Explain why rubbing an alkali like bicarbonate of soda onto an acidic bee sting can ease the pain ?

Answers

Answer 1
Because when a bee stings a person it injects an acidic liquid into the skin which causes the pain/irritation, applying baking soda can help neutralize the acidity of the sting easing inflammation

Related Questions

Which of the following molecules or ions has a bent shape?
A: CIO4
B: PH3
C: OF2
D: PCI5

Answers

It’s c I believe but I don’t know
The answer is B I got it right on the test

Can someone please help me!!

Answers

Explanation:

Corrections

- It should be 45 bromine atoms

- Bromine isn't found abundantly as atoms, rather as diatomic molecules

[tex]Br_2[/tex]

Before should show 2 phosphorus atom and 3 bromine molecules to form 2 phosphorus tribromide

The bond is covalent because both bromine and phosphorus is a non-metal

Which of the following combinations of compounds will make a buffer when
mixed?
A. HCl and NaOH
B. CH3COOH and NaCH3Coo
C.HCl and NaBr
D. CH3COOH and NHACI

Answers

Answer:

B. CH3COOH and NaCH3COO

Explanation:

CH3COOH and NaCH3COO will make a buffer when mixed.

What is a buffer solution?

Buffer solutions resist a change in pH when small amounts of a strong acid or a strong base are added. A solution of acetic acid and sodium acetate CH3COOH + CH3COONa is an example of a buffer that consists of a weak acid and its salt.

What are buffer solutions and their types?

Buffers are broadly divided into two types – acidic and alkaline buffer solutions. Acidic buffers are solutions that have a pH below 7 and contain a weak acid and one of its salts. For example, a mixture of acetic acid and sodium acetate acts as a buffer solution with a pH of about 4.75.

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(04.03 MC)

The table shows the nature of the reactants and products formed in a certain type of chemical reaction.

Nature of Reactants and Products

Reactants

lonic compound + lonic compound

Products

lonic compound + lonic compound

Which of the following is true about this type of chemical reaction?

It is a single replacement reaction, and all four compounds are different.

It is a double replacement reaction, and all four compounds are different.

It is a single replacement reaction, and each compound has the same set of ions.

It is a double replacement reaction, and each compound has the same set of ions.

Answers

Answer: The given type of chemical reaction is a double replacement reaction, and each compound has the same set of ions.

Explanation:

When two different compounds chemically react with each other and their ions get exchanged with each other then it leads to the formation of two new compounds. This type of reaction is called double displacement reaction.

For example, [tex]KBr + AgNO_{3} \rightarrow KNO_{3} + AgBr(\downarrow)[/tex]

Here, both KBr and [tex]AgNO_{3}[/tex] are ionic compounds that leads to the formation of two new ionic compounds which are [tex]KNO_{3}[/tex] and AgBr.

Thus, we can conclude that the given type of chemical reaction is a double replacement reaction, and each compound has the same set of ions.

The table shows the specific heat of four substances—brick, dry soil, paper, and water. If all four substances were exposed to sunlight for the same amount of time, which substance would heat up the fastest?

Answers

Answer:

Brick

Explanation:

.................

Using the periodic table, choose the more reactive nonmetal.
Br or As

Answers

Reactivity of non-metals depend on their ability to gain electrons. So, smaller is the size of a non-metal more readily it will attract electrons because then nucleus will be more closer to valence shell. ... Hence, Br is the non-metal which will be more reactive than At.

Answer:

br is more reactive than as

What is the mass in grams of 3.45 moles of N?

Answers

mass of 1 mole of N is 14g

so mass of 3.45 mole is

3.45 × 14 = 48.3 g

Need help for this answer

Answers

Answer:

animals that live in the desert hibernate in winter

am not sure

What benefits and drawbacks do you see with maintaining and preserving nature through national parks?

Answers

Teri maa ka bhosda bosda bosda

In a solution containing 21.2 g sodium carbonate in 1.50 L of solution, calculate
the concentration of the sodium and carbonate ions.

Answers

Answer:

0.13 molL-1

Explanation:

We must first obtain the number of moles of sodium carbonate as follows;

Number of moles = mass/molar mass

Number of moles = 21.2 g/106 g/mol

Number of moles= 0.2 moles

Number of moles = concentration × volume

Volume = 1.50 L

Concentration = number of moles/volume

Concentration = 0.2 moles/1.5 L

Concentration = 0.13 molL-1

what's the meaning of pH in acids and base​

Answers

Answer:

pH is a measure of how acidic/basic water is. The range goes from 0 to 14, with 7 being neutral. pHs of less than 7 indicate acidity, whereas a pH of greater than 7 indicates a base. pH is really a measure of the relative amount of free hydrogen and hydroxyl ions in the water.

Calculate the volume of an
object with the following
dimension:
4.0 cm x 1.2 cm x 2.5 cm
[?] cm3

Answers

Answer: The volume of given object is 12.0 [tex]cm^{3}[/tex].

Explanation:

Given: Length = 4.0 cm

Width = 1.2 cm

Height = 2.5 cm

Formula to calculate the volume of such an object is as follows.

[tex]Volume = length \times width \times height[/tex]

Substitute the values into above formula as follows.

[tex]Volume = length \times width \times height\\= 4.0 cm \times 1.2 cm \times 2.5 cm\\= 12.0 cm^{3}[/tex]

Thus, we can conclude that the volume of given object is 12.0 [tex]cm^{3}[/tex].

The skin has and needs natural oils. Why is it advisable
to wear gloves while working with strong alkalis ?​

Answers

Answer:

As we know that alkalis react with oil to form soap. As our skin contains oil so when we touch strong alkalis, a reaction takes place and the soapy solution is formed. Hence we should wear gloves.

Answer:

As we know that alkalis react with oil to form soap. As our skin contains oil so when we touch strong alkalis, a reaction takes place and the soapy solution is formed. Hence we should wear gloves.

Explanation:

it from internet

Which of the forces of molecular attraction is the weakest? A London dispersion forces B hydrogen bond C single covalent bond D dipole dipole interactions

Answers

Answer: London dispersion forces of molecular attraction is the weakest.

Explanation:

The forces which exist between neighboring atoms, molecules or ions can be force of attraction or force of repulsion. These forces are called intermolecular forces.  

When ions with same charge come in contact with each other then force of repulsion is there but when ions with opposite charge comes in contact with each other then force of attraction will be there.

These forces are described as follows.

London dispersion forces: The electrostatic attraction between atoms or molecules causes a temporary induced charge on the respective atoms. These attractive forces are weak in nature and called London dispersion forces.

Hydrogen bond: When a hydrogen atom is attached to electronegative atom like fluorine, nitrogen and oxygen then bonding between these atoms is called a hydrogen bond.

Dipole-dipole interaction: When positive end of one polar molecule gets attracted by the negative end of another polar molecule then force existing between these ends is called dipole-dipole interaction.

Single covalent bond: When an atom is sharing its valence electrons with another atom then it is called a covalent bond.

Thus, we can conclude that London dispersion forces of molecular attraction is the weakest.

Where can we find what the chemical symbols in a compound mean? Example: 0, C, Na, Li

Answers

Answer:

The periodic table

Explanation:

I'm not really sure what your question is. . . I'm assuming this is what you're looking for

Calculate the molarity of the following solution: 1.0 mole of KCl in .75 L of solution.
1.3 M
2.0 M
0.750 M
99 M

Answers

Answer:

1.3 M

Explanation:

1 mole= Concentration * Volume

1 mole=C*0.75 L

C=1.3 M

Question 2
5 pts
_AI(NO3)3 +
K2CO3 →
Al2(CO3)3 +
KNO3
What is the correct set of coefficients used to balance the equation above?
O 2, 3, 1,6
O 2, 6, 1, 3
O 2, 3, 1,9
O 3, 3, 1.2

Answers

Answer:

2Al(NO3)3+3K2CO3->Al2(CO3)3+6KNO3

So the right answer is 2,3,1,6

Explanation:

First you look at the equation that isn't balance, you can see Al(NO3)3 while Al2(CO3)3, so you put 2 in Al(NO3)3.

Now we have 2Al is correct, but 6NO3. So we have 6KNO3, it also means we have 6K

Finally, we only have 2K as K2CO3 so we put 3 in it, so we have 3K2CO3.

Sorry about my explanation, it's hard to understand but the answer is correct.

Under what conditions is AG for a reaction always positive?

Answers

When H is positive and S is negative

the correct sequence where reactivity towards oxygen increases.

Answers

Answer:

Option D is good to go!

Explanation: as per the reactivity series more reactive substances will react with the counterpart substance.The most reactive substance here is calcium while the least reactive is aluminium, the magnesium comes in between.As per their reactivity, these substances will react with oxygen.

Explanation:

Explain how monumentum conservation is applied in ball games

Answers

Answer:

Hi , your answer is that At impact, the cue ball stops, but transfers all of its momentum and kinetic energy to the other ball, resulting in the hit ball rolling with the initial speed of the cue ball. In an inelastic collision, momentum is conserved, but the total kinetic energy of the system is not conserved

Explanation:

i really hope i helped , pleae give me brainliest , have a nice day and thank you in advance :) .


When naming a molecule, how do you indicate that the carbons on either side
of the double bond are pointing in opposite directions?

Answers

Answer:

use the prefix trans-

When naming a molecule, we indicate that the carbons on either side of the double bond are pointing in opposite directions by adding a prefix (-trans) in the name of the molecule.

What is IUPAC nomenclature?

IUPAC nomenclature of organic compounds refers to the systematic approach taken for the nomenclature of organic compounds as per the recommendation of the International Union of Pure and Applied Chemistry.

If alkenes have two different substituents at each end of the C=C then they can exist as stereoisomers (as geometric isomers).

This is because there is restricted rotation of the double bond due to the pi bond which means they don't readily interconvert.

cis- if the two alkyl groups, R-, are on the same side of the C=Ctrans- if the two alkyl groups, R-, are on opposite sides of the C=C.

Therefore, When naming a molecule, we indicate that the carbons on either side of the double bond are pointing in opposite directions by adding a prefix (-trans) in the name of the molecule.

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Why do need need pure substances

Answers

Answer:

To extract its derivatives without impurities

Given the balanced equation representing a reaction:
HCl + H2O H3O+ + Cl-
The water molecule acts as a base because it

Answers

Answer:

It accepted a proton from HCl

Explanation:

When properly written, the equation box the reaction is given as; HCl(aq) + H2O(l) ----> H3O+(aq) + Cl-(aq).

According to Brownstead-Lowry definition of acids and bases, an acid donates protons while a base accepts protons.

Water molecule acts as a base in the reaction because it accepted a proton from HCl in the reaction above.

the name of the compound made from lithium chloride and oxygen​

Answers

Answer:

Lithium perchlorate

Explanation:

The compound formed from lithium chloride and oxygen is lithium oxide (Li₂O).

When lithium chloride (LiCl) reacts with oxygen (O₂), they combine to form lithium oxide (Li₂O). In this reaction, each lithium-ion (Li⁺) from lithium chloride combines with an oxygen atom (O) from oxygen gas to form a lithium oxide molecule.

The chemical formula Li₂O indicates that two lithium ions are combined with one oxygen atom in the compound. This is because lithium has a +1 charge, and since there are two lithium ions, their combined charge is +2. Oxygen, on the other hand, has a -2 charge, so one oxygen atom is sufficient to balance the charges and form a neutral compound.

Hence, the name of the compound formed is Li₂O

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Comparing the sizes of these atoms, which atom is smallest?
a.rubidium
b.zirconium
c.lead
d.silver
e.xenon

Answers

Answer:

xenon

Explanation:

Rb>Zr>Ag>Pb>Xe

Which causes genetic variations and can result in different alleles

Answers

genetic variation can be caused by mutation

Draw the structural formula (not the skeletal formula) for 2-octene.

Answers

Answer:

Explanation:

2-octene is a structural isomer of octene. Octene is an unsaturated hydrocarbon (alkene) with 8 carbon atoms. The structural formula of 2-octene is seen below

    H               H    H   H   H  H

     I                 I     I     I     I    I

H- C - C = C - C - C - C - C - C - H

     I     I     I     I     I     I     I     I

    H   H    H   H   H   H   H   H

The structural formula of 2-octene is different from that of octene in the sense that, it's double bond is found in between the second and the third carbon (on the second bond position).

Aluminum reacts with oxygen to form aluminum oxide. Select the correct unbalanced skeleton equation for this reaction. A. Al(s) + 0(g) - AIO(s) B. Al203(s) - Al(s) + 02(8) C. Al(s) - 02(8) + Al203(s) D. Al(s) + 02(8) - Al203(s)

Answers

Answer:

D. Al(s) + O₂(g) → Al₂O₃(s)

Explanation:

Aluminum is a solid metal, so it is written as Al(s).

Oxygen is a diatomic gas, so we write this compound as O₂(g).

Aluminum oxide has the formula Al₂O₃ because in oxides the oxidation number of oxygen atom is -2 and for aluminum, the oxidation number is 3. Thus, we write this compound as Al₂O₃(s).

Now, we have to found the chemical equation in which the reactants (left side) are Al(s) and O₂(g) while the product (right side) is Al₂O₃(s). From the options, we can see that the correct is (D):

Al(s) + O₂(g) → Al₂O₃(s)

What is the two major types of chemical bonding?

Answers

Answer:

Ionic bond and covalent bond

Explanation:

The two main types of chemical bonding are ionic bond and covalent bond.

In an ionic bond, there is a transfer of electrons from one atom to another. Usually from a metal to a nonmetal leading to the existence of an ion pair. Ionic compounds are soluble in water and have high melting and boiling points due to the strong electrostatic interaction between ions in the compound.

A covalent bond involves sharing of electrons between atoms. In an ordinary covalent bond, the shared electrons are furnished by the two bonding atoms while in a dative covalent bond, the two bonding electrons are furnished by only one of the bonding species.

How much work (in J) is involved in a chemical reaction if the volume decreases from 5.20 to 1.13 L against a constant pressure of 0.852 atm ? Express your answer to three significant figures and include the appropriate units.

Answers

Answer:

W = 350.6 J

Explanation:

Given that,

The volume decreases from 5.20 to 1.13 L against a constant pressure of 0.852 atm.

The change in volume = 1.13 L - 5.20 L = -4.07 L

Work done, W = - PΔV

So,

W = 0.852 atm × -4.07 L

= - 3.46 L-atm

or

[tex]W=3.46\ L-atm\times \dfrac{101.33\ J}{1\ L-atm}\\\\=350.6\ J[/tex]

So, the required work done is 350.6 J.

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