The given semiconductor should be identified and after doping the produced semiconductor type should be determined. Concept Introduction: Semiconductor: The electrical conductivity of the substance increases when the temperature increases. In normal temperature conductivity of the substance is equal to insulator. N-type semiconductor: The host substance is doped by more valence electrons containing substance give n-type semiconductor. The conductivity of the host substance is increases when the valence electrons containing substance are doped. P-type semiconductor: The host substance is doped by less valence electrons containing substance give p-type semiconductor. Molar mass : The mole present in the gram of substance is called molar mass. Molar mass = Mass g mole ...... ( 1 )
The given semiconductor should be identified and after doping the produced semiconductor type should be determined. Concept Introduction: Semiconductor: The electrical conductivity of the substance increases when the temperature increases. In normal temperature conductivity of the substance is equal to insulator. N-type semiconductor: The host substance is doped by more valence electrons containing substance give n-type semiconductor. The conductivity of the host substance is increases when the valence electrons containing substance are doped. P-type semiconductor: The host substance is doped by less valence electrons containing substance give p-type semiconductor. Molar mass : The mole present in the gram of substance is called molar mass. Molar mass = Mass g mole ...... ( 1 )
Solution Summary: The author explains that the electrical conductivity of the substance increases when the temperature increases, and the mole present in the gram of substance is called molar mass.
Predict the organic products that form in the reaction below:
OH
H+
H+
+
☑
Y
Note: You may assume you have an excess of either reactant if the reaction requires more than one of those molecules to form the products.
In the drawing area below, draw the skeletal ("line") structures of the missing organic products X and Y. You may draw the structures in any arrangement that
you like, so long as they aren't touching.
Click and drag to start drawing a
structure.
✓
m
Determine the structures of the missing organic molecules in the following reaction:
+ H₂O
+H
H+
Y
Z
☑
☑
Note: Molecules that share the same letter have the exact same structure.
In the drawing area below, draw the skeletal ("line") structures of the missing organic molecules X, Y, and Z. You may draw the structures in any arrangement
that you like, so long as they aren't touching. Molecule X shows up in multiple steps, but you only have to draw its structure once.
Click and drag to start drawing a structure.
AP
+
Please help, this is all the calculations
i got!!! I will rate!!!Approx mass of
KMnO in vial: 3.464
4
Moss of beaker 3×~0. z Nax200:
= 29.9219
Massof weacerv after remosimgain
N2C2O4. Need to fill in all the
missing blanks.
ง
ง
Approx mass of KMnO4 in vials 3.464
Mass of beaker + 3x ~0-304: 29.9219
2~0.20
Miss of beaker + 2x-
29.7239
Mass of beaker + 1x~0.2g Naz (204
29-5249
Mass of beaver after removing as
qa Na₂ C₂O
T1
T2
T3
Final Buiet reading
Initial butet reading (int))
Hass of NaOr used for Titration
-reading (mL)
calculation Results:
8.5ml
17mL
27.4mL
Oml
Om
Oml
T1
T2
T3
Moles of No CO
Moles of KMO used
LOF KM. O used
Molenty of KMNO
Averagem Of KMOWL