Question

A vertical glass tube of length L = 1.3m is half filled with a liquid at...

A vertical glass tube of length L = 1.3m is half filled with a liquid at 20.1 ˚C. How much will the height of the liquid column change when the tube is heated to 31.3 ˚C? Take αglass = 1.00× 10-5/K and βliquid = 4.44× 10-5/K.

Homework Answers

Answer #1

Dear Student,

Hope it helps.

Thanks.

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
A vertical glass tube of length L = 1.3m is half filled with a liquid at...
A vertical glass tube of length L = 1.3m is half filled with a liquid at 22.5 ˚C. How much will the height of the liquid column change when the tube is heated to 32.5 ˚C? Take αglass = 1.34× 10-5/K and βliquid = 3.74× 10-5/K.
The water level in a vertical glass tube 1.60 m long can be adjusted to any...
The water level in a vertical glass tube 1.60 m long can be adjusted to any position in the tube. A tuning fork vibrating at 503 Hz is held just over the open top end of the tube, to set up a standing wave of sound in the air-filled top portion of the tube. (That air-filled top portion acts as a tube with one end closed and the other end open.) (a) For how many different positions of the water...
A cylindrical tube that is 2.50 mm long and has a radius of 150 mmmm is...
A cylindrical tube that is 2.50 mm long and has a radius of 150 mmmm is filled with water. It is oriented with its long central axis vertical, and it is open to the air at the upper end. A hole 80.0 mmmm in radius is drilled in the bottom, and the water is allowed to drain out. a) When the water level is half the height of the tube what is the speed of the water exiting though the...
A U-tube open at both ends is partially filled with water (Figure a). Oil having a...
A U-tube open at both ends is partially filled with water (Figure a). Oil having a density of 780 kg/m3 is then poured into the right arm and forms a column L = 5.16 cm high (Figure b). (a) Determine the difference h in the heights of the two liquid surfaces. cm (b) The right arm is then shielded from any air motion while air is blown across the top of the left arm until the surfaces of the two...
A car has 60 L steel gas tank filled to the top with gasoline when the...
A car has 60 L steel gas tank filled to the top with gasoline when the temperature is 10 C. The coefficient of volume expansion of gasoline is B = 0.900 X 10-3 K-1. Taking the expansion of the steel tank into account how much gasoline spills out of the tank when the car is parked in the Sun and its temperature rises to 25 C? (The linear coefficient of expansion for steel is 11 X 10-6 K-1 )
A car has a 45 L steel gas tank filled to the top with gasoline when...
A car has a 45 L steel gas tank filled to the top with gasoline when the temperature is 10°C. The coefficient of volume expansion of gasoline is β = 0.900 x 10-3 K-1. Taking the expansion of the steel tank into account, how much gasoline spills out of the tank when the car is parked in the sun and its temperature rises to 31°C? The coefficient of linear expansion of steel is β = 0.110 x 10-4 K-1.
1) A room is 10.0 m by 7.5 m by 2.7 m is filled with air...
1) A room is 10.0 m by 7.5 m by 2.7 m is filled with air at 22oC and 1 atm. The average molar mass of air is 28.8 g/mol. Find the number of moles of air to fill the room and the weight of the air in kg. 2) If it takes exactly 4 min. to completely melt a 2.0 kg block of ice at 0.0° C, how much power is needed? (For water Lf = 334 kJ/kg and...
Consider a ‘physical pendulum’ made of a meter stick (length L = 1 m, mass 0.2...
Consider a ‘physical pendulum’ made of a meter stick (length L = 1 m, mass 0.2 kg) with a hole drilled through it at the 5 cm mark. The stick is free to rotate (in a vertical plane) around a nail that goes through the hole and into a wall. Assume no friction between the nail and the hole. The stick’s moment of inertia about the nail is I=0.1 kgm2. (Use g=10 m/s2) If the pendulum is released from rest...
Procedure Reaction 1: Dissolving the Copper 1. Obtain a clean, dry, glass centrifuge tube. 2. Place...
Procedure Reaction 1: Dissolving the Copper 1. Obtain a clean, dry, glass centrifuge tube. 2. Place a piece of copper wire in a weighing paper, determine the mass of the wire and place it in the centrifuge tube. The copper wire should weigh less than 0.0200 grams. 3. In a fume hood, add seven drops of concentrated nitric acid to the reaction tube so that the copper metal dissolves completely. Describe your observations in the lab report. (Caution, Concentrated nitric...
Two identical sealed containers (1 and 2) are connected to one another by a narrow tube...
Two identical sealed containers (1 and 2) are connected to one another by a narrow tube with a valve. Initially, the valve is closed, container 1 is filled with a fluid, and container 2 is empty. Both containers have a ruler taped to their sides in order to measure the height of any fluid they contain. A) . When the valve is opened for a time interval Δt, the level of the fluid in container 1 drops by 3 cm....
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT