Iron, carbon, and phosphorus are elements found in the periodic table. Tests involving these three elements would show that at normal room temperature

Answers

Answer 1
Aluminum is malleable and conducts electricity

Related Questions

after 65 minutes, the amount of a particular radioisotope remaining is 3.13% of the initial amount. what is the half life of the radioisotope?

Answers

Answer:

13 mins

Explanation:

We need to find how many half lives are required to reach .0313

.0313 = 1/2^n    log both sides and solve for n

log.0313 / log (1/2 )   = n     where n= NUMBER of halflives

n = ~ 5 half lives

   these 5 half lives took up 65 minutes

       so EACH half life is 65/5 = 13 mins

Is the formula of both copper (1) superoxide and copper (2) peroxide CuO2? ​

Answers

Answer:

Copper(2+) is an ion of copper carrying a double positive charge. It has a role as a cofactor. It is a divalent metal cation, a copper cation and a monoatomic dication. Oxidation means loss of electron and reduction means gain of electron. In this case Cu donates 2 electrons to form Cu^2+ ion,therefore,its an oxidation process.

Explanation:

Which of the following choices could be an isomer of a compound with an empirical formula of C₂H₆O₂?


C₄H₉O₄


C₄H₁₂O₄


CHO


CH₂O

Answers

Considering the definition of empirical and molecular formula, the isomer of a compound with an empirical formula of C₂H₆O₂ is C₄H₁₂O₄.

Definition of empirical formula

The empirical formula is the simplest expression to represent a chemical compound, which indicates the elements that are present and the minimum proportion in whole numbers that exist between its atoms, that is, the subscripts of chemical formulas are reduced to the most integers. small as possible.

Molecular formula

The molecular formula is the chemical formula that indicates the number and type of different atoms present in the molecule. The molecular formula is the actual number of atoms that make up a molecule.

The molecular formula of a compound can be the same as its empirical formula or a multiple of it. So by simplification, the simplest possible integers are found, so as to find the empirical formula.

Isomer of a compound with an empirical formula C₂H₆O₂

The given isomer of a compound is C₄H₁₂O₄. For this isomer, simplifying (dividing by 2) the corresponding ratios between the elements, you get the empirical formula C₂H₆O₂.

In summary, the isomer of a compound with an empirical formula of C₂H₆O₂ is C₄H₁₂O₄.

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What is the Heisenberg Uncertainty Principle?

A. We can know either the speed (momentum) or location, but not both at the same time.

B. We cannot ever know the speed (momentum) or location of the electron.

C. We can know only the speed (momentum) of the electron, but never the location.

D. We can know only the location of the electron, but never the speed (momentum).​​

Answers

Answer:

b option is correct

Explanation:

we cannot ever know the speed and location of the electron

The table describes a gas stored in four different containers. Properties of Stored Gas Container Properties 1 · Low number of collisions with container walls · Medium average kinetic energy · Large number of particles 2 · Large number of collisions with container walls · Medium average kinetic energy · Small number of particles with little spaces between them 3 · Large number of collisions with container walls · High average kinetic energy · Large number of particles with large spaces between them 4 · Few collisions with container walls · Low average kinetic energy · Small number of particles Which container has gas stored at the highest temperature? 1 2 3 4

Answers

Container 3 has the gas stored at the highest temperature.

Temperature is a measure of the average kinetic energy of the particles in a substance. In the given table, it is stated that container 3 has a large number of collisions with container walls, high average kinetic energy, and large number of particles with large spaces between them.

These properties indicate that the gas in container 3 has higher kinetic energy and more vigorous movement compared to the other containers.

Container 1 has a low number of collisions with container walls and a medium average kinetic energy. This suggests that the gas in container 1 has lower energy and less movement than the gas in container 3.

Container 2 has a large number of collisions with container walls, but it also has a small number of particles with little spaces between them. While the collisions may be frequent, the limited number of particles and the lack of space between them may result in lower overall kinetic energy compared to container 3.

Container 4 has few collisions with container walls, low average kinetic energy, and a small number of particles. These properties indicate that the gas in container 4 has the lowest energy and least movement among all the containers.

Container 3

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what is the first step in the scientific inquiry process​

Answers

Answer:

make an observation that describes a problem

Explanation:

Answer:

The first step in the Scientific Method is to make objective observations.

Explanation:

....-

Zeros between nonzero digits are significant

Answers

Answer:

Explanation:

If a zero is found between significant digits, it is significant

B) All nonzero digits are significant.

Please I need help thank you

Please I need help thank you

Answers

Answer:

its sodium hydroxide

Explanation:

A solution contains 6.30 x 10-2 g of oxalic acid, H2C204 - 2
H20, in 250 mL. What is the molarity (M) of this solution?

Answers

Answer: c= 1.99·10^-3 mol/l

Explanation: molar mass of oxalis acid is M=126.068 g/mol.

V= 0.25 l and mass is 0.063 g

Amount of substance n = m/ M = cV

Molality c = m/MV

I
II
III
none of the above

IIIIIInone of the above

Answers

2 is most likely to rearrange

Answer:

i think it will be the first one

Explanation:

Which one the correct

Which one the correct

Answers

How can I know I am not a god

Where does a solid and liquid both occur on the heating curve

Answers

Answer:

d

Explanation:

Answer

where ever they occur

Explanation:

they occur in where they are contain

How many moles are there in 100.0 grams of KMnO4

Answers

Answer:

the answer rounded to the nearest hundredth is 0.63

Explanation:

a chemical reaction experiment was carried out with the objective of comparing if a new catalyst b would give higher yields than the old catalyst a. the experiment was run on five different batches of raw material which were known to be quite different from one another. each batch was divided into two portions to which a or b was applied at random. the data collected are given in the following table: Catalyst 10 30 28 18 23 22 21 12 a). Explain the experimental design (b)_ Carry out the appropriate t-test.

Answers

According to the problem, we need to determine whether new catalyst B would give higher yields than old catalyst A. The given data is a paired sample, because both the catalysts were experimented on 6 different batches of raw materials.

(a) Explain the experimental design.

Here the data collected is from 6 different raw materials, which were divided into two portions. Therefore, two data were obtained for each of the 6 raw materials, which implies in scientific terms that repeated data was obtained for each of the 6 raw materials. Thus, this type of design is known as Repeated-Measures Design.

(b) Carry out the appropriate t test.

For testing whether the new catalyst B will give higher yields than old catalyst A, a Paired-Sample t-test needs to be performed. The test will be performed using R Studio. The R codes and output are as below.

R CODE

# Load the Data A <- c(9,19,28,22,18,8) B <- c(10,22,30,21,23,12)  # Paired Sample t-test t.test(A,B,paired = TRUE,alternative = "less")

R OUTPUT

# Paired Sample t-test > t.test(A, B, paired = TRUE, alternative = less) Paired t-test = data: A and B t = -2.6458, df = ">

The decision rule for this test is: "If the p-value < 0.05, then reject the null hypothesis, under 0.05 level of significance; otherwise accept the null hypothesis".

Decision: As p-value (= 0.02283) < 0.05, so we decide to REJECT the null hypothesis, under 0.05 level of significance.

Conclusion: As the null hypothesis is to be rejected, so we can conclude that "there is sufficient evidence conclude that the new catalyst B gives a higher yield than old catalyst A".

(c) Construct a 95% confidence interval for the difference between catalysts A and B.

From part (b),

we have obtained the R output about the 95% confidence interval for the difference between catalysts A and B as:

Therefore, the 95% confidence interval for the difference between catalysts A and B is (-∞, -0.56).

In frequency statistics, the confidence interval (CI) is the range of estimated values ​​for an unknown parameter. Confidence intervals are computed at the specified confidence level. A 95% confidence level is the most common, but other levels such as 90% and 99% are sometimes used . The confidence level represents the proportion of corresponding CIs over time that contain the true value of the parameter. For example, 95% of all intervals computed at the 95% level must contain the true value of the parameter.

Factors that affect the width of the CI include confidence level, sample size, and within-sample variability.  All other things being equal, the larger the sample, the narrower the confidence interval. Similarly, the more varied the sample, the wider the confidence interval, and the higher the confidence level, the wider the confidence interval.

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How many moles of nitrogen, N, are in 62.0 g of nitrous oxide, N2O?​

Answers

Answer- the estimated number is 4 moles but it actually is 3.86 moles
Explanation
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What type of radioactive decay is illustrated by the following nuclear equation? N ->0 + e positron emission b. alpha decay beta decay gamma production helium emission wnar nroni Search

Answers

A nuclear equation can be used to represent alpha decay. If the total numbers of protons and neutrons on both sides of the arrow are equal, the equation is balanced.

While all radioactive decay poses a threat to life, alpha decay poses the least threat. beta decay The transformation of the uranium-238 nucleus into the thorium-234 nucleus is an illustration of this decay. Half-lives are another unit used to express the rate of nuclear decay. A particular isotope's half-life is the amount of time it takes for its radioactivity to decay by half. A radioisotope having a half-life of 14 days will have had half of its atoms decay within that time frame. For instance, after generating intermediates like Uranium-234, Thorium-230, and Lead-206, the decay chain that starts with Uranium-238 ends in Lead-206.

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A sample of a gas occupies 2016 mL at 83°C
and 740 torr. At what temperature would
it occupy 1776.4 mL if the pressure is kept constant?
Answer in units of °C.

Answers

A sample of a gas occupies 2016 mL at 83°C and 740 torr. At 196.5°C, it occupy 1776.4 mL if the pressure is kept constant.

What is temperature?

The physical concept of temperature indicates in numerical form how hot or cold something is. A thermometer is used to determine temperature. Thermometers are calibrated using a variety of temperature scales, which historically defined distinct reference points or thermometric substances.

The most popular scales include the Celsius scale, sometimes known as centigrade, with the unit symbol °C, the scale for Fahrenheit (°F), or the Kelvin scale (K), with the latter being mostly used for scientific purposes. Another of the seven foundational units of the Worldwide System of Units is the kelvin.

T2 = (T1V2)/V1

T2 = (237 x1776.4)/ 2016

T2 = 196.5°C

Therefore, 196.5°C is the temperature.

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The half-life of the radioisotope 158Eu is 0.77 h. How much time is required for a 160.0-g sample of 158Eu to decay to 2.07 g?

a. 3.0 h
b. 4.0 h
c. 6.0 h
d. 2.1 h
e. 4.8 h

Answers

Answer: e. 4.8 h

Explanation:

Expression for rate law for first order kinetics is given by:

\(t=\frac{2.303}{k}\log\frac{a}{a-x}\)

where,

k = rate constant  

t = age of sample

a = let initial amount of the reactant  

a - x = amount left after decay process  

a) for rate constant

Half life is the amount of time taken by a radioactive material to decay to half of its original value.

\(t_{\frac{1}{2}}=\frac{0.693}{k}\)

\(k=\frac{0.693}{0.77hr}=0.9hr^{-1}\)

b) for 160.0 g to decay to 2.07 g

\(t=\frac{2.303}{0.9}\log\frac{160.0}{2.07}\)

\(t=4.8hr\)

The time  required for a 160.0-g sample of 158Eu to decay to 2.07 g is 4.8 hours

Relate the temperature of atmospheric gases to the production of rain.

Answers

Better temperatures can growth the quantity of water vapor withinside the air, that could growth the probability of precipitation.

Different factors, inclusive of air pressure, wind, and atmospheric instability, additionally play a function withinside the formation of rain, and the connection among temperature and precipitation may be complicated. The temperature of atmospheric gases could have a substantial effect at the manufacturing of rain. The environment is a complicated device that performs a vital function with inside the Earth`s water cycle, which incorporates the system of precipitation, inclusive of rain. Precipitation takes place while water vapor with inside the air condenses into liquid droplets or ice crystals, which fall to the floor as rain, snow, or hail. The temperature of the environment impacts the quantity of water vapor that the air can preserve. As temperature increases, the air can preserve extra water vapor, that could cause better tiers of humidity. When the air will become saturated with water vapor, it reaches its dew point, and the extra water vapor condenses into liquid droplets or ice crystals, that could shape clouds and subsequently precipitation. In addition, international warming, that's inflicting an growth in atmospheric temperatures, can cause modifications in precipitation styles and extra severe climate events. Understanding the connection among temperature and precipitation is vital for predicting and mitigating the affects of weather change.

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A solution was prepared by dissolving 105.0 g of KCl in 215 g of water.


What is the molality (in m) of KCl in this solution?
(Round your answer to TWO places past the decimal)

Answers

Considering the definition of molality, the molality of the KCl in the solution is 6.56 moles/kg.

Definition of molality

Molality, or molal concentration, is the amount of a substance dissolved in a given mass of solvent. It is defined as the moles of a solute per kilogram of solvent.

The Molality of a solution is determined by the expression:

molality= number of moles of solute÷ kilograms of solvent

Molality in this case

In this case, you know:

mass of KCl= 105 gmass molar of KCl= 74.55 g/molenumber of moles of solute= mass of KCl÷ mass molar of KCl= 105 g÷ 74.55 g/mole= 1.41 molesMass of solvent = 215 g of water= 0.215 kg (being 1000 g=1 kg)  

Replacing in the definition of molality:

Molality= 1.41 moles÷ 0.215 kg

Molality= 6.56 moles/kg

The molality of the solution is 6.56 moles/kg.

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A student reacts a solution of vinegar (clear liquid; CH3COOH) with baking soda (white powder; NaHCO3). When the reaction is finished, there is white powder at the bottom of the reaction vessel. What is most likely the limiting reactant for this reaction, according to the equation below?CH3COOH + NaHCO3 --> NaCH3COO + H2O + CO2A.) NaHCO3 (baking soda)B.) NaCH3COO (sodium acetate)C.) CH3COOH (vinegar)D.) H2O (water)E.) CO2 (carbon dioxide)

Answers

According to our question, we have a white powder at the end of this reaction.

The white powder responds to the baking soda (NaHCO3)

We can exclude from our options, B, D, E because they are products, not reactants.

Thus, we have A and C.

One part of our text says: "When the reaction is finished, there is white powder at the bottom". This power is the NaHCO3, and it means that when the reaction finishes, this compound remains. Therefore is the excess.

So, our limiting reactant is C.) CH3COOH (vinegar)

Answer: C.) CH3COOH (vinegar)

A population of plants has a mixture of individuals with short, wide flowers and long, narrow flowers. Short, wide flowers are more easily pollinated by bees while long, narrow flowers are more easily pollinated by hummingbirds. Over time, the population becomes dominated by long, narrow flowers.Which statement ,begin emphasis,best,end emphasis, explains the increase in number of plants with long, narrow flowers over time?Answer options with 4 options.The environment favors short, wide flowers instead of long, narrow flowers.B.The gene for short, wide flowers is mutated into a gene for long, narrow flowers.C.Individuals with long, narrow flowers are stronger than individuals with short, wide flowers.D.Individuals with long, narrow flowers produce more seeds than individuals with short, wide flowers.

Answers

The best explanation for the increase in the number of plants with long, narrow flowers over time is option D: Individuals with long, narrow flowers produce more seeds than individuals with short, wide flowers.

In this population, short, wide flowers are better suited for bee pollination, while long, narrow flowers are more suitable for hummingbird pollination. Over time, the plants with long, narrow flowers produce more seeds compared to those with short, wide flowers.

This happens because the hummingbirds, which are the main pollinators for long, narrow flowers, are more effective in transferring pollen between these flowers. As a result, the long, narrow flower individuals have a higher reproductive success and pass on their traits to the next generation

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What is nitrogen G how will be formed G

What is nitrogen G how will be formed G

Answers

Nitrogen G is a colorless, tasteless gas that is the most plentiful element in Earth's atmosphere and is a constituent of all living matter of nitrogen.

what is nitrogen g explain?

Nitrogen is an essential gaseous element with an atomic number of 7 and an atomic weight of 14.0067. Nitrogen gas has two particles of Nitrogen therefore, the molecular formula of this gas is N2. It is a non-metallic element that settled Group 15

nitrogen. [ nī′trə-jən ] N. A nonmetallic element that constructs up about 78 percent of the atmosphere by capacity, Nitrogen is a nonmetal and the lightest member of group 15 of the periodic table

So we can conclude that Nitrogen is the chemical element with the symbol N and atomic number 7.

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In using the Haber process in the formation of ammonia, what mass of hydrogen is needed to produce 51.0 grams of ammonia? 3 H₂(g) + N2 (g) → 2 NH3(g).

Answers

The mass of hydrogen needed to produce 51.0 grams of ammonia is  ≈ 9.07 grams.

To determine the mass of hydrogen required to produce 51.0 grams of ammonia (NH3) using the Haber process, we need to calculate the stoichiometric ratio between hydrogen and ammonia.

From the balanced chemical equation:

3 H₂(g) + N₂(g) → 2 NH₃(g)

We can see that for every 3 moles of hydrogen (H₂), we obtain 2 moles of ammonia (NH₃).

First, we need to convert the given mass of ammonia (51.0 grams) to moles. The molar mass of NH₃ is 17.03 g/mol.

Number of moles of NH₃ = Mass / Molar mass

                     = 51.0 g / 17.03 g/mol

                     ≈ 2.995 moles

Next, using the stoichiometric ratio, we can calculate the moles of hydrogen required.

Moles of H₂ = (Moles of NH₃ × Coefficient of H₂) / Coefficient of NH₃

           = (2.995 moles × 3) / 2

           ≈ 4.493 moles

Finally, we can convert the moles of hydrogen to mass using the molar mass of hydrogen (2.02 g/mol).

Mass of H₂ = Moles × Molar mass

          = 4.493 moles × 2.02 g/mol

          ≈ 9.07 grams

Therefore, approximately 9.07 grams of hydrogen is needed to produce 51.0 grams of ammonia in the Haber process.

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Which of the following methods of fossil formation is formed in dry areas due to a lack of moisture?

a
Mummification
b
Casts and molds
c
Amber fossil
d
Carbonization

Answers

I don’t know the answer but my guess would be mummification

The methods of fossil formation in dry areas due to a lack of moisture is mummification. The correct option is a.

What is mummification?

Mummification is the process of deliberately drying or embalming flesh to preserve the body after death.

This typically entailed removing moisture from a deceased body and desiccating the flesh and organs with chemicals or natural preservatives such as resin.

Mummification served the purpose of keeping the body intact so that it could be transported to a spiritual afterlife.

The body was stripped, positioned on a slanted table, and washed in natron solution (a naturally occurring salt used both as soap and a preservative).

The brain was extracted from the skull through a hole in the ethmoid bone (the bone separating the nasal cavity from the skull cavity).

Thus, the correct option is A.

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How many decigrams are equal to 1.35 milligrams? 135 dg 13.5 dg 0.0135 dg 0.135 dg

Answers

Answer:

0.0135 dg

Explanation:

Answer: 0.0135 dg

Explanation:

Which part of a seed plant develops into sperm cells? o embryo pollen 0 seed O xylem​

Answers

Answer:

Pollen

Explanation:

bc i take notes and also my sister studies bio

PLZ GIMME BRAINLIEST

Answer:

correct

Explanation:

1. Mass of the empty Dish 167.0 g
2. Mass of the dish plus kernel before heating 169.0 g
3. Mass of the kernels before heating 2.0 g
4. Mass of the dish plus popped corn 168.8 g
5. Mass of the popped corn 1.8 g
6. Mass of the water driven 0.2 g
7. Mass percent of water in the popcorn 10%

Given that a sample of unpopped popcorn weighed 58.2 grams and after popping the popped kernels weighed 51.1 grams, calculate the percent water in the unpopped popcorn.

Answers

The mass of water driven off during popping can be calculated by subtracting the mass of the popped corn and the dish from the mass of the dish and kernel before heating.

What is  heating ?

Heating is the process of increasing the temperature of a substance or object, typically using an external energy source such as heat, radiation, or electrical current. The heat energy is transferred to the object or substance, causing its particles to vibrate and move faster, which results in an increase in temperature. Heating is commonly used in a wide range of applications, including cooking, chemical reactions, industrial processes, and space heating.

What is  cooking?

Cooking is the process of preparing food by applying heat, typically using methods such as baking, roasting, grilling, frying, boiling, simmering, steaming, or microwaving. The aim of cooking is to make food more palatable and easier to digest, as well as to kill harmful bacteria and other microorganisms that may be present in raw food. Cooking can also enhance the nutritional value of some foods by making certain nutrients more bioavailable.

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A car travels at a speed of 54 km/hr. How many meters will it travel in 1 second?

Answers

Answer: 15 METERS IN A SECOND

Explanation: 54km = 54000m    54000m / 60 = 900    900/60 = 15

15 meters a second is the correct answer

What are the two cell division stages in the mitotic phase of the cell cycle?

Answers

cytokinesis and telophase!
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