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N76 [4]
3 years ago
5

Mg3(Si2O5)2(OH)2

Chemistry
1 answer:
natulia [17]3 years ago
5 0

Answer:

0.0595 moles of silicon (Si)

Explanation:

From the chemical formula of the compound we devise the following reasoning:

if for        3 moles of magnesium (Mg) we have 2 moles of silicon (Si)

then for  0.0893 moles of magnesium (Mg) we have X moles of silicon (Si)

X = (0.0893 × 2) / 3 = 0.0595 moles of silicon (Si)

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Which information best determines the location of an element on the periodic table?
goldenfox [79]

Answer:

C: properties

Explanation:

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3 years ago
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When 25.0 mL of a solution of 1.4 x 10-3 M silver nitrate is mixed with 60.0 mL of a solution of 7.5 x 10-4 M sodium chloride a)
LUCKY_DIMON [66]
Step  one write  the  equation  for  dissociation  of  AgNO3  and  NaCl

that  is   AgNO3-------> Ag+   + NO3-

            NaCl-------->   Na+   +  Cl-
then  find  the  number  of  moles  of  each  compound
that  is  for   AgNO3  = ( 1.4 x10^-3 ) x  25/1000=  3.5  x10^-5  moles
                     Nacl=  (7.5  x10^-4)x 60/1000=  4.5  x10^-5  moles

from   mole  ratio  the  moles  of    Ag+=  3.5  x10^-5 moles  and  that  of  Cl-= 4.5  x10^-4 moles

  then find  the  total    volume  of  the  mixture
that  is  25ml  +  60 Ml  =85ml  =  0.085 liters

The  Ksp  of  Agcl =  (Ag+) (cl-),    let  the  concentration  of  Ag+ be  represented   by  x  and   also  the  concentration  be  represented by  x

ksp (1.8 x10^-10)  is  therefore=  x^2

find  the  square  root   x=1.342   x10^-5

Ag+ in  final  mixture  is =  moles  of  Ag+/total  volume - x
that is  {(3.5  x10^-5)/0.085}  -  1.342  x10^-5=3.98x10^-4


Cl-  in  the  final  mixture   is =(4.5  x10^-5 /0.085)  -  1.342  x10^-5= 5.16 x10^-4
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4 years ago
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3 years ago
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What would be the mass of a 45 cm^3 cube of Uranium?
Gnesinka [82]

Answer:

m = 859.5  g

Explanation:

d (Uranium) = 19.1 g/cm3

V = 45 cm3

m = V × d = 45 × 19.1 = 859.5  g

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3 years ago
How electron infinity depends upon nuclear force of attraction​
almond37 [142]

Answer:

There are two factors that can affect electron affinity. These are atomic size and nuclear charge. ... The smaller the atom is, the closer the outermost shell is; therefore, it is a stronger attraction between the nucleus and the incoming electron. That means the electron affinity is higher for smaller atoms.

Explanation:

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