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valentinak56 [21]
3 years ago
8

Write any 4 reactions of compounds or element with water.​

Chemistry
1 answer:
jarptica [38.1K]3 years ago
6 0

Answer:

A common characteristic of most Alkali Metals is their ability to displace H2(g) from water. This is represented by their large, negative electrode potentials. In this event, the Group 1 metal is oxidized to its metal ion and water is reduced to form hydrogen gas and hydroxide ions. The general reaction of an alkali metal (M) with H2O (l) is given in the following equation:2M(s)+2H2O(l)⟶2M+(aq)+2OH−(aq)+H2(g)(1)

Explanation:

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6.201cm+7.4cm+0.68 cm+12.0cm
zimovet [89]
If you want the answer is centimeters is it going to be:
26.281 cm
If it make it easier for you to solve add 6.201 and 7.4 which will equal 13.601. Then add .68 to 13.601 which equals 14.281. Last add 12 to 14.281 which equals 26.281.

Hope this helps.

8 0
3 years ago
QUESTION 57
Tema [17]
57 - True

58 - True

59 - True

60 - Fe and O

61 - Sr and F

62 - <span>both ionic and covalent bonds

Hope this helps!</span>
6 0
4 years ago
Read 2 more answers
What type of product forms in the intramolecular reaction between the aldehyde portion of the glucose molecule below and its C-5
djyliett [7]

Question:

What type of product forms in the intramolecular reaction between the aldehyde portion of the glucose molecule below and its C-5 hydroxyl group?  

a. disaccharide

b. carboxylic acid

c. hemiacetal

d. ester

e. stereoisomer

Answer:

hemiacetal  forms in the intramolecular reaction between the aldehyde portion of the glucose molecule and its C-5 hydroxyl group

Explanation:

It is an alcohol also an ether that has been attached to the carbon molecule. Here the hydrogen has occupied the fourth bonding position. This hemiacetal has been derived from the aldehyde. Hence, hemiketal being an alcohol as well as ether has been attached to the same carbon and also to the two other carbon.

7 0
3 years ago
1. Nuclear decay by alpha particle emission is more common in atoms of elements that:
11111nata11111 [884]

Answer 1) Option a) have an atomic number greater than 83


Explanation : Nuclear decay by alpha particle emission is more common in atoms of elements that have an atomic number greater than 83. Nuclear reactions occurs with the elements which have mass number more than 200.


Answer 2) Option D) He^{4}_{2}


Explanation : In the given nuclear reaction of helium;


He^{3}_{2} + He^{3}_{2}  -----> He^{4}_{2} + 2 P^{1}_{1}


Two helium isotopes combines to give another helium isotope with emission of a proton (P).


Answer 3) Option D) The products are more radioactive than the reactants.


Explanation : The major drawback of a nuclear fission reaction to be used as an reliable energy source is that it usually produces the products which are found to be more radioactive than the reactants.


Answer 4) Option D) All of the above concerns.


Explanation : Nuclear reactions are usually very harmful in nature. It raises many concerns about the waste disposal that is generated from the reaction. It also requires safe operation for the working nuclear plants. It can also be misused for nuclear weapon proliferation. Hence, the answer is all of the above.


Answer 5) False.


Explanation : The energy output of the Sun and other stars is a result of fusion reactions among hydrogen nuclei. In fusion reactions usually additions takes place.


Answer 6) Option B) The "missing" mass has been converted to energy


Explanation : The total mass of a helium nucleus not equal to the mass of its individual parts because the missing mass has to be converted into energy.


Answer 7) Option A) less than the mass-energy of the products


Explanation : In a nuclear reaction, the mass-energy of the reactants is generally less than that of the mass-energy of the products because some energy has to be generated while the reaction is progressing.


Answer 8) Option D) 9.00 X 10^{17} J


Explanation : The calculation of the mass of 10.0 kilograms is completely converted into energy.


E = m X C^{2} formula can be used.


here m = 10 Kg and C = 3 X 10^{8} m/s



E = 10 X 3 X 10^{8} = 9.00 X 10^{17} J.


Answer 9) Option C) 3.60 X 10^{17} J.


Explanation : For calculation of energy for mass of 4 Kg


we can use the Einstein's formula,



E = m X C^{2}


where m = 4 Kg and C = C = 3 X 10^{8} m/s


E = 4 X 3 X 10^{8} = 3.60 X 10^{17} J.


Answer 10) False.


Einstein's formula for the conversion of mass and energy, to find the energy, multiply the mass by the speed of light squared.


E = m X C^{2}

3 0
4 years ago
1.05kg of aluminum what is the heat capacity ?
vitfil [10]
The aluminum can with stand <span>0.942 J° C  of heat </span>
8 0
3 years ago
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