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stellarik [79]
4 years ago
14

The grater the viscosity of a liquid the slower it flows. true or false.

Chemistry
2 answers:
stiv31 [10]4 years ago
5 0

Answer: True

Explanation:

Viscosity is defined as the resistance to the flow of a fluid. More are the inter molecular forces between the particles of a liquid, the more the viscosity of the liquid and thus it will flow slowly.  

The lesser are the inter molecular forces between the particles of a liquid, the lesser will be the viscosity and thus it will flow rapidly.

Example: Oil is more viscous than water and thus flows slowly than water.

Viscosity decreases with increase in temperature as the forces among particles decrease due to increase in kinetic energy and thus they offer less resistance to flow.

sineoko [7]4 years ago
3 0
Actually, yes it is indeed very true
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Please help!! Why is the following Electron Configuration incorrect for Aluminium?
Margarita [4]

Answer:

3s^1 would be 3s^2

Explanation:

5 0
3 years ago
Gallium has two naturally occurring isotopes: 69ga with a mass of 68.9256 amu and a natural abundance of 60.11% and 71ga. use th
Nataly [62]

There are two naturally occurring isotopes of gallium:  mass of Ga-69 isotope is 68.9256 amu and its percentage abundance is 60.11%, let the mass of other isotope that is Ga-71 be X, the percentage abundance can be calculated as:

%Ga-71=100-60.11=39.89%

Atomic mass of an element is calculated by taking sum of atomic masses of its isotopes multiplied by their percentage abundance.

Thus, in this case:

Atomic mass= m(Ga-69)×%(Ga-69)+X×%(Ga-71)

From the periodic table, atomic mass of Ga is 69.723 amu.

Putting the values,

69.723 amu=(68.9256 amu)(\frac{60.11}{100})+X(\frac{39.89}{100})

Thus,

69.723 amu=41.4312 amu+X(\frac{39.89}{100})

Rearranging,

X=\frac{69.723 amu-41.4312 amu}{0.3989}=70.9246 amu

Therefore, mass of Ga-71 isotope is 70.9246 amu.

7 0
3 years ago
Read 2 more answers
7 Which physical characteristic of a solution may
Nuetrik [128]

Answer:

2= its color

Explanation:

Transition elements are present in the middle of periodic table. These are d-block elements.

These are 38 elements.

All transition elements have partially filled d orbitals.

They showed color in compound because of d-d transition.

During the d-d transition electron absorbed the energy and emit the reminder energy. The emission is usually in the form of color light.

The color of ion is complementary to the absorbed color.

The transition elements are used as a catalyst in industries such as polymer, petroleum industries.

They are ductile, conduct heat and electricity.

5 0
3 years ago
**25 POINTS**. I doubt anyone will do this but it's worth a try to ask. To do this exercise, you will need fifteen containers, f
Travka [436]

Answer:

done not that hard

Explanation:

6 0
3 years ago
If one gram of sulphur dioxide contains x molecules what will be the number of molecules in 1g of methane
evablogger [386]

The ratio of molecules in sulphur dioxide and methane will be the same as the ratio of their moles. So, first of all we should find out the number of moles of sulphur dioxide in 1 gram of sulphur dioxide in 1 gram of sulphur dioxide, and the number of moles of methane in 1 gram of methane. This can be done as follows :

(i) The molecular formula of sulphur dioxide is SO_{2}

So, 1  mole of SO_{2} = Mass of 2'O'

=32+2*16

= 64 grams

Now, 64g of sulphur dioxide = 1 mole

So, 1g of sulphur dioxide = \frac{1}{64} mole

Thus, we have \frac{1}{64} mole of sulphur dioxide and it contains molecules in it. Now, since equal moles of all the substance contain equal number of molecules, therefore, \frac{1}{64} mole of methane will also contain x molecules of methane.

(ii) Molecular formula of methan is CH_{4}

So, 1 mole of CH_{4}  = Mass of C + Mass of 4 H

=12+4*12

Now, 16g of methane = 1 mole

So, 1 g of mathane = \frac{1}{16} mole

We know that:

\frac{1}{64} mole of methane contains = x molecules

So, \frac{1}{16}  mole of contains will contain =\frac{x*64}{16} molecules

=4x molecules

7 0
2 years ago
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