Two very large charged parallel metal plates are 15.0 cm apart and produce a uniform electric fiold of 3.40-10 N/C between them. A proton is fired perpendicular to these plates with an initial speed 5.20 km/s, starting at the middle of the negative plate and going toward the positive plate.
Q: A parallel plate capacitor consists of two rectangular, horizontally oriented plates, each with an…
A:
Q: An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1025 m/s when it…
A:
Q: A proton with speed v =3x10°m/s orbits just outside a charged sphere of radius r =1 cm. The charge…
A: speed of proton (V) = 300000 mscharge of proton (q) = 1.6×10-19 C mass of proton (m) = 1.67×10-27 kg…
Q: A spherical shell of an inner radius 20.0 cm and outer radius 25.0 cm has a charge with a uniform…
A:
Q: What electric field strength and direction will allow the proton to pass through this region of…
A: Given:B=−0.02i^Tv=3×107j^m/sq=1.6×10−19C Magnetic force:First, calculate the magnetic force acting…
Q: un electron and a proton are each placed at rest in an external uniform electric field of 520 N/C.…
A:
Q: An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1050 m/s when it…
A: As there is no force alonx horizontal so velocity along horizontal will remain constant. and due to…
Q: Two horizontal plates of opposite charge form a constant electric field = 1000 N/C directed…
A:
Q: A metal sphere of radius 5.00 cm is initially uncharged. How many electrons would have to be placed…
A:
Q: Protons are projected with an initial speed v0 = 9,450 m/s into a region where a uniform electric…
A:
Q: If the electric field between two parallel plates is maintained at a constant strength of E =…
A:
Q: A particle with charge q = +3e and mass m = 9.1 x 10-26 kg is injected horizontally with speed 1.4 x…
A:
Q: Two horizontal parallel plates are separated by a distance of 173mm creating an electric field of…
A: Given : Electric field E = 24μC=24×10-6N Distance d = 173 mm = 0.173m…
Q: uniform electric field is produced by two charged horizontal plates, each of length d, where the…
A: Force on charge particle in electric field F=qE
Q: An electron initially 3.00 m from a nonconducting infinite sheet of uniformly distributed charge is…
A:
Q: An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1100 m/s when it…
A: Newton's second law of motion states that the acceleration of an object is directly proportional to…
Q: The positive and negative plates of a parallel-plate capacitor have an area of 4.50 cm by 4.50 cm.…
A: the charge density of the plate, the area of the plate, the photon is traveling at speed,
Q: An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1025 m/s when it…
A:
Q: Two parallel plates 1.10 cm apart are equally and oppositely charged. An electron is released from…
A: Given thatTwo parrellel plate distance (d)=1.10cm
Q: A 1.94 10-9 C charge has coordinates x = 0, y = −2.00; a 3.30 10-9 C charge has coordinates x =…
A: Given: Let's consider the given q1=1.94×10-9C at y=-2 q2=3.30×10-9C at x=3 q3=-4.60×10-9C at x=3,…
Q: Determine the magnitude of the electric field at the surface of a lead-196 nucleus, which contains…
A: Volume of lead nucleus is V = 196 Number of protons is n = 82
Q: wo horizontal parallel plates are separated by a distance of 168mm creating an electric field of…
A: Given: The electric field is 29µN/C. The separation between plates is 168 mm. The initial speed of…
Q: The figure shows two charged particles on an x axis: -q = -4.80 x 10-19 C at x = -5.00 m and q =…
A: Charge is placed at Charge is placed at Note:Coulomb constant is Find:(a) The x-component of net…
Q: A parallel plate capacitor is formed from two 5.0 cm \ times 5.0 cm electrodes spaced 2.8 mm apart.…
A:
Q: Calculate the initial (from rest) acceleration of a proton in a 40 N/C electric field. mp=…
A: Given:- E= 40 N/C mp = 1.67 *10-27 Kg qe = 1.60 * 10-19 C
Q: The electric field
A: Given:Magnitude = 704 N/CThe plate separation = 4.06 cm
Q: In the figure a uniform, upward electric field of magnitude 1.70 x 103 N/C has been set up between…
A: Given data E=1.7×103 N/CL=12 cmd=1.9 cmθ=52°v=6.6×106 m/s Here, E is the electric field, L is the…
Q: parallel-plate capacitor is formed from two 1.99 x 1.99 cm electrodes spaced 2.07 mm apart. The…
A: Given: The size of the plate is 1.99x1.99 cm2. The separation between plates is 2.07 mm. The…
Q: Two very large charged parallel metal plates are 11.0 cm apart and produce a uniform electric field…
A: Given Data: Electric Field E=2.80×106NC Separation betwneen the plates d=11.0cm=0.11m Initial…
Q: What electric field strength and direction will allow the proton to pass through this region of…
A: In order to determine the electric field strength and direction required for a proton to pass…
Q: From a distance of 10 cm, a proton is projected with a speed of v= 4.0 x 106 m/s directly at a…
A:


Trending now
This is a popular solution!
Step by step
Solved in 2 steps with 2 images

- An electron and a proton are each placed at rest in a uniform electric field of magnitude 518 N/C. Calculate the speed of each particle 47.6 ns after being released.The positive and negative plates of a parallel-plate capacitor have an area of 1.60 cm by 1.60 cm. Their surface charge densities are +1.00×10-6 C/m2and -1.00×10-6 C/m2, respectively. A proton moving parallel to the plates enters the middle of the space between them at a speed of 2.65×106 m/s. Assuming the field outside the capacitor is 0 and the field inside is uniform, how far to the side will the proton's path have deviated when it gets to the far end of the capacitor?A small drop of water is suspended motionless in air by a uniform electric field that is directed upward and has a magnitude of 7010 N/C. The mass of the water drop is 4.36 × 10-9 kg. How many excess electrons or protons reside on the drop?
- An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1200 m/s when it enters a cylindrical tube of radius 0.400 cm centered on the x-axis. Inside the tube is a uniform electric field of 5.50 10-4 N/C pointing in the negative y-direction. How far does the particle travel before hitting the tube wall? Neglect any gravitational forces. Note: m? = 6.64 10-27 kg; q? = 2e. mTwo horizontal parallel plates are separated by a distance of 174 mm creating an electric field of 23 μN/C directed north. An electron is place halfway between the two plates with and fired with initial velocity 58 m/s from the horizontal. Calculate the time it takes for the electron to land at the positive plate and its speed before hitting the plate. Provide an Illustration and answer in GRESA format.The membrane surrounding a living cell consists of an inner and an outer wall that are separated by a small space. Assumne that the membrane acts like a parallel plate capacitor in which the effective charge density on the inner and outer walls has a magnitude of 7.1x 10-6 C/m2.(a) What is the magnitude of the electric field within the cell membrane? (b) Find the magnitude of the electric force that would be exerted on a potassium ion (K*; charge = +e) placed inside the membrane. (a) Number Units (b) Number Units
- An alpha particle (a helium nucleus) is traveling along the positive x-axis at 1075 m/s when it enters a cylindrical tube of radius 0.800 cm centered on the x-axis. Inside the tube is a uniform electric field of 3.00 10-4 N/C pointing in the negative y-direction. How far does the particle travel before hitting the tube wall? Neglect any gravitational forces. Note: m? = 6.64 10-27 kg; q? = 2e. mAn isolated charged conducting sphere has a radius R = 13.0 cm. At a distance of r = 24.0 cm from the center of the sphere the electric field due to the sphere has a magnitude of E = 4.90 × 104 N/C. (a) What is its surface charge density (in µC/m²)? μC/m² (b) What is its capacitance (in pF)? pF (c) What If? A larger sphere of radius 26.0 cm is now added so as to be concentric with the first sphere. What is the capacitance (in pF) of the two-sphere system? pFTwo parallel plates carry charge of equal magnitude but opposite sign, and are separated by a distance of d = 16.0 cm. Each plate has a uniform surface charge density of ± ? = 40.0 nC/m2. (Please enter all answers using at least four significant figures.) (b.) If a proton ( q = e = 1.602 ✕ 10-19 C; mp = 1.673 ✕ 10-27 kg) is released from rest at the positive plate, what potential difference does it move through in reaching the negative plate? Delta V = -722.84 Speed of proton = 372388.30 m/s (e.) Determine the magnitude of the acceleration of the proton. Recall: vxf2 = vxi2 + 2ax(xf - xi) (f.) Using its acceleration, determine the magnitude of the force on the proton. (g.) From the force on the proton, find the magnitude of the electric field.
- A positively charged particle of mass 50 grams and charge 10 µC is released from rest at the origin in the uniform electric field of 100 N/C directed along the +X-axis. Determine its speed at x = 10 cm position.A small drop of water is suspended motionless in air by a uniform electric field that is directed upward and has a magnitude of 7420 N/C. The mass of the water drop is 4.78 × 10-9 kg. How many excess electrons or protons reside on the dropA spherical shell of an inner radius 20.0 cm and outer radius 25.0 cm has a charge with a uniform density of 24.62 nC/m3. A proton moves in a circular orbit outside the spherical shell at a distance of 49 cm from the centre of the shell. Calculate the speed (m/s) of the proton. Round off the answer to 2 decimal places.