026 (part 2 of 2) What is the magnitude of the electric field strength? Answer in units of N/C. 027 (part 1 of 2) An electron is accelerated by a constant elec- tric field of magnitude 210 N/C. Find the magnitude of the acceleration of the electron. The mass of an electron is 9.109 x 10 is 1.6 x 10-19 C. Answer in units of m/s?. -31 kg and the elemental charge 028 (part 2 of 2) Find the electron's speed after 4.68 x 10- assuming it starts from rest. Answer in units of m/s. S, 029 The electron gun in a television tube 023 is used to accelerate electrons with mass 9.109 x 10-31 kg from rest to 1 × 10° m/s within a distance of 5.7 cm. An object having a net charge oi 30.5 µC is placed in a uniform electric field of 257 N/C directed vertically up. What is the mass of this object if it "floats" in the field? The acceleration due to gravity is 9.8 m/s?. Answer in units of g. What electric field is required? The funda- mental charge is 1.602 x 10-19 C. Answer in units of N/C. 030 (part 1 of 4) A proton accelerates from rest in a uniform electric field of 544 N/C. At some time later, its speed is 2.10 x 106 m/s. What is the magnitude of its acceleration? The mass of a proton is 1.6726 x 10-27 kg and the fundamental charge is 1.602 x 10-19 C. Answer in units of m/s?. 024 A positive test charge of 6.88 × 10-5 C is placed in an electric field of 50.58 N/C inten- sity. What is the strength of the force exerted on the test charge? Answer in units of N. 031 (part 2 of 4) 025 (part 1 of 2) An electron moving through an electric field experiences an acceleration of 6000 x 103 m/s?. How long does it take the proton to reach this speed? Answer in units of s. Find the magnitude of the electric force acting on the electron. The Coulomb constant is 8.98755 x 10° N · m²/C², the fundamental charge is 1.602 × 10-19 C, and the mass of the 032 (part 3 of 4) How far has it moved in this time interval? Answer in units of m. electron is 9.109 x 10 -31 kg. 033 (part 4 of 4) What is its kinetic energy at the later time? Answer in units of N.

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026 (part 2 of 2)
What is the magnitude of the electric field
strength?
Answer in units of N/C.
027 (part 1 of 2)
An electron is accelerated by a constant elec-
tric field of magnitude 210 N/C.
Find the magnitude of the acceleration of
the electron. The mass of an electron is
9.109 x 10
is 1.6 x 10-19 C.
Answer in units of m/s?.
-31
kg and the elemental charge
028 (part 2 of 2)
Find the electron's speed after 4.68 x 10-
assuming it starts from rest.
Answer in units of m/s.
S,
029
The electron gun in a television tube
023
is used to accelerate electrons with mass
9.109 x 10-31 kg from rest to 1 × 10° m/s
within a distance of 5.7 cm.
An object having a net charge oi 30.5 µC is
placed in a uniform electric field of 257 N/C
directed vertically up.
What is the mass of this object if it "floats"
in the field? The acceleration due to gravity
is 9.8 m/s?.
Answer in units of g.
What electric field is required? The funda-
mental charge is 1.602 x 10-19 C.
Answer in units of N/C.
030 (part 1 of 4)
A proton accelerates from rest in a uniform
electric field of 544 N/C. At some time later,
its speed is 2.10 x 106 m/s.
What is the magnitude of its acceleration?
The mass of a proton is 1.6726 x 10-27 kg and
the fundamental charge is 1.602 x 10-19 C.
Answer in units of m/s?.
024
A positive test charge of 6.88 × 10-5 C is
placed in an electric field of 50.58 N/C inten-
sity.
What is the strength of the force exerted on
the test charge?
Answer in units of N.
031 (part 2 of 4)
025 (part 1 of 2)
An electron moving through an electric
field experiences an acceleration of 6000 x
103 m/s?.
How long does it take the proton to reach this
speed?
Answer in units of s.
Find the magnitude of the electric force
acting on the electron. The Coulomb constant
is 8.98755 x 10° N · m²/C², the fundamental
charge is 1.602 × 10-19 C, and the mass of the
032 (part 3 of 4)
How far has it moved in this time interval?
Answer in units of m.
electron is 9.109 x 10
-31
kg.
033 (part 4 of 4)
What is its kinetic energy at the later time?
Answer in units of N.
Transcribed Image Text:026 (part 2 of 2) What is the magnitude of the electric field strength? Answer in units of N/C. 027 (part 1 of 2) An electron is accelerated by a constant elec- tric field of magnitude 210 N/C. Find the magnitude of the acceleration of the electron. The mass of an electron is 9.109 x 10 is 1.6 x 10-19 C. Answer in units of m/s?. -31 kg and the elemental charge 028 (part 2 of 2) Find the electron's speed after 4.68 x 10- assuming it starts from rest. Answer in units of m/s. S, 029 The electron gun in a television tube 023 is used to accelerate electrons with mass 9.109 x 10-31 kg from rest to 1 × 10° m/s within a distance of 5.7 cm. An object having a net charge oi 30.5 µC is placed in a uniform electric field of 257 N/C directed vertically up. What is the mass of this object if it "floats" in the field? The acceleration due to gravity is 9.8 m/s?. Answer in units of g. What electric field is required? The funda- mental charge is 1.602 x 10-19 C. Answer in units of N/C. 030 (part 1 of 4) A proton accelerates from rest in a uniform electric field of 544 N/C. At some time later, its speed is 2.10 x 106 m/s. What is the magnitude of its acceleration? The mass of a proton is 1.6726 x 10-27 kg and the fundamental charge is 1.602 x 10-19 C. Answer in units of m/s?. 024 A positive test charge of 6.88 × 10-5 C is placed in an electric field of 50.58 N/C inten- sity. What is the strength of the force exerted on the test charge? Answer in units of N. 031 (part 2 of 4) 025 (part 1 of 2) An electron moving through an electric field experiences an acceleration of 6000 x 103 m/s?. How long does it take the proton to reach this speed? Answer in units of s. Find the magnitude of the electric force acting on the electron. The Coulomb constant is 8.98755 x 10° N · m²/C², the fundamental charge is 1.602 × 10-19 C, and the mass of the 032 (part 3 of 4) How far has it moved in this time interval? Answer in units of m. electron is 9.109 x 10 -31 kg. 033 (part 4 of 4) What is its kinetic energy at the later time? Answer in units of N.
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