WAEC offline past questions - with all answers and explanations in one app - Download for free
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts

2016 WAEC Physics Theory (a) Explain briefly dielectric strength. (b) An electromagnetic wave has its wavelength shorter than those...

Physics
WAEC 2016

(a) Explain briefly dielectric strength.

(b) An electromagnetic wave has its wavelength shorter than those of radiowave and microwave but longer than that of visible light.

(i) Identify the wave.

(ii) Name one suitable detector for the wave.

(iii) Name one source of the wave.

(c) An oil drop carrying a charge of 1.0 x 10\(^{-19 }\)C is found to remain at rest in a uniform electric field of intensity 1200 NC\(^{-1}\). Calculate the weight of the oil drop.

(d) An RLC series circuit consists of a 100\(\Omega\) resistor, 0.05 H inductor and a 25 \(\mu\) capacitor. A 220 V, 50 Hz mains voltage is applied across the circuit. Calculate the:

(i) impedance;

(ii) current. (\(\pi\) = 3.14)

Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
Explanation

a) Dielectric strength is the maximum potential gradient or electric field strength an insulator can withstand without breaking down. It is measured in Vmm\(^{-1}\) or Vm\(^{-1}\).

(b)(i) The wave is infra-red wave.

(ii) Suitable detector can be -Infra-red camera;

-Thermopile;

-Bolometer or

-Photographic film.

(iii) Source of the wave can be - Hot bodies or sun

 

(c) E = \(\frac{F}{q} = \frac{W}{q}\)

W =mF = Eq

= 1200 x 1.0 x 10\(^{-19}\)

= 1200 x 1.0 x 10\(^{-19}\)N

 

(d) X\(_L\) = 1.2\(\pi fL\)

= 2 x 3.142 x 50 x 0.50 = 15.7\(\Omega\)

X\(_c\) \(\frac{1}{2 \pi fL}\)

= \(\frac{1}{2 \times 3.14 \times 50 \times 25 \times 10^{-16}}\)

= 127.4 \(\Omega\)

(i) Z = \(\sqrt{R^2 + (X_1 - X_c)^2}\)

= \(\sqrt{100^2 + (127.4 - 15.7)^2}\)

= 149.9\(\Omega\)

(ii) I \(\frac{V}{Z} = \frac{220}{149.9}\)

= 1.47A

 


Report an Error Ask A Question Download App
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995

Contributions ({{ comment_count }})

Please wait...

{{ settings.no_comment_msg ? settings.no_comment_msg : 'There are no comments' }}

Quick Questions

Post your Contribution

Please don't post or ask to join a "Group" or "Whatsapp Group" as a comment. It will be deleted. To join or start a group, please click here

{{ quote.posted_by.display_name }}
{{ settings.form_textarea_description }}
 
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
WAEC offline past questions - with all answers and explanations in one app - Download for free
WAEC Past Questions, Objective & Theory, Study 100% offline, Download app now - 24709
WAEC May/June 2024 - Practice for Objective & Theory - From 1988 till date, download app now - 99995
Post-UTME Past Questions - Original materials are available here - Download PDF for your school of choice + 1 year SMS alerts
WAEC offline past questions - with all answers and explanations in one app - Download for free