Question

1. Six different particles are all launched into a magnetic field at the same speed of one ten-thousandth the speed of light (v 3.0 x 1o4m/s). The magnetic field is uniform and into the page. a. (1pt) Which of the particles are positively charged? b. (1pt) If all the particles have the same magnitude of charge, which particle has the greatest mass (ignore particle D for this question)? c. (1pt) If all the particles have the same mass, which particle has the greatest charge? d. (2pt) Let particle C be a singly ionized Neodymium atom (2.40 x 10-25 kg) and the magnetic field be B 3.8 T, what is the radius of the atoms path (same entrance speed as stated before)? tated v-3.0x 104 m/s and makes a radius of R 0329 cm, e. (1pt) If particle F enters at the above s what will be the speed that particle F exits the magnetic field with?

Can you please help me with this study guide question?

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

luti CDEF then are deblectes ausa GreTe Mar with gre ae radius ha .The artide wt (eait radi a orenter chary hat (2.ho xlo.)

Add a comment
Know the answer?
Add Answer to:
Can you please help me with this study guide question? 1. Six different particles are all...
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 mass spectrometer, a beam of charged particles of unknown mass are injected into a...

    In a mass spectrometer, a beam of charged particles of unknown mass are injected into a region of space where a magnetic field is directed perpendicular to the particles' velocity Typically, the velocity of the particle beam has already been determined through the use of a velocity selector. In this simulation, the beam is comprised of a pair of singly ionized isotopes of the same element. V=5000 m/s 4000 sdoo 6000 Isotopes 2cc Ne. Ne C. Unknown B=5.0 mm Show...

  • Please show all steps and projections! Please ignore the previous photo. This is the problem to b...

    Please show all steps and projections! Please ignore the previous photo. This is the problem to be solved Apologies for the app malfunctioning Sorry! My phone kept messing up the upload due to Wi-Fi! expression for the net force per unit length due to the currents 1 and 2 on current 3. Use unit vector notation expression for the net force per unit length due to the currents 1 and 2 on current 3. Use unit vector notation We were...

  • Three particles enter a region of constant magnetic field into the page (B = 0.5 T)...

    Three particles enter a region of constant magnetic field into the page (B = 0.5 T) 18)  If the particles all move at the same speed v and have the same charge q, which particle has the smallest mass? #1 #2 #3 19)  If the particles all move at the same speed v and have the same mass m, which particle has the largest charge? #1 #2 #3 20)  What is the charge of all the particles? all the charges are positive all...

  • The drawing shows the paths taken by 4 different particles in an magnetic field that is...

    The drawing shows the paths taken by 4 different particles in an magnetic field that is directed into the paper. All four particles have the same mass and speed. List the particles in order of their charge magnitude, largest to smallest. B. into paper O 2, 1, 4,3 O 3, 2, 1,4 O 4, 1, 2, 3 O 4, 2, 1, 3 O 3, 4, 2, 1 The drawing shows the paths taken by 4 different particles in an magnetic...

  • 3. The diagram below shows the trajectories of three charged particles moving in a uniform magnetic...

    3. The diagram below shows the trajectories of three charged particles moving in a uniform magnetic field of strength B. The field points into the plane of the paper. The particles are moving in the plane of the paper. The direction in which each particle is moving is shown by the arrows. (a) For each particle, find if the charge is positive or negative (Q>0 or Q<0). Q1: Q2: Q3: (b) Assume all particles have the same velocity (v) and...

  • Can anyone help with 17 & 18? 17. The following particles a and b are traveling...

    Can anyone help with 17 & 18? 17. The following particles a and b are traveling in a magnetic field as shown. Boul a. Which of the particles has the greatest velocity, assuming they have identical charges and masses? Explain your reasoning. b. Which of the particles has the greatest mass, assuming all have identical charges and velocities? Explain your reasoning. c. Which of the particles has the greatest charge, assuming each has identical mass and velocity? Explain your reasoning...

  • Help with 1b and 1e please. 1a. A point mass consisting of 26 charged particles travels...

    Help with 1b and 1e please. 1a. A point mass consisting of 26 charged particles travels at a velocity of magnitude 7.80 x 107 m/s through a uniform magnetic field of magnitude 5.8 T. Each charged particle has a charge of -12e and a mass of 3.60 x 10-29 kg. The angle between the velocity of the mass and the direction of the magnetic field is 18.0 degrees. What is the magnitude of the force on the point mass due...

  • please show work. thanks Part A The amount of meat in prehistoric diets can be determined...

    please show work. thanks Part A The amount of meat in prehistoric diets can be determined by measuring the ratio of the isotopes nitrogen-15 to nitrogen-14 in bone from human remains. Carnivores concentrate N, so this ratio tells archaeologists how much meat was consumed by ancient people. Suppose you use a velocity selector (Figure 1) to obtain singly ionized (missing one electron) atoms of speed 513 km/s and want to bend them within a uniform magnetic field of 0.510 T....

  • Problem 1 chemists to determine the composition of a sample. Let's explore one type of mass spectrometer, which u...

    Problem 1 chemists to determine the composition of a sample. Let's explore one type of mass spectrometer, which uses electric and magnetic fields. For each step below, sketch a diagram to help you with the analysis Mass spectrometers, which separate ions based on mass, are often used by a. In Step 1 of mass spectrometry, an accelerator releases a charged particle from rest near one plate of a charged parallel-plate capacitor, so that the particle accelerates toward the other plate...

  • A. An α-particle has a charge of +2e and a mass of 6.64 × 10-27 kg....

    A. An α-particle has a charge of +2e and a mass of 6.64 × 10-27 kg. It is accelerated from rest through a potential difference that has a value of 1.67 × 106 V and then enters a uniform magnetic field whose magnitude is 2.49 T. The α-particle moves perpendicular to the magnetic field at all times. What is (a) the speed of the α-particle, (b) the magnitude of the magnetic force on it, and (c) the radius of its...

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