<< Chapter < Page Chapter >> Page >

Making connections: squirt toy

There is a diagram of a blue syringe with black text and arrows showing measurements. From left to right are the following labels: A red arrow pointing toward the plunger shows 2.2 N above the arrow. In the center of the syringe is 1.0 cm with an arrow pointing up and down to the edges of the barrel. On the far right is 1.5mm pointing to two black lines running from the top and bottom of the syringe opening.

A horizontally oriented squirt toy contains a 1.0-cm-diameter barrel for the water. A 2.2-N force on the plunger forces water down the barrel and into a 1.5-mm-diameter opening at the end of the squirt gun. In addition to the force pushing on the plunger, pressure from the atmosphere is also present at both ends of the gun, pushing the plunger in and also pushing the water back in to the narrow opening at the other end. Assuming that the water is moving very slowly in the barrel, with what speed does it emerge from the toy?

Solution

First, find the cross-sectional areas for each part of the toy. The wider part is

A 1 =   π r 1 2 =   π ( d 1 2 ) 2 =   π ( 0.005 ) 2 = 7.85 × 10 5   m 2

Next, we will find the area of the narrower part of the toy:

A 2 =   π r 2 2 =   π ( d 2 2 ) 2 =   π ( 0.0015 ) 2 = 7.07 × 10 6   m 2

The pressure pushing on the barrel is equal to the sum of the pressure from the atmosphere ( 1.0 atm = 101 , 300 N/m 2 ) and the pressure created by the 2.2-N force.

P 1 = 101 , 300 +   ( Force A 1 )
P 1 = 101 , 300 + ( 2.2   N 7.85 x 10 5   m 2 ) = 129 , 300   N / m 2

The pressure pushing on the smaller end of the toy is simply the pressure from the atmosphere:

P 2 = 101 , 300   N / m 2

Since the gun is oriented horizontally ( h 1 = h 2 ), we can ignore the potential energy term in Bernoulli's equation, so the equation becomes:

P 1 +   1 2 ρ v 1 2 =   P 2 +   1 2 ρ v 2 2

The problem states that the water is moving very slowly in the barrel. That means we can make the approximation that v 1   0 , which we will justify mathematically.

129 , 300 + ( 0.500 ) ( 1000 ) ( 0 ) 2 = 101 , 300 + ( 0.500 ) ( 1000 ) v 2 2
v 2 2 = ( 129 , 300 101 , 300 ) 500  
v 2 2 = ( 129 , 300 101 , 300 ) 500  
v 2 =   7.5 m/s

How accurate is our assumption that the water velocity in the barrel is approximately zero? Check using the continuity equation:

v 1 = ( A 2 A 1 ) v 2 = ( 7.07 × 10 6 7.85 × 10 5 ) ( 7.5 ) = 0.17   m / s

How does the kinetic energy per unit volume term for water in the barrel fit into Bernoulli's equation?

129 , 300 + ( 0.500 ) ( 1000 ) ( 0.17 ) 2 =   101 , 300 + ( 0.500 ) ( 1000 ) ( 7.5 ) 2
129 , 300 + 14 = 101 , 300 + 28 , 000

As you can see, the kinetic energy per unit volume term for water in the barrel is very small (14) compared to the other terms (which are all at least 1000 times larger). Another way to look at this is to consider the ratio of the two terms that represent kinetic energy per unit volume:

K 2 K 1 =   1 2 ρ v 2 2 1 2 ρ v 1 2 =   v 2 2 v 1 2

Remember that from the continuity equation

v 2 v 1 =   A 2 A 1 =   π ( d 2 2 ) 2 π ( d 1 2 ) 2 =   d 2 2 d 1 2

Thus, the ratio of the kinetic energy per unit volume terms depends on the fourth power of the ratio of the diameters:

K 2 K 1 =   ( v 2 v 1 ) 2 =   ( d 2 2 d 1 2 ) 2 =   ( d 2 d 1 ) 4  

In this case, the diameter of the barrel ( d 2 ) is 6.7 times larger than the diameter of the opening at the end of the toy ( d 1 ), which makes the kinetic energy per unit volume term for water in the barrel ( 6.7 ) 4 2000 times smaller. We can usually neglect such small terms in addition or subtraction without a significant loss of accuracy.

Power in fluid flow

Power is the rate at which work is done or energy in any form is used or supplied. To see the relationship of power to fluid flow, consider Bernoulli's equation:

P + 1 2 ρv 2 + ρ gh = constant . size 12{P+ { {1} over {2} } ρv rSup { size 8{2} } +ρ ital "gh"="constant"} {}

All three terms have units of energy per unit volume, as discussed in the previous section. Now, considering units, if we multiply energy per unit volume by flow rate (volume per unit time), we get units of power. That is, ( E / V ) ( V / t ) = E / t size 12{ \( E/V \) \( V/t \) =E/t} {} . This means that if we multiply Bernoulli's equation by flow rate Q size 12{Q} {} , we get power. In equation form, this is

Questions & Answers

how to create a software using Android phone
Wiseman Reply
how
basra
what is the difference between C and C++.
Yan Reply
what is software
Sami Reply
software is a instructions like programs
Shambhu
what is the difference between C and C++.
Yan
yes, how?
Hayder
what is software engineering
Ahmad
software engineering is a the branch of computer science deals with the design,development, testing and maintenance of software applications.
Hayder
who is best bw software engineering and cyber security
Ahmad
Both software engineering and cybersecurity offer exciting career prospects, but your choice ultimately depends on your interests and skills. If you enjoy problem-solving, programming, and designing software syste
Hayder
what's software processes
Ntege Reply
I haven't started reading yet. by device (hardware) or for improving design Lol? Here. Requirement, Design, Implementation, Verification, Maintenance.
Vernon
I can give you a more valid answer by 5:00 By the way gm.
Vernon
it is all about designing,developing, testing, implementing and maintaining of software systems.
Ehenew
hello assalamualaikum
Sami
My name M Sami I m 2nd year student
Sami
what is the specific IDE for flutter programs?
Mwami Reply
jegudgdtgd my Name my Name is M and I have been talking about iey my papa john's university of washington post I tagged I will be in
Mwaqas Reply
yes
usman
how disign photo
atul Reply
hlo
Navya
hi
Michael
yes
Subhan
Show the necessary steps with description in resource monitoring process (CPU,memory,disk and network)
samuel Reply
What is software engineering
Tafadzwa Reply
Software engineering is a branch of computer science directed to writing programs to develop Softwares that can drive or enable the functionality of some hardwares like phone , automobile and others
kelvin
if any requirement engineer is gathering requirements from client and after getting he/she Analyze them this process is called
Alqa Reply
The following text is encoded in base 64. Ik5ldmVyIHRydXN0IGEgY29tcHV0ZXIgeW91IGNhbid0IHRocm93IG91dCBhIHdpbmRvdyIgLSBTdGV2ZSBXb3puaWFr Decode it, and paste the decoded text here
Julian Reply
what to do you mean
Vincent
hello
ALI
how are you ?
ALI
What is the command to list the contents of a directory in Unix and Unix-like operating systems
George Reply
how can i make my own software free of cost
Faizan Reply
like how
usman
hi
Hayder
The name of the author of our software engineering book is Ian Sommerville.
Doha Reply
what is software
Sampson Reply
the set of intruction given to the computer to perform a task
Noor
Got questions? Join the online conversation and get instant answers!
Jobilize.com Reply

Get Jobilize Job Search Mobile App in your pocket Now!

Get it on Google Play Download on the App Store Now




Source:  OpenStax, College physics for ap® courses. OpenStax CNX. Nov 04, 2016 Download for free at https://legacy.cnx.org/content/col11844/1.14
Google Play and the Google Play logo are trademarks of Google Inc.

Notification Switch

Would you like to follow the 'College physics for ap® courses' conversation and receive update notifications?

Ask