original solution?

The dye concentration in the original solution is determined from the dilution formula as follows:

M₁V₁ = M₂V₂

Where M₁ = initial concentration

V₁ = original volume

M₂ = final concentration

V₂ = final volume

For the final dilution:

M₁ = M₂V₂/V₁

M₁ = 0.000158 * 100/5

M₁ = 0.000316 M

For the first dilution:

M₁ = M₂V₂/V₁

M₁ = 0.00316 * 100/2

M₁ = 0.158 M

Therefore, the dye concentration in the original solution was 0.158 M.

In conclusion, the dye concentration in the original solution is obtained using the dilution formula.

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A 5. 00 gram sample of lead and a 3. 20 g sample of iron are placed into 367 ml of water. What will be the new volume level of water in units of ml? the density of lead is 11. 34 g/cc and the density of iron is 7. 874 g/cc. Do not enter ""ml"" as part of your answer.

Answers

The new volume level of the water is 357.84 ml.

The mass of the lead sample = 5 gm

The mass of the iron sample = 3.2 g

The volume of the water = 367 ml

The density of lead = 11.34 g/cc

The density of iron = 7.874 g/cc

[tex]Density = \frac{Mass}{ Volume}[/tex]

[tex] Volume = \frac{ Mass}{Density}[/tex]

The volume of the lead is,

[tex]Volume = \frac{Mass \: of \: lead}{ Density \: of \: lead}[/tex]

[tex] \frac{5}{11.34} [/tex]

= 0.441 ml

The volume of lead is 0.441 ml.

The volume of the iron is,

[tex]Volume = \frac{Mass \: of \: iron}{ Density \: of \: iron}[/tex]

[tex] = \frac{3.2}{7.874} [/tex]

= 0.406 ml

The volume of iron is 0.406 ml.

The new volume level of the water sample is,

New volume = Original water volume + Volume of lead + Volume of iron

= 367 + 0.441 +0.406

= 367.84 ml

The new volume level of the water is 357.84 ml.

Therefore, the new volume level of the water without the unit is 357.84.

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When 50. 08 g of 1. 00 m naoh at 23 °c is added to 50. 22 g of 1. 00 m hcl at 23 °c, the resulting temperature of the mixture is 29. 7 °c. Is the reaction endothermic or exothermic?.

Answers

When 50.08 g of 1.00 M NaOH at 23°C is added to 50.22 g of 1.00 M HCl at 23°C, the resulting temperature of mixture is 29.7°C, then the reaction is exothermic.

An exothermic reaction is a reaction which results in the energy release from a system. Energy is emitted, so there is a decrease in the energy. Thereby, the change in enthalpy is negative.

The amount of heat gained or lost by a sample in a reaction is calculation by using the equation,

                                            q = mcΔT

where,

q = heat energy lost or gained

m = mass of the sample,

c = specific heat

ΔT = change in temperature

Given data :

mass = 50.08 g

c = 4.18 J/gK

ΔT = 29.7°C - 23°C = 6.7 K (we won't change celsius into kelvin as we're calculating the change)

Putting the values,

q = 50.8 x 4.18 x 6.7 = 1422.74 J

We know,

Molality = moles of solute

                  mass of solute

Moles = molality x mass

          = 1.00 M x 50.22 g = 50.22 mol

To calculate change in enthalpy -

ΔH =  - 1422.74 J = - 28.33 kJ/mol

           50.22 mol

The energy of the product is lower than energy of reactant, it is an exothermic process. Enthalpy change is negative for exothermic reaction.

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What does the term “combining capacity” mean?

Answers

Answer:

Its valency

The number of valence electrons of an atom gives us an idea of the combining capacity. The number of valence electrons of an atom gives us an idea of the combining capacity.

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Hope this helps!

Have a great day and God bless! :)

2. A lamp weighs 78 pounds; this would be how many kilograms?​

Answers

a pound is 0.45359237 kilograms if you do it out or you could round it to 0.45

so 78 pounds is 35.3802049 kilograms, or you could round it to 35.38

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what is the name for NaCl?

Answers

Answer: Sodium Chloride

Explanation:

Na= sodium Cl= Chloride

Answer

is Nacl

Explanation:

NacI

How many moles are there in a 3.56g sample of copper (Cu)?

A)1 mole
B)226 moles
C)0.0560 mole
D)17.8 moles

Answers

0.0560 because if you regroup your answer that gives you the amount

which of these is a risk of consuming a nonrewable resource at a high rate

Answers

One of the risks of consuming a nonrenewable resource at a high rate is that the resource could be depleted quickly. Option A.

What are nonrenewable resources?

Nonrenewable resources are natural resources that are naturally replenished or are replenished at a much slower pace than they are being consumed.

Nonrenewable resources are unique from renewable resources in that the latter are replenished at a much faster rate than they can ever be consumed.

Examples of nonrenewable resources include mineral deposits, crude oil deposits, etc. Examples of renewable resources include solar energy, wind energy, etc.

Thus, if nonrenewable resources are consumed at a high rate, it greatly increases the risk of depletion quickly.

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The options to pick from are:

A.) The resource could be depleted quickly.

B.) The resource could be consumed very quickly.

C.) The resource could be replenished very slowly.

D.) The resource could be replenished quickly.

Which object is a liquid, feels sticky, and is brown in color?(2 points)
Chocolate frosting
Coffee
Soil
Maple syrup

Answers

Answer:

Maple Syrup

Explanation:

Chocolate syrup is the answer
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