Answer:true
Explanation:
if you change the sequence, the answer you get may be wrong.
Two solutions, one with a mass of 450 g and the other with a mass of 350 g, are mixed. A chemical reaction occurs and 125 g of solid crystals are produced that settle on the bottom of the container. What is the mass of the remaining solution?
475 g is the correct response to the query. This is true because the combined mass of two solutions with masses of 450 g and 350 g equals 800 g. 125 g of solid crystals are created and fall to the bottom of the container as a result of a chemical reaction.
As a result, the mass of the residual solution is equal to 475 g, or 800 g less 125 g. It is significant to observe that the masses of the two solutions that were combined originally do not equal those of the solid crystals or the leftover solution.
This is because the two solutions' chemical reaction when combined results in a transition of the matter that is resulting in the production of a new substance.
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A chemist titrates 50.0 mL of a 0.1333 M benzoic acid (HCH,CO2) solution with 0.2560M NaOH solution at 25 °C. Calculate the pH at equivalence. The
PK, of benzoic acid is 4.20.
Round your answer to 2 decimal places.
Note for advanced students: you may assume the total volume of the solution equals the initial volume plus the volume of NaOH solution added.
DH-0
5
?
A hypothetical molecule, X–Y, has a dipole moment of 1.39 D and a bond length of 121 pm.
Calculate the percent ionic character of this molecule.
The percent ionic character of a molecule can be calculated using the following equation:
Percent Ionic Character = 100 × (μ/r)^2
Where μ is the dipole moment in Debye and r is the bond length in picometers.
Plugging in the given values, we get:
Percent Ionic Character = 100 × (1.39/121)^2
Percent Ionic Character = 100 × (0.0115)^2
Percent Ionic Character = 1.32%
What is dipole moment?
The dipole moment is a measure of the separation of positive and negative charges in a molecule. It is represented by the vector sum of the individual bond dipole moments and is measured in debyes (D).
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Which statement is true concerning visible light and the electromagnetic spectrum?
A.
Visible light is a large portion of the electromagnetic spectrum.
B.
Visible light is a small portion of the electromagnetic spectrum.
C.
All electromagnetic radiation is considered to be visible.
Answer:
The true statement concerning visible light and electromagnetic radiation is considered to be - d. Visible light is a small portion of the electromagnetic spectrum.
The electromagnetic spectrum is the range of frequencies of electromagnetic waves or radiations. This spectrum also gives an idea about the wavelengths of electromagnetic radiations. The part of the spectrum on their higher to lower energy or frequency range from Hz to Hz are:
gamma rays
X-rays
ultraviolet radiation
visible light
infrared radiation
radio waves.
The visible light is the very small part of the electromagnetic spectrum that ranges from the to, Visible light is the light that the human eye can see.
Thus, the correct answer is- option d.
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Explanation:
i did this
0/1 pt 1010 DetailsLithium carbonate and phosphoric acid react to form products in a double displacement reaction.Write the balanced chemical equation for this reaction. Make sure to correctly format the formulas withsubscripts if necessary.
Explanation:
When balancing a chemical equation, the number of elements on the left hand side must be equal to the number of elements on the right hand side.
LiCO3 = Lithium carbonate
H3PO4 = Phosphoric acid
Answer:
\(3Li_2CO_3+2H_3PO_4\rightarrow3H_2CO3+2Li_3PO_4\)
How do particles tend to move in solids?
They vibrate about fixed points.
They move randomly through the solid while remaining in close contact with other particles.
They move in orbits around a center.
They move randomly through the solid and separately from other particles.
Please help to answer these questions please just give the option, no need explanation. Thanks
Answer:
Well hey there!
There isn't any info on what you need help with!
Sorry...
pOH of the 0.001M NaOH solution is
The pOH of the 0.001 M NaOH solution is approximately 3.
To determine the pOH of a solution, we need to know the concentration of hydroxide ions (OH-) in the solution.
In the case of a 0.001 M NaOH solution, we can assume that all of the NaOH dissociates completely in water to form Na+ and OH- ions. Therefore, the concentration of hydroxide ions in the solution is also 0.001 M.
The pOH is calculated using the equation:
pOH = -log[OH-]
Substituting the concentration of hydroxide ions, we have:
pOH = -log(0.001)
Using a calculator, we can evaluate the logarithm:
pOH ≈ 3
Therefore, the pOH of the 0.001 M NaOH solution is approximately 3.
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What is the difference between a transition metal and an f-element?
Answer: The transition elements are in the d-block, and in the d-orbital have valence electrons. They can form several states of oxidation and contain different ions. Inner transition elements are in the f-block, and in the f-orbital have valence electrons.
Explanation:
Transition metals are elements that have partially filled the d-orbital while in f-block elements the electron is filled in the f-orbital.
What are transition metals and f- block elements?Transition elements or transition metals are elements that have partially filled d-orbitals. An element that has the ability to produce cations with an incompletely filled d-orbital or an element having a d-subshell that is incompletely filled with electrons.
Any element which belongs to the d-block of the modern periodic table or is present in group 3 to 12 is considered to be a transition metal.
The f-block elements are those in which the f-orbital gets filled up by electrons. The f-block elements have electrons 1 to 14 in their f-orbital, and 0 to 1 in their d-orbital.
The f-block element is classified into two series one lanthanides and other actinides corresponding to the filling of electrons in 4f and 5f orbitals respectively. The f- block elements are placed at the bottom of the modern periodic table.
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How many moles are contained in 7.88 x 1024 atoms of Iron?
Answer:
I answered in the last question you asked
What is the mass number of an atom with 24 protons and 30 neutrons?
Answer:
54
Explanation:
Mass number = protones + neutrons
Mass number = 24 + 30
Mass number = 54
Based on what you know about types of reactions, create 3 testable questions that help you determine which type of reaction has occurred in your reaction scenario. For hydraulic acid and magnesium reaction.
The questions for the reaction between hydraulic acid and magnesium are as follows: depending on the reactant and outcome, is it a combo, decomposition, single replacement, triple replacement, or combustion.
What are the byproducts created when magnesium and hydraulic acid are combined?Identification of the by products of component mixing will be aided by the second investigation. Based on the final products created, a reaction can be categorized as synthesis, decomposition, solo replacement, double renewal, or combustion.
What impact does temperature have on the pace at which magnesium and hydraulic acid react?will make it easier to determine how temperature affects reaction pace. We may classify a response as exothermic or absorption of heat based on how temperature affects it.
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A patient provides you a prescription for Percocet, a medication he has never taken before and his insurance company is requiring prior authorization. What steps should be taken?
To ensure insurance coverage for Percocet, it is essential to verify the patient's insurance coverage and check if prior authorization is required. If prior authorization is necessary, gather the required information, complete the authorization form, and submit it to the insurance company.
When a patient presents a prescription for a medication like Percocet, which requires prior authorization from the insurance company, several steps should be taken:
Verify Insurance Coverage: Check the patient's insurance coverage and confirm if prior authorization is required for Percocet. This can be done by contacting the insurance company or using an online portal provided by the insurer.
Review Prior Authorization Criteria: Understand the specific requirements set by the insurance company for obtaining prior authorization for Percocet. This may include documentation, medical history, and supporting evidence to justify the need for the medication.
Gather Patient Information: Collect relevant patient information, including medical records, diagnosis, and any previous treatments. This information will be used to support the prior authorization request.
Complete Prior Authorization Form: Fill out the necessary prior authorization form provided by the insurance company. Ensure that all required information is accurately entered, including the patient's details, prescriber information, and supporting documentation.
Submit the Request: Send the completed prior authorization form along with any supporting documents to the insurance company. This can be done electronically through their designated channels or by fax/mail, following their specified process.
Follow Up: Monitor the progress of the prior authorization request. Follow up with the insurance company to confirm receipt, inquire about any additional information needed, and track the status of the request.
Inform the Patient: Keep the patient informed about the prior authorization process, estimated timelines, and any potential out-of-pocket costs they may incur.
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State three precautions necessary to ation. explain how you can prepare 0.2m solution of tetraoxosulphate (VI) acid in 400cm³ volumetric flask. (CH=1, 0=16, S=32; specify gravity = 1.84 percentage purity=98) Halls
Wear personal defence tools, follow the guidelines and be careful with chemicals. Measure 14.72g of \(H_2SO_4\), dissolve in distilled water, and make up to 400mL in a volumetric flask.
1. Always wear appropriate personal protective equipment such as gloves, goggles, and lab coat.
2. Read and follow the instructions carefully before handling any chemical.
3. Handle the chemicals in a well-ventilated area to prevent inhalation of harmful fumes.
To prepare a 0.2M solution of tetraoxosulphate (VI) acid in a \(400cm^3\) volumetric flask:
Calculate the amount of tetraoxosulphate (VI) acid required using the formula:
Mass = (Molarity x Volume x Molecular weight) / 1000
Where:
Molarity = 0.2M
Volume =\(400cm^3\)
Molecular weight = (4x16) + 32 + (6x16) = 98g/mol
Mass = (0.2 x 400 x 98) / 1000 = 7.84g
Weigh out 7.84g of tetraoxosulphate (VI) acid using a balance.
Transfer the weighed tetraoxosulphate (VI) acid into the \(400cm^3\) volumetric flask using a funnel.
Add distilled water to the flask until the volume reaches the \(400cm^3\) mark on the neck of the flask.
Stopper the flask and mix the solution thoroughly by inverting the flask several times.
It is important to specify the density of the tetraoxosulphate (VI) acid, as this will affect the mass required for the solution. In this case, the percentage purity of the acid is also given, which can be used to calculate the actual mass of the tetraoxosulphate (VI) acid needed.
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4. Which is NOT true for ionic compound?
A. usually have high melting and boiling point.
B. characterized by sharing of electrons
C. characterized by transfer of electrons loth Die Hotarw
W
D. forms network of ions.
(option B) Characterized by sharing of electrons is not true for ionic compounds.
What are ionic compounds?Ionic compounds are chemical compounds formed by the transfer of electrons between a metal and a non-metal. They are composed of positively charged ions (cations) and negatively charged ions (anions) that are held together by electrostatic attractions.
Ionic compounds are formed through the transfer of electrons from one atom to another, resulting in the formation of positively charged cations and negatively charged anions. These oppositely charged ions are held together by strong electrostatic forces of attraction, forming a crystalline lattice structure.
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Determine the amount of moles of SiO2 needed to produce 4.80g of CO.
SiO2(s) + _C(s) — _SiC(s) + I co(g)
A)134 mol
B)0.171 mol
C)67.2 mol
D) 0.0857 mol
PLEASE ANSWER QUICKLY!!
100 NaNO3
90
Solute per 100 g of H₂O (g)
0,80
NH,CI
70 KNO3
60
50
40
30
20
10
0
0 10 20 30 40 50 60 70 80 90 100
Temperature (°C)
KCIO3
60 g KNO3 has
been added to
100 g H₂O at
30 °C. What
type of solution
is this?
A. unsaturated
B. saturated
C. supersaturated
If 60 grams of the substance are added to 100 g of water, the solution can be categorized as supersaturated.
How saturated is this solution?The graph shows the number of grams that can be dissolved in 100 grams of water at different temperatures. In general, solubility increases with temperature.
According to the graph, at a temperature of 30°C, it is possible to dissolve a total of 48 to 49 grams of \(KNO_{3}\). This information implies that if we add 60 grams at this temperature not all the substance would be dissolved, and therefore the solution would be supersaturated.
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Which of the following protects Earth's atmosphere from solar wind
a. radiative zone
b. hydrogen atoms
c. convection currents
d. magnetosphere
The magnetosphere protects the earth's atmosphere from the solar wind.
Hence, option (d) is correct.
The magnetosphere is the area of spcae, around the earth which is controlled by the magnetic field of the earth.
The magnetosphere is created because of the earth's own magnetic field which is generated from the outer core.
The magnetosphere is made up of plasma having charged particles, mainly electrons and protons,
The magnetosphere stretches from the earth's core out into space. Here it meets solar winds or solar radiation emitted by the sun. The magnetosphere is acting as a shield and protects the earth from harmful solar radiation.
Hence, the magnetosphere protects the earth's atmosphere from the solar wind.
Therefore, option (d) is correct.
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Answer: The answer is magnetosphere
Explanation:
You will get it right.
A tree can be a _________________________ for insects in a schoolyard.
Answer:
habitat/shelter
Explanation:
How many milliliters of 0.500 M HBr would be required to react with 40.0 mL of 0.300 M Ca(OH)2?
Answer:
48dm³
Explanation:
Given reaction:
Ca(OH)₂ + 2HBr → CaBr₂ + 2H₂O
Parameters:
Concentration of HBr = 0.5M
Volume of Ca(OH)₂ = 40mL
Concentration of Ca(OH)₂ = 0.3M
Solution:
To solve this problem, we are going to use the mole concept. We solve from the known specie to the unknown.
We first find the number of moles of the known specie which is the Ca(OH)₂ ;
number of moles = concentration x volume
number of moles = 0.3 x 40 x 10⁻³ = 0.012moles
From the reaction equation;
1 mole of Ca(OH)₂ requires 2 moles HBr
0.012 moles of Ca(OH)₂ will require 0.012 x 2 = 0.024moles of HBr
Now,
To find the volume of HBr;
Volume = \(\frac{number of moles }{concentration}\)
Volume = \(\frac{0.024}{0.5}\) = 0.048dm³
In mL;
Volume 0.048 x 1000 = 48dm³
Calculate these mass of 0.520 moles
Answer:
5 is the perfect Ans for this
33. what is the correct order for obtaining salt from a mixture of sand and water a) dissolving in water, filtration, evaporation b) evaporation, filtration, dissolving in water c) filtration, dissolving in water, evaporation.
To obtain salt from a mixture of salt and sand, the mixture is filtered, then dissolved in water, and finally, water is made to evaporate leaving the sand. So, option C is the correct answer.
Sand and salt mixture consists of soluble and insoluble components. Salt is soluble in water while sand is not. The sand from this mixture can be separated using filtration, a method of filtering insoluble components from a solvent, typically using filter paper or various mediums in an industrial process. This way sand is separated from the mixture.
However, there will be minute particles that may not be filtered but are mostly insoluble. So, the mixture is mixed in water where salt dissolves leaving the other impurities that are insoluble.
The salt water is then heated so that water evaporates leaving only the salt behind. In this way, only salt is obtained.
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What is the molarity of a 21.2 g of LiCI of a 4. 0 L solution?
Molarity is defined as the moles of a substance in a volume of solution. That is, we can represent it with the following equation:
\(\text{Molarity}=\frac{\text{Moles of solute}}{L\text{ of solution}}\)We are given the liters of the 4.0L solution. We must find the moles of LiCl that represent 21.2g of LiCl. To do this conversion we use the molar mass of LiCl equal to 42.394g/mol. Therefore, the moles of LiCl will be:
\(\begin{gathered} \text{molLiCl}=GivengLiCl\times\frac{1molLiCl}{MolarMass,gLiCl} \\ \text{molLiCl}=21.2gLiCl\times\frac{1molLiCl}{42.394gLiCl}=0.50molLiCl \end{gathered}\)If we replace the value obtained in the first equation we will get tho molarity of the solution:
\(\text{Molarity}=\frac{0.50\text{molLiCl}}{4.0L\text{ solution}}=0.13M\)The molarity of the solution will be 0.13M
An emission spectrum has a line in the blue region. How does this occur in the atom?
A. An electron ABSORBS a photon as it goes from a HIGHER TO LOWER energy level.
B. An electron EMITS a photon as it goes from a HIGHER TO LOWER energy level.
C. An electron EMITS a photon as it goes from a LOWER TO HIGHER energy level.
D. An electron ABSORBS a photon as it goes from a LOWER TO HIGHER energy level.
B. An electron EMITS a photon as it goes from a HIGHER TO LOWER energy level.
When an electron in an atom drops from a higher energy level to a lower energy level, it releases energy in the form of a photon.
What is Spectrum?
In science, the term "spectrum" is often used to describe the range of colors of visible light, known as the "visible spectrum," which includes all the colors of the rainbow. This spectrum is produced when white light is dispersed into its component colors by a prism or other means.
This energy is specific to the atom and its electron configuration, which is why each atom emits a unique set of wavelengths, creating a distinct emission spectrum.
Since the emission spectrum in the question has a line in the blue region, it means that the energy released by the electron corresponds to a specific frequency or wavelength in the blue region of the visible spectrum.
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4.96 megameters to inches show work
Calculate the heat change in kilocalories for condensation of 6.5 kg of steam at 100 ° C
Answer:
6,500 gm of steam require= 3,510 kilo calories (approx)
Explanation:
Every 1 gram of water at 100° C absorb 540 calories
So,
Total water = 6.5 kg = 6,500 gram
So,
6,500 gm of steam require = 6,500 x 540
6,500 gm of steam require= 3,510 kilo calories (approx)
According to the question,
Total water,
6.5 kg or 6,500 gTemperature,
100°CNow,
Required steam will be:
= \(6500\times 540\)
= \(3510 \ kilo \ calories\)
Thus the above answer is right.
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PSYCHOLOGYDescribe how sensation and perception work together.
Answer:
Perception is the psychological process in which sensory input is organized and interpreted into meaningful information. The sensory and perceptual processes work together so that organisms can make sense out of objects or events that appear in their environment. For example, when looking at a cat, one senses a combination of shapes and colors. The mind instantly processes these visual sensations into something meaningful, letting one know it's a cat.
Explanation:
^^
Answer:
Perception is the psychological process in which sensory input is organized and interpreted into meaningful information. The sensory and perceptual processes work together so that organisms can make sense out of objects or events that appear in their environment. For example, when looking at a cat, one senses a combination of shapes and colors. The mind instantly processes these visual sensations into something meaningful, letting one know it's a cat.
Explanation:
Edge 2021
An early arrangement of the then known elements was proposed by a British scientist John Newlands, which he called the Law of Octaves. Like other scientists at the time, Newlands arranged the elements in order of increasing atomic mass and noted that every eighth element had similar physical/chemical properties. In the modern Periodic Table, which of the following represents the last pair of elements for which Newlands' Law of Octaves would hold true?
Find the SDS for regular bleach
The Safety Data Sheet (SDS) for regular bleach can be obtained from the manufacturer or supplier of the specific brand or product. It contains important information regarding the hazardous properties, handling, storage, and emergency procedures related to the bleach.
An SDS typically includes details such as the product's chemical composition, physical and chemical properties, potential hazards to health and the environment, precautionary measures for safe handling and storage, first-aid procedures, and information about proper disposal. It also provides guidance on personal protective equipment (PPE) to be used when handling the product and steps to take in case of accidental release or exposure.
The SDS serves as a crucial resource for understanding the potential risks associated with the use of regular bleach and helps ensure that appropriate safety measures are implemented. It is important to review and follow the information provided in the SDS to minimize the risk of accidents, injuries, or adverse health effects associated with the use of the product.
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HELP! I DON'T UNDERSTAND!?
Answer:
DECREASES THIS IS OBVIOUS
Explanation: