Question

In a cathode ray tube, electrons are accelerated from rest by a constant electric force of...

In a cathode ray tube, electrons are accelerated from rest by a constant electric force of magnitude 6.40 × 10−17 N during the first 2.60 cm of the tube’s length; then they move at essentially constant velocity another 45.0 cm before hitting the screen.

(a)Find the speed of the electrons when they hit the screen. ___m/s

(b)How long does it take them to travel the length of the tube? ___ns

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Step 1: Using Newton's 2nd law:

F_net = m*a

a = acceleration of electrons = F_net/m

F_net = net electric force on electron = 6.40*10^-17 N

m = mass of electron = 9.1*10^-31 kg

So,

a = 6.40*10^-17/(9.1*10^-31) = 7.033*10^13 m/s^2

Step 2: Using 3rd kinematic equation find speed of electron after it travels 2.60 cm

V^2 = U^2 + 2*a*d1

V = final speed after it travels 2.60 cm = ?

U = Initial speed = 0 m/s

So,

V = sqrt (0^2 + 2*7.033*10^13*2.60*10^-2) = 1912370.26 m/s

V = 1.912*10^6 m/s

Now after that electron travels at constant speed, So

Speed of electrons when they hit the screen = 1.912*10^6 m/s

Part B.

Time taken by electron to travel 2.60 cm will be, Using 1st kinematic equation

V = U + a*t1

t1 = (V - U)/a

t1 = (1912370.26 - 0)/(7.033*10^13) = 2.72*10^-8 sec

Now after that time taken by electron to travel 45.0 cm at constant speed will be:

t2 = distance/Speed

t2 = 0.45/1912370.26 = 23.53*10^-8 sec

So total time will be:

t = t1 + t2

t = 2.72*10^-8 + 23.53*10^-8

t = 262.5*10^-9 sec

t = 262.5 ns

Let me know if you've any query.

Add a comment
Know the answer?
Add Answer to:
In a cathode ray tube, electrons are accelerated from rest by a constant electric force of...
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. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • In a cathode-ray tube, a beam of electrons (the cathode ray) is deflected in a region...

    In a cathode-ray tube, a beam of electrons (the cathode ray) is deflected in a region of electric field on its way to a fluorescent screen, as shown in the figure. Consider the parallel-plate arrangement in the figure, and assume that the electric field E = 400 N/C is uniform between the plates and that E = 0outside the plates. The beam of electrons is injected horizontally with velocity v0 = 5.0 × 106 m/s. If the width of the...

  • Older televisions display a picture using a device called a cathode ray tube, where electrons are...

    Older televisions display a picture using a device called a cathode ray tube, where electrons are emitted at high speed and collide with a phosphorescent surface, causing light to be emitted. The paths of the electrons are altered by magnetic fields. Consider one such electron that is emitted with an initial velocity of 2.05 x 10^7 m/s in the horizontal direction when magnetic forces deflect the electron with a vertically upward acceleration of 5.30 x 10^15 m/s2. The phosphorescent screen...

  • Older televisions display a picture using a device called a cathode ray tube, where electrons are...

    Older televisions display a picture using a device called a cathode ray tube, where electrons are emitted at high speed and collide with a phosphorescent surface, causing light to be emitted. The paths of the electrons are altered by magnetic fields. Consider one such electron that is emitted with an initial velocity of 1.85 107 m/s in the horizontal direction when magnetic forces deflect the electron with a vertically upward acceleration of 5.45 1015 m/s2. The phosphorescent screen is a...

  • Electrons inside a particular X-ray tube travel d-5.5 cm. The electrons begin at rest and accelerate...

    Electrons inside a particular X-ray tube travel d-5.5 cm. The electrons begin at rest and accelerate to a speed that is,f=1/12 of the speed of light. Calculate the strength of the constant electric field that caused this acceleration. PAPER SOLUTION ▼ INTERPRET ldentify all of the true statements. A. A proton would have the same acceleration because it has the same charge as an electron. B. A constant electric field will cause an electron to accelerate. C. A proton would...

  • An electron in a cathode ray tube accelerates from rest through a potential difference of 2500...

    An electron in a cathode ray tube accelerates from rest through a potential difference of 2500 V over a distance of 2.0 cm. What speed does this electron acquire?

  • An electron beam moves toward a cathode ray tube screen, which is 30 cm away from...

    An electron beam moves toward a cathode ray tube screen, which is 30 cm away from the negative electrode. The electrons are accelerated by a potential difference of 14 kV. Estimate the maximum displacement of the electron beam caused by Earth's magnetic field. The average magnetic field at the surface of Earth is roughly BE = 45×10−6T. answer with units

  • An investigation is performed using the apparatus shown below. Electrons are accelerated from rest from the...

    An investigation is performed using the apparatus shown below. Electrons are accelerated from rest from the cathode by an electric potential difference. The cathode and anode are 2.00% 102 cm apart. The electrons reach a speed of 2.10 x 10 m/s as they pass through the hole in the anode. Electron source and cathode Phosphorescent creen Anode Plate I-pdsitively chatged 19) → Electron -. p, plate ll-negatively charged Electric potential diffcrence Current-carrying coils that produce an rongnetic field Electrons then...

  • Part B please? A cathode ray tube (CRT) is used to accelerate electrons in some televisions,...

    Part B please? A cathode ray tube (CRT) is used to accelerate electrons in some televisions, computer monitors, oscilloscopes, and x- ray tubes. Electrons from a heated filament pass through a hole in the cathode; they are then accelerated by an electric field between the cathode and the anode (see the figure below). + Assist Che ry View Show Guid rcal deflertion Print Ques Repa te) 1 out of 3 attempts Atter the electrons pass through the anode, they are...

  • A potential difference (p.d.) of 4800 V is applied between the cathode and anode of the tube. The cathode is heated and...

    A potential difference (p.d.) of 4800 V is applied between the cathode and anode of the tube. The cathode is heated and electrons are emitted from its surface. These electrons are then accelerated from rest and pass through a hole in the anode Cathode Anode Electrons 4800 V Show that the speed v of the electrons as they leave the anode is about 4 x 107 m s-1. V After leaving the anode, the electrons follow a parabolic path as...

  • please show calculations and explanation when necessary In a cathode ray tube, electrons with a velocity...

    please show calculations and explanation when necessary In a cathode ray tube, electrons with a velocity of 4.5 x 10 m/s in the k direction are deflected by a magnetic field of B = (1.4 x 10-4 T)i - (2.6 x 10-4 T)ý. a) What is the force (magnitude and direction) on a single electron? b) A 10 cm long wire is placed in a magnetic field of the same magnitude, such that it makes a 30° angle with the...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT