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love history [14]
4 years ago
7

Which of the following provided evidence that most of the mass of the atom, as well as all of the positive charge, is concentrat

ed in a very small core (the nucleus)? 1. the analysis of x-ray wavelengths 2. the existence of elements with noninteger values for atomic weights 3. the deflection of ions in a mass spectrometer 4. the results of the Millikan oil-drop experiment 5. the scattering of α particles by a metal foil
Chemistry
1 answer:
gayaneshka [121]4 years ago
4 0

Answer:

5. the scattering of α particles by a metal foil

Explanation:

This is the classical Rutherford's experiment in which he bombarded a thin foil of gold with alpha particles which are positively charged helium nucleus.

He did observed that most of the particles passed through the foil relatively undeflected or if they were deflected it was by a very small angle.

Once in a while the alpha particle rebounded completely. An analogy is the one typically mentioned that it was as if we throw a ball at a piece of paper and it rebounds toward us.

This observations led Rutherford to conclude that the nucleus of the atom is  very small positely charged and  that the  atom is relatively empty  with electrons of very small masses. His model is referred as the Plum Pudding model and later Bohr modified it to the planetary model.

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Calculate the molarity of a solution containing 9.25 mol H2SO4 in 2.75 L of solution.
Akimi4 [234]

Answer:

THE MOLARITY OF THE SOLUTION IS 3.36 MOLE/L

Explanation:

First we must understand what molarity is.

Molarity is the number of mole per unit volume of solution. In this question, 9.25 mole of H2SO4 was given in 2.75 L of solution.

Molarity is written in mole per dm3 or L.

So we can calculate the molarity:

9.25  ole of H2SO4 = 2.75 L of solution

The number of mole in 1 L of solution will be:

= 9.25 mole / 2.75 L

= 3.3636 mole/ L

In conclusion, the molarity of the solution is approximately 3.36 mole/L

8 0
4 years ago
An isotope of an element, atomic number Z, has a mass number 2z+4. How many neutrons are there in the nucleus of the element?
Svet_ta [14]

Answer:

z+4

Explanation:

An isotope of an element, atomic number Z, has a mass number 2z+4. How many neutrons are there in the nucleus of the element?o

protons + neutrons =mass number

so

z +neutrons = 2z+4

neutrons = 2z+4 - z=z+4 which is the # of neutrons in the nucle

us

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Answer:

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