The new pressure of the sample of helium gas in a cylinder with a movable piston is 274 kPa.
Option 4)274 kPa is the correct answer.
Combinedgas law put together both Boyle's Law, Charles's Law, and Gay-Lussac's Law. It states that "the ratio of the product of volume and pressure and the absolute temperature of a gas is equal to a constant.
It is expressed as;
P₁V₁/T₁ = P₂V₂/T₂
Given the data in the question;
To calculate the new temperature of the gas, we substitute our given values into the equation above.
P₁V₁/T₁ = P₂V₂/T₂
P₁V₁T₂ = P₂V₂T₁
P₂ = (P₁V₁T₂) / V₂T₁
P₂ = ( 1.03627atm × 0.22L × 310K ) / ( 0.095L × 275K )
P₂ = 70.673614LatmK / 26.125LK
P₂ = 2.705atm
P₂ = (2.705 × 101.325)kPa
P₂ = 274 kPa
The new pressure of the sample of helium gas in a cylinder with a movable piston is 274 kPa.
Option 4)274 kPa is the correct answer.
Learn more about the combined gaslaw here: brainly.com/question/25944795
#SPJ5
(3) more mass and greater penetrating power
(4) more mass and less penetrating power
Answer is (1) - less mass and greater penetrating power.
Alpha particle is a ₂⁴He nucleus while beta particles are electrons. Hence, the mass of alpha particle is greater than the mass of beta particle. But, the penetrating power is higher in beta particle than alpha particle. Alpha particles can be blocked by few papers but beta particles can go through those papers.
Answer: A beta particle has less mass and greater penetrating power.
Explanation:
Penetrating power is the power with which a particle travels or pass through a substance.
Since, it is known that mass of an alpha particle () is more than the mass of a beta particle (). So, a particle that holds less mass can move easily from one place to another.
Therefore, beta particle can move faster as it has only one electron as compared to 2 protons of an alpha particle. Hence, interaction of beta particles is less with the atoms or materials through which it passes.
Therefore, we can conclude that compared to the mass and the penetrating power of an alpha particle, a beta particle has less mass and greater penetrating power.
The carbon atoms bind together to create the compound's framework. Therefore, the name of the hydrocarbon CH(CH)CH is n-octane.
Any member of a group of organic compounds comprised only of the atoms carbon (C) as well as hydrogen (H) (H). The carbon atoms bind together to create the compound's framework, as well as the hydrogen atoms connect to them in a variety of ways.
Petroleum as well as natural gas are mostly composed of hydrocarbons. They are used as fuels and lubricants, as well as raw materials to make polymers, fibers, rubbers, solvents, explosives, various industrial chemicals. The name of the hydrocarbon CH(CH)CH is n-octane.
Therefore, the name of the hydrocarbon CH(CH)CH is n-octane.
To know more about hydrocarbon, here:
#SPJ2
Answer is: n-octane.
Octane is the straight-chain alkane (an acyclic saturated hydrocarbon) with eight carbon atoms.
Carbons in octane have sp3 hybridization (carbon’s 2s and three 2p orbitals combine into four identical sp3 orbitals).
Orbitals in sp3 hybridization have a tetrahedral arrangement and form single (sigma) bonds.
Burning octane fuel is very fast chemical reaction, it happens in immediately.
Main products of the combustion of fossil fuels are carbon(IV) oxide and water.
Chemical reaction: C₈H₁₈ + 25/2O₂ → 8CO₂ + 9H₂O; ΔH = -5500 kJ/mol.
B) Beta particles
C) Gamma rays
D) Delta particles
b. conduction
c. cold air rising and warm air sinking
d. radiation
Answer:
cold air rising and warm air sinking
Explanation:
Convection is well known in nature. During convection, warm particles rise above the surface while cooler particles sink below. Hence a convection current is set up.
Air moves by convection. Hot air rises and moves toward and is then replaced with cooler air. A typical application of convection in nature is land and sea breeze.
CaSO3 (s) → → → → CaO (s) + SO2 (g) What mass of CaSO3 must have been present initially to produce 14.5 L of SO2 gas at a temperature of 12.5°C and a pressure of 1.10 atm?
´ 1 _____/60 _____ = 15 _____
Answer:
916.7 m/s
Explanation:
Given:
The value of speed = 55 km/hr
To determine:
The corresponding value in meters/second i.e m/s
Formula:
Step 1:
Convert km to m
1 km = 1000 m
Therefore, 55 km = 55 km * 1000 m/1 km = 55,000 m
The speed now is = 55,000 m/hr
Step 2:
Convert hr to sec
60 sec = 1 hr
Speed = 55,000 m/hr * 1 hr/60 sec = 916.7 m/s