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Semenov [28]
3 years ago
8

If a sound wave traveled from a solid to a liquid its speed would

Chemistry
1 answer:
Svetach [21]3 years ago
6 0
Slow Down, because sound waves travel faster through solids than through liquids.
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Identify the elements given the orbital diagrams listed below.​
Mrrafil [7]

Answer:

See explanation.

Explanation:

1. There are 8 electrons. Elements that end with 2p orbitals are in the 2nd period (aka row) of the periodic table. Elements that have 4 electrons in 2p are in the 16th group (aka column) (column 16 may also be referred to as 6A) of the periodic table. So looking at row 2, column 16, we can see that the first diagram is of O, Oxygen.

2. 8 electrons. This is the same diagram as the one above.

3. 13 electrons. Elements ending with 3p are in period 3. Elements with 1 valence electron in a p orbital are in group 13 (aka group 3A).

4. 7 electrons. We already know 2p is period 2. 3 valence electrons in a p orbital means that it is in group 15/group 5A.

I did not write the answers for #3 and 4 but they can be easily found on a periodic table with the info I gave.

4 0
4 years ago
Which of the following molecules is the primary product of photosystem I?a) Carbon dioxideb) Oxygenc) NADPHd) ATP
Lina20 [59]

<u>Answer:</u>

The primary product of the photosystem I is NADPH.

<u>Explanation: </u>

NADPH is the acronym of Nicotinamide adenine Dinucleotide Phosphate. This NADPH plays a vital role in many chemical reactions that take place during  photosynthesis process. NADPH is released as a product in Photosystem I.

In the photosystem I process, the molecule present will absorb sunlight energy and transfers it to electrons to produce NADPH. This NADPH molecule is used as fuel for the chemical process that occurs during the 2nd stage of the photosynthesis process. Its molecular formula is C_{12} H_{30} N_{7} O_{17} P_{13}. It acts as a fundamental metabolite.

6 0
3 years ago
The electron configuration belonging to the atom with the highest second ionization energy is ________.
Gemiola [76]

Answer:

Element Lithium

Explanation:

The element with the highest second ionization energy is lithium. It belongs to the alkaline metal group I.e group one metals

It has the highest second ionization energy because it is very difficult to remove the electron from the 1s orbital.

Its atomic number is 3. The electronic configuration is 1s2 2S1

5 0
3 years ago
Perform the following for Part C of this lab:
kaheart [24]

Answer:

a. 0.0110 L

b. 0.0020 L

c. 0.011 mol

d. 5.5 M

e. 0.66 g

f. 33%

Explanation:

There is some info missing. I will use some values to show you the procedure and then you can replace them with your values.

<em>Titrant (NaOH) concentration: 1.0 M</em>

<em>Vinegar volume: 2.0 mL</em>

<em>Initial buret reading (initial NaOH volume): 0.1 mL</em>

<em>Final buret reading (final NaOH volume): 11.1 mL</em>

<em>a. Calculate the volume of NaOH that was added to the vinegar. Convert this volume to liters. Show your work.</em>

The volume of NaOH is the difference between the final and the initial buret reading.

11.1 mL - 0.1 mL = 11.0 mL × (1 L/1000 mL) = 0.0110 L

<em>b. Convert the measured volume of vinegar to liters. Show your work.</em>

2.0 mL × (1 L/1000 mL) = 0.0020 L

<em>c. Calculate the moles of NaOH using the volume and molarity of NaOH. Show your work. moles = molarity x volume</em>

moles = molarity × volume

moles = (1.0 mol/L) × 0.0110 L = 0.011 mol

<em>d. Since the reaction ratio is 1:1, the moles of acetic acid in the vinegar is equal to the moles of NaOH reacted during the titration. Calculate the molarity of the acetic acid in the vinegar. Show your work. molarity = moles / volume</em>

molarity = moles / volume

molarity = 0.011 mol/0.0020 L = 5.5 M

<em>e. Calculate the grams of acetic acid in the vinegar. Show your work. mass = moles x molar mass (g/mol)</em>

mass = moles × molar mass

mass = 0.011 mol × 60.05 g/mol = 0.66 g

<em>f. Assuming that the density of vinegar is very close to 1.0 g/mL, the 2.0 mL sample of vinegar used in the titration should weigh 2.0  g. Use this to calculate the mass % of acetic acid in the vinegar sample. mass % = (mass acetic acid / mass vinegar) * 100%</em>

mass % = (mass acetic acid / mass vinegar) * 100%

mass % = (0.66 g /2.0 g) * 100% = 33%

6 0
3 years ago
What is a Ca+ in chemistry? Is it a positive ion?
nikklg [1K]
 it is a postive ionnnnnnnnnnnnnnnnnnnnn
5 0
3 years ago
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