Answer:
The scientists use results from the new experiments to change the existing explanations of how nature functions. The world is changing continuously. There are outcomes, which have been obtained from the scientific studies performed earlier, which may no longer be accurate at present because of certain factors that may not have been discovered or present in those times. Other scientific findings may also be further acknowledged as true from the outcomes of the new experiments.
Scientists use results from new experiments to validate or refute existing theories and to explore new scientific territory. This is done by gathering and analyzing data from these experiments, ultimately leading to more informed and detailed theories.
Scientists use results from new experiments to both confirm existing theories and explore new territories of knowledge. Conducting an experiment helps scientists gather data and observations. These results then provide evidence that either supports or refutes a hypothesis, leading to more advanced and precise scientific theories. For example, when Albert Einstein proposed his theory of relativity, further experiments such as the Eddington experiment during a solar eclipse provided data evidence that supported his theory.
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The energy fro the nuclear reaction go on to split other nearby atoms
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b) H2(g) + Cl2(g) ----> 2HCl(g)
c) 2Li(s) + F2(g) ----> 2LiF(s)
d) S(s) + Cl2(g) ----> SCl2(g)
e)N2(g) + 2O2(g) ----> 2NO2(g)
f) Mg(s) +Cu(NO3)2(aq) = Mg(NO3)2(aq) + Cu(s)
For each reaction above, identify the reducing agent and the oxidizing agent
Answer :
Oxidation-reduction reaction : It is a type of reaction in which oxidation and reduction reaction occur simultaneously.
Oxidation reaction : It is the reaction in which a substance looses its electrons. In the oxidation reaction, the oxidation state of an element increases.
Reduction reaction : It is the reaction in which a substance gains electrons. In the reduction reaction, the oxidation state of an element decreases.
(a) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, 'Na' is oxidized and is reduced in this reaction. The reducing agent is, 'Na' and oxidizing agent is, .
(b) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, is oxidized and is reduced in this reaction. The reducing agent is, and oxidizing agent is, .
(c) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, 'Li' is oxidized and is reduced in this reaction. The reducing agent is, 'Li' and oxidizing agent is, .
(d) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, 'S' is oxidized and is reduced in this reaction. The reducing agent is, 'S' and oxidizing agent is, .
(e) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, is oxidized and is reduced in this reaction. The reducing agent is, and oxidizing agent is, .
(f) The balanced chemical reactions is,
Half reactions of oxidation and reduction are :
Oxidation :
Reduction :
From this we conclude that, is oxidized and is reduced in this reaction. The reducing agent is, 'Mg' and oxidizing agent is, 'Cu'.
(2) weak ionic bond
(3) strong intermolecular force
(4) weak intermolecular force
B. different masses and a different number of molecules
C. equal volumes and the same number of molecules
D. different volumes and a different number of molecules
Answer is C - equal volumes and the same number of molecules.
Explanation;
Let's assume that CO and CO₂ are ideal gases. Then we can use ideal gas law, PV = nRT
Where, P is the pressure of the gas (Pa), V is the volume of the gas (m³), n is the number of moles of gas (mol), R is the universal gas constant ( 8.314 J mol⁻¹ K⁻¹) and T is temperature in Kelvin.
The temperature and the pressure of the both gases are same. Volume is also same as 1.0 L. R is a constant. So according to the formula, both gases have same number of moles. According to the Avogadro's constant, 1 mole has 6.022 x 10²³ particles.
number of molecules = Avogadro's constant x number of moles.
Hence, under the same conditions both gases have same number of molecules.
Answer:
D. a pure substance and an element.
Explanation:
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