Which button is a shortcut for scientific notation on
a scientific calculator?

Answers

Answer 1

Answer: For many calculators, including the TI –83 and TI 83 Plus, the [EE] button is used to enter scientific notation. The [EE] button can be found in yellow above the comma key [,].


Related Questions

Write an equation that shows the formation of a cesium ion from a neutral cesium atom.

Answers

Answer:

Cesium is an Element in the Periodic table with atomic number 55, symbol Cs and belongs to the first group of the metals which is Alkali metals.

Ionization energy (IE) is defined as the amount of energy consumed by a ground state gaseous atom to discharge an electron which will results in a formation of a Cation

It forms ions be releasing the electron

              [tex]Cs(g) + IE[/tex]   → [tex]Cs^+ + e^-[/tex]         IE= 38.939 KJ

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Which element has the same number of electrons in the outermost energy level at Lithium?
A. Hydrogen
B. Beryllium
C. Carbon
D. Magnesium

Answers

Answer:

Hydrogen is your answer because lithium and hydrogen both have 1 electron in their outermost energy level

A sample of an unknown metal has a mass of 22.4g. A graduated cylinder contains 3.2 ml of water. After the metal sample is added to the graduated cylinder, the water level reads 4.7 ml. Calculate the density of the metal

Answers

Answer:

d = 14.9 g/mL

Explanation:

Given data:

Mass of metal = 22.4 g

Volume of eater = 3.2 mL

Volume of water + metal = 4.7 mL

Density of metal = ?

Solution:

Volume of metal:

Volume of metal = volume of water+ metal - volume of water

Volume of metal = 4.7 mL - 3.2 mL

Volume of metal = 1.5 mL

Density of metal:

d = m/v

d = density

m = mass

v = volume

d = 22.4 g/ 1.5 mL

d = 14.9 g/mL

What is the total number of valence electrons in an atom with the electron configuration 2-8-1 ?
A) 1
B) 2
C) 8
D) 11

Answers

Answer:

1 because the last one is 1 and the previous shell was complete.

Answer: A)1

Explanation:

Valence electrons are always in Thebes last shell and last number of the configuration.

When bonding to other elements, it is easier for a sodium atom to gain seven electrons than to lose one electron.

Answers

Answer:

it's easier to lose one electron because it's less work for the atom to do and easier to lose one than gain a whole 7, because the atom wants to gain a full outer shell as soon as possible

Please I need help!!!!

Answers

Answer:

the answer is b I am sure

Place the following compounds in order from lowest to greatest vapor pressure. CH3CH2CH2CH3 CH3CH2OH CH3CH2CH3 NaF A B C D (Enter the letter corresponding to each compound.)

Answers

Answer:

C

Explanation:

There are 3 factors that affect the vapor pressure of a liquid, they are;

surface area

intermolecular forces and

temperature.

If we consider the options, we will notice that NaF is held together by strong ionic bonds in its crystal lattice. Also, CH3CH2OH is held together both by dispersion forces and strong hydrogen bonds.

However, CH3CH2CH2CH3 and CH3CH2CH3 are only held together by weak dispersion forces. Which of them is expected to have the weakest magnitude of intermolecular forces? We must know that larger and heavier  molecules exhibit stronger dispersion forces than smaller and lighter ones.

This implies that the magnitude of intermolecular forces in CH3CH2CH2CH3  is much greater than that in CH3CH2CH3. Hence at the same temperature, CH3CH2CH3  has the greatest vapour pressure among the four substances listed in the question.

which climate zone gets the smallest amount of solar energy throughout the year brainly
giving brainliest

Answers

Answer: A.

Explanation: The poles get the least amount of sunlight throughout the year.

Will give brainliest!
The following reaction shows calcium chloride reacting with silver nitrate.
CaCl2 + 2AgNO3 → 2AgCl + Ca(NO3)2
How many grams of AgCl are produced from 30.0 grams of CaCl2?
(Molar mass of Ca = 40.078 g/mol, Cl = 35.453 g/mol, O = 15.999 g/mol, Ag = 107.868 g/mol, N = 14.007 g/mol)
A. 19.4 grams
B. 38.8 grams
C. 58.2 grams
D. 77.5 grams

Answers

Explanation:

Molar mass of CaCl2 = 110.98g/mol

Moles of CaCl2 = 30.0 / 110.98 = 0.270mol

Moles of AgCl = 0.270mol * 2 = 0.540mol

Mass of AgCl = 0.540mol * (143.32g/mol) = 77.39g.

Answer:

77.5

Explanation:

You gotta round.

Hope this helps :)

Write the balanced nuclear equation for the alpha decay of each isotope.
200/84Po
nuclear equation:
thorium-229
nuclear equation:
244/96Cm
nuclear equation:
bismuth-210
nuclear equation:

Answers

Explanation:

First, a quick revision of radioactive decay:

During alpha decay, an alpha particle is emitted from the nucleus —- it is the equivalent of a helium atom (i.e. it has a mass of 4 and an atomic number of 2). So, let's take the following question:

Polonium-210 is a radioisotope that decays by alpha-emission. Write a balanced nuclear equation for the alpha decay of polonium-210.

In symbols, the equation becomes

210/84Po--->?+4/2HE

The sums of the superscripts and of the subscripts must be the same on each side of the equation.

Take 4 away from the mass number (210-4 = 206)

Take 2 away from the atomic number (84-2 = 82). Lead is element number 82.

So, the equation is

210/84 Po--->206/82Pb+4/2He

Now let's try one for beta decay — remember that, in beta decay, a neutron turns into a proton and emits an electron from the nucleus (we call this a beta particle)

Write a balanced nuclear equation for the beta decay of cerium-144)

In nuclear equations, we write an electron as 0^-1e.

144/58Ce-->144/59Pr+^0-1e

Here's a fission reaction.

A nucleus of uranium-235 absorbs a neutron and splits in a chain reaction to form lanthanum-145, another product, and three neutrons. What is the other product?

We write a neutron as 1/0n, so the equation is

235/92U +1/0n--->145/57La+X+3 1/0n

Sum of superscripts on left = 236. Sum of superscripts on right = 148. So  X

must have mass number = 236 – 148 = 88.

Sum of subscripts on left = 92. Sum of subscripts on right = 57. So  X

must have atomic number = 92 – 57 = 35. Element 35 is bromine.

The nuclear equation is

235/92U+1/0n--->145/57La+88/35Br+31/0N

A nuclear decay leads to the formation of a product that has a different isotope from that of the parent.

What is a nuclear equation?

A nuclear equation has to do with an equation in which one isotope is transformed into a different isotope.

For 200/84Po;

200/84Po ----> 4/2 He + 196/82Pb

For 244/96Cm

244/96Cm -----> 4/2 He + 240/94Pu

For bismuth-210

210/83Bi ----->  4/2 He + 206/81Tl

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How do other factors shape earths surface

Answers

Answer:

Other factors shape earths surface are:

Factors that Shape Earth's Surface.

Unit Notes.

 Plate Tectonics. Continental Drift. ...

Results of plate movement. ...

 Weathering. ...

 Erosion and Deposition.

why are elements in the column with helium so stable ?

Answers

Answer:

Explanation:

because they have complete valence shell thats why they are not reactive towards chemical reaction and are quite stable

What happens to sugar in a cup of tea?

Answers

it dissolves.

the sugar particles dissolve into the tea particles

List 2 differences between an ionic and covalent chemical bond

Answers

1. Ionic bonds result from transfer of electrons, whereas covalent bonds are formed by sharing. 2. Ionic bonds are electrostatic in nature, resulting from that attraction of positive and negative ions that result from the electron transfer process; charge separation between covalently bonded atoms is less extreme.


What volume in milliliters of 100 proof vodka (50% v/v ethanol) would be likely to kill a typical 360-g rat?

Answers

The given question is incomplete, the complete question is:

The LD50 value for ethyl alcohol given orally to rats is 10.3 g/kg. What volume in milliliters of 100 proof vodka (50% v/v ethanol) would be likely to kill a typical 360-g rat?

Answer:

The correct answer is 9.4 ml.

Explanation:

Based on the given information, in rats the LD50 of ethyl alcohol is 10.3 g/kg.

As 1 Kg is 1000 grams

Now the value of LD50 of ethyl alcohol in rats is 10.3 grams/ 1000 grams

The volume of the lethal dose of vodka for a 360 gram rat would be,  

= 360 g × (10.3 g/1000 g)

= 3708 × 10⁻³ g

= 3.708 g

Now the volume of vodka can be determined by using the formula,  

V = mass/density

The density of ethanol is 0.789 g/ml

The volume would be,  

V = 3.708 g/0.789 g/ml

V = 4.70 ml

As 50 percent of Vodka is ethanol, the volume of vodka needed to kill a rat is,  

= 2 × Volume of ethanol

= 2 × 4.70 g/ml

= 9.4 ml

An unknown metal with a mass of 54.0 g required 773 J of energy in order to change its temperature from 63.0 C to 100.0 C. What is the identity of this metal?

Answers

Answer:

Metal is copper.

Explanation:

Mass of a metal, m = 54 g

Heat energy required, Q = 773 J

The temperature changes from 63.0 °C to 100.0 °C.

We need to identify the metal. Heat required to raise the temperature is given by :

[tex]Q=mc\Delta T[/tex]

c is specific heat of the metal

We can identify the metal by finding its specific heat.

[tex]c=\dfrac{Q}{m\Delta T}\\\\c=\dfrac{773}{54\times (100-63)}\\\\=0.386\ J/g^{\circ} C[/tex]

The metal is copper. Its specific heat is [tex]0.386\ J/g^{\circ} C[/tex].

4. A 40.0L tank of ammonia has a pressure of 12.7 kPa. Calculate the volume of the
ammonia if its pressure is changed to 8.4 kPa while its temperature remains constant.

Answers

Answer:

V₂ = 60.47L

Explanation:

Given data:

Initial volume = 40.0 L

Initial pressure = 12.7 KPa

Final volume = ?

Final pressure = 8.4 KPa

Solution:

The given problem will be solved through the Boyls law,

"The volume of given amount of gas is inversely proportional to its pressure by keeping the temperature and number of moles constant"

Mathematical expression:

P₁V₁ = P₂V₂

P₁ = Initial pressure

V₁ = initial volume

P₂ = final pressure

V₂ = final volume  

Now we will put the values in formula,

P₁V₁ = P₂V₂

12.7 KPa× 40.0 L = 8.4 KPa × V₂

V₂ = 12.7 KPa× 40.0 L/ 8.4 KPa

V₂ = 508 KPa. L / 8.4 KPa

V₂ = 60.47L

The volume of the ammonia gas if it's pressure is changed to 8.4 KPa is 60.5 L

From the question given above, The following data were obtained:

Initial pressure (P₁) = 12.7 KPa

Initial volume (V₁) = 40 L

Final pressure (P₂) = 8.4 KPa

Temperature = constant

Final volume (V₂) = ?

Using the Boyle's law equation, the final volume of the ammonia can be obtained as illustrated below:

P₁V₁ = P₂V₂

12.7 × 40 = 8.4 × V₂

508 = 8.4 × V₂

Divide both side by 8.4

V₂ = 508 / 8.4

V₂ = 60.5 L

Therefore, the final volume of the ammonia gas is 60.5 L

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What's the percentage of C in CO2

Answers

Answer:

27.29%

Explanation:

your answer should be 27.29% ( i searched lol)

Why do leavening gases expand faster at higher altitudes

Answers

Answer:

Cakes, breads and other foods that contain leavening agents rise more quickly at higher altitudes, because gases produced by the agents expand faster than at sea level. The loaves may collapse if the gases dissipate before the proper temperature is reached. Most baking recipes can be adjusted for high altitudes.

Explanation:

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Which is best represented by the equation?
2Mg + 02 → 2MgO
O A. Law of Conservation of Energy
O B. Law of Conservation of Mass
O C. Law of Superposition

Answers

A- law of conservation of energy

According to the ,cell theory where do cells come from?

Answers

Answer:

cells come from pre existing cells

Convert 1.5x10^25 atoms of hydrogen into moles of Hydrogen

Answers

Sorry man I need some points but I do t even know the answer
Moles = # of atoms / 6.023 x 10^23 (Avogadro’s constant)

1.5 x 10^23 / 6.023 x 10^23 = 51.5 moles of Hydrogen

What class of organic product results when 1-heptyne is reacted with disiamylborane followed by treatment with basic hydrogen peroxide?

Answers

Answer:

aldehyde

Explanation:

Aldehydes are a large class of reactive organic compounds (R-CHO) having a carbonyl functional group attached to one hydrocarbon radical and a hydrogen atom.

So, when terminal alkynes, for example, 1-heptyne react on Hydroboration oxidation(i.e. disiamylborane followed by treatment with basic hydrogen peroxide), the formation of aldehyde occurs.

Why it important not to mix the test solution in one well with the solution in another week on your spot plate

Answers

If your mixing two substances that’s aren’t meant to tamper with each other it could cause an explosion depending on the elements, chemical reaction that wasn’t intended, or a false result.

Depending on the factors, combining two chemicals that aren't designed to interact might result in an explosion, an unintended chemical reaction, or a misleading result.

What is explosion ?

An explosion is a sudden increase in volume accompanied by a tremendous energy release that typically results in the production of high temperatures and the discharge of high-pressure gases. High explosive detonations produce supersonic explosions that move through shock waves.

Explosions often fall into one of three categories: chemical, mechanical, or nuclear. Every kind of explosion has the potential to be devastating and serious, wreaking unimaginable damage on the local populace, environment, and infrastructure.

What causes gamma ray bursts is one of the largest unsolved questions of all. These bursts, which happen around once every day, are the most powerful explosions known to science.

Thus, depending on the factors, combining two chemicals that aren't designed to interact might result in an explosion, an unintended chemical reaction.

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Use the ideal gas law formula (PV = nRT R = 0.0821 L atm/mol K) to determine the volume of 1.00
mole of a gas under the following conditions:
T= 273 K P = 2.00 atm
V=_
IL
T = 546 K, P = 1.00 atm
V =
L L
T = 409.5 K P = 1.50 atm
V=L

Answers

Answer:

11.2 , 44.8 , 22.4

Explanation:

on edge

The volume with the help of the ideal gas equation for the first condition is 11.2L, the second condition is 44.8L, and for the third condition is 22.4L.

Ideal gas equation

[tex]PV=nRT[/tex]

where P =pressure, V = volume, n = moles of gas, R = rydberg constant, and T = temperature.

Rearrange the above equation for the calculation of Volume as follows,

[tex]V=\frac{nRT}{P}[/tex]

We can calculate the volume for the first condition as follows,

Substitute 0.0821 Latm/Kmol for R, 273 K for T, 2atm for P, 1 for n in the above equation,

[tex]V=\frac{1 mol\times0.0821Latm\ Kmol\times273K}{2 atm} \\=11.20 L[/tex]

For the second condition,

[tex]V=\frac{1mol\times0.0821 L atm/mol K\times546K}{1 atm} =44.8L[/tex]

For third condition,

[tex]V=\frac{1mol\times0.0821 L atm/mol K\times409.5K}{1.50 atm} =22.4L[/tex]

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Fe2O3(s) 2Al(s)Al2O3(s) 2Fe(s) Using standard absolute entropies at 298K, calculate the entropy change for the system when 1.73 moles of Fe2O3(s) react at standard conditions.

Answers

Answer:

[tex]\Delta S=54.3\frac{J}{K}[/tex]

Explanation:

Hello!

In this case, for the given reaction, we can write the equation to compute the entropy change as shown below:

[tex]\Delta s=2\Delta S_{Fe}+\Delta S_{Al_2O_3}-2\Delta S_{Al}-\Delta S_{Fe_2O_3}[/tex]

Letting:

[tex]\Delta s_{Fe}=27.3\frac{J}{mol*K}\\\\ \Delta s_{Fe_2O_3}=84.4\frac{J}{mol*K}\\\\\Delta s_{Al}=28.3\frac{J}{mol*K}\\\\\Delta s_{Al_2O_3}=51.00\frac{J}{mol*K}[/tex]

We obtain the entropy change per mole of Fe2O3(s):[tex]\Delta s=2*27.3\frac{J}{mol*K}+84.4\frac{J}{mol*K}-2*28.3\frac{J}{mol*K}-51.0\frac{J}{mol*K} \\\\\Delta s=31.4\frac{J}{mol*K}[/tex]

Finally, the total entropy change when 1.73 moles of Fe2O3(s) react turns out:

[tex]\Delta s=31.4\frac{J}{mol*K}*1.73mol\\\\\Delta S=54.3\frac{J}{K}[/tex]

Best regards!

What is Entropy of reaction?​

Answers

There is no comparable easy way to experimentally measure the change in entropy for a reaction

Answer:

The entropy change in a chemical reaction is given by the sum of the entropies of the products minus the sum of the entropies of the reactants.

Explanation:

Hope it helps

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Rhodium crystallizes in a face-centered cubic unit cell. The radius of a rhodium atom is 135 pm. Determine the density of rhodium in g/cm3

Answers

Answer:

Density of unit cell ( rhodium) = 12.279 g/cm³

Explanation:

Given that:

The radius (r) of a rhodium atom = 135 pm

The atomic mass of rhodium = 102.90 amu

For a face-centered cubic unit cell,

[tex]r = \dfrac{a}{2\sqrt{2}}[/tex]

where;

a = edge length.

Making "a" the subject of the formula:

[tex]a = 2 \sqrt{2} \times r[/tex]

[tex]a = 2 \times 1.414 \times 135 \ pm[/tex]

a = 381.8 pm

to cm, we get:

a = 381.8 × 10⁻¹⁰ cm

However, recall that:

[tex]density \ of \ unit \ cell = \dfrac{mass \ of \ unit \ cell}{volume \ of \unit \ cell}[/tex]

where;

mass of unit cell = mass of atom × numbers of atoms per unit cell

Also;

[tex]mass\ of\ atom =\dfrac{ atomic \ mass}{Avogadro \ number}[/tex]

[tex]mass\ of\ atom =\dfrac{ 102.9}{6.023 \times 10^{23}}[/tex]

Recall also that number of atoms in a unit cell for a  face-centered cubic = 4

So;

[tex]mass \ of \ unit \ cell= \dfrac{102.90}{6.023 \times 10^{23}}\times 4[/tex]

mass of unit cell = 6.83380375 × 10⁻²² g

[tex]Density \ of \ unit \ cell = \dfrac{6.83380375 \times 10^{-22}}{(381.8\times 10^{-10})^3}[/tex]

Density of unit cell ( rhodium) = 12.279 g/cm³

The density of rhodium is equal to 12.4g/cm^3

Data;

radius = 135pmatomic mass = 102.90 amu

The radius of a FCC is calculated as

[tex]r = \frac{a}{2\sqrt{2} }\\a = 2\sqrt{2} * r\\a = 2 * 1.414 * 135 = 381.8pm = 381.8 * 10^-^1^0cm\\[/tex]

The Density of Rhodium

The formula of density is given as

[tex]\rho = \frac{mass}{volume}\\[/tex]

The mass of a unit cell = mass of atom * number of atoms per unit cell.

[tex]mass of atom = \frac{atomic mass}{avogadro's number} = \frac{102.90}{6.023*10^2^3}\\[/tex]

For BCC number of atom in unit cell = 4

mass of unit cell = [tex]\frac{102.90}{6.02*10^2^3} * 4[/tex]

This makes the density of the atom equal to

[tex]\rho = \frac{\frac{102.90}{6.02*10^2^3} }{(381*10^-^1^0)^3}* 4\\ \rho = 12.4 g/cm^3[/tex]

The density of Rhodium is 12.4 g/cm^3

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Answers

Answer: the last one

Explanation:

What is the atom of CO2

Answers

Answer:

Carbon dioxide is composed of one carbon atom covalently bonded to two oxygen atoms. It is a gas (at standard temperature and pressure) that is exhaled by animals and utilized by plants during photosynthesis. Carbon dioxide, CO2, is a chemical compound composed of two oxygen atoms and one carbon atom

Explanation:

Answer:

Carbon dioxide is composed of one carbon atom covalently bonded to two oxygen atoms. It is a gas (at standard temperature and pressure) that is exhaled by animals and utilized by plants during photosynthesis. Carbon dioxide, CO2, is a chemical compound composed of two oxygen atoms and one carbon atom.

Explanation:

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