The atoms of a certain material can absorb red and blue light frequencies. What happens to yellow light that shines on it? It is absorbed.
It is reflected.
It is transmitted.
It is either reflected or transmitted.

Answers

Answer 1
Answer:

Answer: It is either reflected or transmitted.

Explanation:

The color of the objects is due to the light reflected to our eyes.The light falls on the surface of the object and the color which does not get absorbed by the object gets transmitted or reflected and thus appear to be of the same color as the reflected or transmitted light.

Example:  If an object absorbs all of the frequencies of visible light except for the frequency associated with green light, then the object will appear green in color.

Answer 2
Answer: It is reflected ir transmitted depending on what the material is. The color that something appears is actually the color that it reflects or transmits and not the color that it absorbs. I hope this helps.

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The net energy released or absorbed during a reversible chemical reaction is equal to(1) the activation energy of the endothermic reaction
(2) the activation energy of the exothermic reaction
(3) the difference between the potential energy of the products and the potential energy of the reactants
(4) the sum of the potential energy of the products and the potential energy of the reactants

Answers

Answer: The correct answer is Option 3.

Explanation:

The net energy absorbed or released in a chemical reaction is known as the total enthalpy change of the reaction. It is written as \Delta H_(rxn)

The formula used to calculate total enthalpy of the reaction is:

\Delta H_(rxn)=\sum H_(products)-\sum H_(reactants)

where,

H_(products) = Potential energy of the products

H_(reactants) = Potential energy of the reactants

Hence, the correct answer is Option 3.

c. The differencece between the potential energy of the products and the potential energy of the reactants

A sample of gas is held at constant pressure. Increasing the Kelvin temperature of this gas sample causes the average kinetic energy of its molecules to(1) decrease and the volume of the gas sample to decrease
(2) decrease and the volume of the gas sample to increase
(3) increase and the volume of the gas sample to decrease
(4) increase and the volume of the gas sample to increase

Answers

Increasing the temperature of a gas sample means that heat energy is been supplied to the System. When energy is been supplied heat energy is transformed into kinetic energy of the gas molecules.
Therefore kelvin temperature increases means more energy given to the system therefore average kinetic energy of molecules increase.
When the kinetic energy of molecules increase they move about more and take up more space. Hence volume too increases.
Therefore the correct answer is
4) average kinetic energy of molecules increase and volume of the gas sample increases
The answer is (4). When the pressure is constant, he temperature increasing can cause both the average kinetic energy of its molecules and the volume of gas sample increase.

How many neutrons are in an atom of sulfur with a mass number of 35?a. 16
b. 17
c. 18
d. 19

Answers

As the mass difference between protons and neutrons isn't too different we can determine how many neutrons an atom has by subtracting the number of protons from its atomic mass.

Sulfur has 16 protons, so 35-16 = 19. So there are 19 neutrons present.

QUESTION 6 D Complete the photosynthesis equation below. CO2+ H2O -> C6H1206 02 ACTION

Answers

Answer:

The complete photosynthesis equation is:

6 CO2 + 6 H2O + light energy → C6H12O6 + 6 O2

This equation represents the process of photosynthesis, where carbon dioxide (CO2) and water (H2O), in the presence of light energy, react to produce glucose (C6H12O6) and oxygen (O2).

Final answer:

The photosynthesis equation is: 6CO2 + 6H2O + light energy -> C6H12O6 + 6O2. During photosynthesis, plants use carbon dioxide and water to produce glucose and oxygen.

Explanation:

Photosynthesis is the process by which green plants, algae, and some bacteria convert light energy into chemical energy in the form of glucose. The equation for photosynthesis is:

6CO2 + 6H2O + light energy -> C6H12O6 + 6O2

In this equation, carbon dioxide (CO2) and water (H2O) are converted into glucose (C6H12O6) and oxygen (O2) in the presence of light energy.

During photosynthesis, plants use carbon dioxide and water to produce glucose and oxygen. The process takes place in the chloroplasts of plant cells, specifically in the chlorophyll-containing organelles called chloroplasts. Chlorophyll absorbs light energy, which is used to convert carbon dioxide and water into glucose and oxygen.

Learn more about photosynthesis equation here:

brainly.com/question/29764662

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Which model of the atom was able to explain both the bright-line spectrum of the hydrogen atom and also aspects of chemical bonding?

Answers

Bohr model of atom was able to explain both the bright line spectrum of hydrogen atom and also aspects of chemical bonding
hope this helps

Which sequence describes the result of increasing the number of gas particles in a container? A.) fewer collisions --> lower collision force --> lower pressure B.)more collisions --> lower collision force --> lower pressure. C.) fewer collisions --> greater collision force -->higher pressure. D.)more collisions --> greater collision force --> higher pressure

Answers

Answer: Option (D) is the correct answer.

Explanation:

It is known that relation between pressure and force is that, pressure equals force divided by area.

Mathematically,      P = (F)/(a)

where              P = pressure

                        F = force

                        a = area

Hence, when there is increase in number of gas particles in a container the there will be more number of collisions due to increase in number of particles. This will lead to greater collision force and as a result there will be increase in pressure because force is directly proportional to pressure.

Thus, we can conclude that the sequence more collisions --> greater collision force --> higher pressure best describes the result of increasing the number of gas particles in a container best describes the result of increasing the number of gas particles in a container.

I believe the correct response is D. More collisions that result in greater collision force and higher pressure.