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e-lub [12.9K]
3 years ago
8

A bridge usually has expansion joints. They allow the bridge to become slightly longer when it experiences thermal expansion. Lo

ok at the
diagram of the bridge joint.
When the weather becomes cool, the "teeth" of the joint move away from each other. When the weather becomes warm, they move toward each
other. Which statement is true about the particles that make up the bridge?
A When the sides of the joint are close together, the particles have more kinetic energy than they do when the sides are farther apart.
B. When the sides of the joint are far apart, the particles have more kinetic energy than they do when the sides are closer together
C. The particles contain the same amount of kinetic energy no matter how much the bridge has expanded.
D. The kinetic energy of the particles changes, but the amount it changes does not depend on the temperature of the bridge,
Chemistry
1 answer:
timama [110]3 years ago
3 0

Answer:

I need help please!!!!!!!!!!!!!!

Explanation:

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Complete this nuclear reaction by selecting which particle would go in the
kompoz [17]

Answer:

Missing particles: ^{0}_{1}e^{+} (a positron) and an electron neutrino \nu_{\rm e}.

The nuclear equation would be:

{\rm ^{19}_{10} Ne} \to ^{0}_{1}e^{+} + {\rm ^{19}_{\phantom{1}9}F }+ \nu_{e}.

Explanation:

The mass number of a particle is the number on the top-right corner of its symbol.

The atomic number of a particle is the number on the lower-right corner of its symbol.

The nuclear reaction here resembles a beta-plus decay. The mass numbers of the two nuclei are equal. However, the atomic number of the product nucleus is lower than that of the reactant nucleus by 1.

A beta decay may either be a beta-plus decay or a beta-minus decay. In a beta-plus decay, a positively-charged positron ^{0}_{1}e^{+} and an electron neutrino \nu_e would be released. On the other hand, in a beta-minus decay, a negatively-charged electron \rm ^{0}_{1}e^{-} and an electron antineutrino \overline{\nu}_e would be released.

Electric charge needs to be conserved in nuclear reactions, including this one.

The atomic number of the \rm Ne nucleus on the left-hand side is 10, meaning that the nucleus has a charge of +10. On the other hand, the atomic number of the \rm F nucleus on the right-hand side shows that this nucleus carries a charge of only +9.

By the conservation of electric charge, the particles on the right-hand side must carry a positive charge of +1. That rules out the possibility of the combination of one negatively-charged electron \rm ^{0}_{1}e^{-} (with a charge of -1) and an electron antineutrino \overline{\nu}_e (with no electric charge at all.)

Hence, the only possibility is that the missing particle is a positron (and an electron neutrino \nu_e, which carries no electric charge.)

4 0
3 years ago
Methyl red is a common acid-base indicator. it has a ka equal to 6.3 × 10–6. its un-ionized form is red and its anionic form is
Maksim231197 [3]
Hello!

The pKa of an indicator tells us the pH where it changes color. The pKa of Methyl red is 

pKa=-log(Ka)=-log( 6,3*10^{-6} )=5,20

So, at a pH=7,8, Methyl Red would be at a pH over its pKa, so it would be in its basic form. The Basic Form of Methyl Red is Yellow, so the solution would be Yellow.

Have a nice day!
7 0
3 years ago
Aqueous solutions of silver nitrate (AgNO3) and iron(III) chloride (FeCl3) are mixed together. Which ion combines with the chlor
garik1379 [7]
Hello there!

The correct answer is Ag⁺.

If we look at the solubility rules, it says that most chlorides are soluble, <u>except</u><em> </em>with Ag⁺, and Pb²⁺.

I hope this helps!
Brady<u><em /></u>
6 0
3 years ago
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96.5% of Earths water is salt water.

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3 years ago
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\large\underline{\bf\red{Solution:-}}

The chemical property deals with the ability of a substance being able to burn is called combustibility [ option b ] .

<u>More</u><u> to</u><u> know</u><u> </u><u>:</u><u>-</u>

<em>1</em><em>)</em><em> </em><em>Combustion</em><em> </em><em>:</em><em>-</em>

Combustion is a chemical process in which a substance reacts rapidly with oxygen and gives out heat.

The fuel can be any one of the 3 states of matter that is - solid , liquid & gases .

Examples of combustible substances :-

Solid - Coal

Liquid - Petrol , Disel , etc.

Gas - Hydrogen , Oxygen , etc .

5 0
3 years ago
Read 2 more answers
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