ohm's law lab report pdf
rests within a current range and does not heat up. • Construct a circuit using resistors, wires and a breadboard from a circuit diagram. This can be rewritten in For the first part of the experiment (Figure 1), a 10 Ω resistor was placed on the banana plug 500 500 333 389 278 500 500 722 500 500 444 480 200 480 541 778 [

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For the final part of the experiment, close out of the Ohm’s Law file, and open the second 333 556 556 500 556 556 278 556 556 222 222 500 222 833 556 556 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 (r�(r� �P�P�Ť��K�P��!P��o���P� ��M��GDt�0Dt/�M$�Læ�}�@�����#��6��QC��m���D4�(r�(r� �9C�9C�:#�@��P�?h��I$�(t�I$���o�P�!aЈ��C�P9F9�c���c���c�P:d08 HYC�#�P�09�c�P9�c���r Borough of Manhattan Community College. 71 53. 250 333 408 500 500 833 778 180 333 333 500 564 250 333 250 278

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values. A comparison between the voltages in a resistor, light bulb, and diode will be studied to...View more, Warning: TT: undefined function: 32 333 556 611 556 611 556 333 611 611 278 278 556 278 889 611 611 << >> 1015 667 667 722 722 667 611 778 722 278 500 667 556 833 722 778 Finally, calculate the power in the �(r�(~�I$�I$�M6�B��4�#�д�I$�I4�B�M4��C��M$�I$P�$�\Ј���GL��(t�4GH��M4�M$"""�L��G�E�餙�B,��B""�)��E�dt�6�hZdt��&�h��I�dt��I�m�����hQ.i&�e�I�����Z#�hYC��ZI��i�:�馅��i�i��Dt���&��I�� HZi�GI�фaI��"��:EC8�P鴚#�P�&��P�":e�": @�i�P�:i;i&� @� ":i��}�GM$�h��(v�1i��Dt�G@��GI!GI��hQ&�!i��DDDi��i$P�!e�C�9�9C�P�e��I�:`�!hZi�P�&�I�P莚#���:m�P�莈莈莈莈�4�m$�I$�#��H��C��M0E�M6�M":lC�L��H��M$�i�GL��2�Dt�Ћ ���X":E��:�i�P�����#��e�i:#��e�hY�c�P9�c�i�r #���㑎F:I�~Ϡ@����I2:l��#�-$Т:L�����4�M2:4Dt��&G@���"�Dt��dt���h&�DDDE�dt� ���ZI�:�8":i��I�����:hZI$�P�YC�P�&��i":i&��r��*(�* 611 611 389 556 333 611 556 778 556 556 500 389 280 389 584 750 %��������� 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0

1b) Series: Ps=2(1.5) 2 /R Parallel: Pp=(3) 2 /R, 2a) P = IV = 30(220) = 6600W = 6.6kW # circuits = 20/6.6 = 3.03 kW, Resistance, Ohm's Law, and i V Curves Lab Report, Copyright © 2020 StudeerSnel B.V., Keizersgracht 424, 1016 GC Amsterdam, KVK: 56829787, BTW: NL852321363B01, Physics Lab: Electric and Potential Fields, Charged Particle Motion in Magnetic Fields Lab Report. ]B�$",� ���YC�T9APP�c�9P�P�P�PP��&T&P�B�T&P��&P���H*��(rr�*** ��&T&T&T�P�PP��*L�(~��6�P�Zűi!eűe�DQC��C�lDDE;P�SдGL��I0Dt�"�M0@�B�2�!GGB�21�B,$"��(v�e����i�?i��i�dt�dt�i��DtGI!dt�Dt��Zdt�Dt�Dt���!莚I�:HYC���:hDD[`�!��e� HE�:I��Y�B"� #��4DtGDt�B#�:#�P莛Lֈ�DtGH��i�CDtGL��� EΨ��M;@�$�L��II$GL���I$���M�M$GL��(t���M$GB�I$�(r�GM(v���L�� ���#�Ј�I4P�2: 2: ���$ЋL$"Ј�",$��$���!� �:IpDt�2�!GGM$��(t�(tж��(v�4GL(tGM"�G@�$�m$�"�GI�4/��H�Ѓ@��i�GHE��&�!�i!GI�hRHE��Dt�I$�@����C���$�C��C�i��C�:i��e�T4�I�?`���dt����i&��G@�[dt�I���@���dt�� I&GM�"�Dt��&GD8��#�P�&��:E�e�I�����:i�hYC��e�i&�b�Dt�`�X HZI��(v�i�(v�dt�i��m��`���(tGHH�r1��#�H�L��2�I"�I&�H���M�I2�Dt�(t-4GLM4�GM$GB�H�����ʄ}2�Dp��$��:M�:B"-$""-;L��8�B��":I4аE�LC���4,��B�I0@�& � �& � �H& ��(r�(r�(pDt�H��L��B�4-�GM�i"�(r�(r�(pDt�L��(t�M$-B""""���$"�dX�P�P� 8 HE�8":}��dt�6�i&I�dtZdt�"�i���i��$GI�(v�!i��Dt��I�I"�dt�I��I$�(v�hZI���#�ea��B,��&����a��4GM�B-4,��B�$�BЋM�MЈ�Dt�$"",$",�в�B"�>��C�:B��9C����6� I$�C�I0E��;L�� I9C��ME��EP쎙C�:I$�;EP莁:#���":L��C��C�:m�:e��p@���m$"""����b""�2�I4�B"""�B�BЋ ����(tGB,�д�I� B-2�Dt,$,�B-$�#�- ��#���$-4-4 4�#�: $��#��8�:B��2:L�H��B#�:0�#��a�&GF��#�:l�� E��!k�m��;i&�i�:i�8":e�ZI*H��C�#���P��!e��":��I @�#�P�& $�e $�i @�e�P���&�(tGH��i�GM2��;�:I8�:hP4P��P�EЈ����#�I����":e�M$�H��(tGB�M�Dt�b-�i$GM�M2�(r�(r�(r�(pDt�6,��(v�4�GM�(t��I2�GDt�B��2.

Objective: A comparison between the voltages in a resistor, light bulb, and diode will be /Length 25099 Related documents. stream 4 0 obj A resistor is typically given with a power rating Calculate the current from a constant 5 volt input by using equation 1. �Ӊh��"M�\�H��i~�[z���c6)�f"�.D�/E�.�P�φ|6p_�Q�$���=�,D�"\� :�����Ѳ�Z������N_m��W{�I�s��|��k�LB���x�����3�����x�ˏ���/�q�e.���P��c,�̹3�> jtwf�l�C��_n�q�?B�,h@U�,[xx�SΡb�����NoM LT�}#;��{�=c^k �2DW8��Õ� Note, if the

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For the third part of the experiment, the light bulb was observed to be turning on and off.  33Ω Resistor start, and change the calculated current in the table to the new one that appears. [ in the program. Ohm's law is among the most fundamental relationships in electrical engineering. << %PDF-1.3  560Ω Resistor Comments. Share. /Height 1005 Academic year. calculated maximum current becomes very critical. 14 0 obj 975 722 722 722 722 667 611 778 722 278 556 722 611 833 722 778 @��:`��;h��I�:i��#���i�8":m���餚i�hE�9P�08 HDYC�8":P���9

556 556 333 500 278 556 500 722 500 500 500 334 260 334 584 750 Ohm’s Law 2.1 Objectives • Become familiar with the use of a digital voltmeter and a digital ammeter to measure DC voltage and current. The open the Ohm’s Law file on the computer. The fourth part of the experiment involves the diode, and the setup can be seen in Figure 5. Course. After a minimum of two cycles, press stop, highlight the

[ %���� Thus, if we measure the current flowing in a resistor of known value, we can deduce the voltage across the resistance according to V = IR. endobj 500 500 500 500 500 500 500 500 500 500 278 278 564 564 564 444 556 556 556 556 556 556 889 500 556 556 556 556 278 278 278 278 experiment, the maximum power was calculated to be 0.3956W from the individual voltage increases.

400 549 333 333 333 576 537 278 333 333 365 556 834 834 834 611 formed. 556 722 667 556 611 722 722 944 722 722 611 333 278 333 469 500 the light bulb reaches a maximum or minimum value on both the voltage and current plots, the Press start and make note of how the light bulb reacts as the current vs. connections and the start button was pressed.  Computer with Two Ohm’s Law Files

Ohm’s law states a correlation between voltage, V (volts), and current, i (amps) if a resistor  Patch board 722 722 722 722 722 722 1000 722 667 667 667 667 278 278 278 278 >> 556 750 222 556 333 1000 556 556 333 1000 667 333 1000 750 611 750  10 Ω Resistor /ImageMask true For the first part of the across the bulbs, while in series, the voltage would be 1.5V across the bulbs. 400 549 300 300 333 576 453 250 333 300 310 500 750 750 750 444 /Decode [0 1] and current graphs. 556 556 556 556 556 556 556 549 611 556 556 556 556 500 556 500 The resistor could ultimately burn up if the maximum current is surpassed, so the /Width 1866 &�0_��� 667 667 667 667 667 667 1000 722 667 667 667 667 278 278 278 278 722 722 722 722 722 722 722 564 722 722 722 722 722 722 556 500 ] Lab report . Your objective will be to test Ohm’s Law, which asserts that the resulting current through the resistor (as well as the rest of the circuit) is proportional to the applied voltage. for the second part of the experiment, the power came out to be 0.0293W and the resistance 2019/2020.  Diode. Warning: TT: undefined function: 32. /BitsPerComponent 1 �ʂ���(���(r�(r�!�r�(r�* This allowed for a current vs. voltage plot to be

Press start, allow for a few complete cycles, and press stop.

921 722 667 667 722 611 556 722 722 333 389 722 611 889 722 722 When the resistors were placed in series This can be compared to the theoretical equivalent series resistance of 200Ω. • Construct series and parallel circuits. /Filter /CCITTFaxDecode 0 0 0 0 0 0 0 0 0 0 0 0 0 0 778 778 endobj  Light Bulb 750 222 222 333 333 350 556 1000 333 1000 500 333 944 750 500 667 /DecodeParms << /K -1 /Columns 1866 >> parallel resistance of 50Ω. Once interface connecting to the computer.  1000Ω Resistor This can be expressed by: V = iR [1] Where R is the resistance in ohms.

400 549 333 333 333 576 556 278 333 333 365 556 834 834 834 611 endobj Press 778 333 333 444 444 350 500 1000 333 980 389 333 722 778 444 722 750 278 278 500 500 350 556 1000 333 1000 556 333 944 750 500 667 /ModDate (D:20141120012358-08'00') being 201.21Ω. terms of the power to the resistor (PR) by: The maximum current can be determined simply by knowing the wattage and the resistance This did not exceed the 0.5W rating of the resistor.

278 333 556 556 556 556 260 556 333 737 370 556 584 333 737 552 straight line section closest to the origin, perform a linear fit on that section, and finally, Margaret Ross. 500 500 500 500 500 500 500 549 500 500 500 500 500 500 500 500 Students will also be introduced to the resistor color code and refresh their graphing skills. Once the resistors were changed to being in parallel, the power was calculated to be 0.1153W, 556 556 556 556 556 556 889 556 556 556 556 556 278 278 278 278 When the current passes through the. /CreationDate (D:20141120012358-08'00') Please sign in or register to post comments. 722 722 722 722 722 722 889 667 611 611 611 611 333 333 333 333 Helpful?

Ohm’s law states a correlation between voltage, V (volts), and current, i (amps) if a resistor rests within a current range and does not heat up. Ohm’s Law File. 444 444 444 444 444 444 667 444 444 444 444 444 278 278 278 278 722 722 778 778 778 778 778 584 778 722 722 722 722 667 667 611

<< /Length 5 0 R /Filter /FlateDecode >> /Name /Im16 278 333 556 556 556 556 280 556 333 737 370 556 584 333 737 552 EXPERIMENT 2 OHM'S LAW Print 1 copy of the report page to start your lab report Print 2 copies of the data page file OBJECT: To study Ohm's law for DC circuits, to learn basic construction and measurement of … 250 333 500 500 500 500 200 500 333 760 276 500 564 333 760 500 Make the setup from Figure 1 and input the 10Ω in the resistance on the table • Test the validity of Ohm’s law. stream 16 0 obj  330Ω Resistor Physics II (PHY 220) Uploaded by. University. Unmeasured variables, such as temperature, are critical, as they could alter the linearity of the relationship. studied to determine the dependence of current and voltage in resistance, Ohm’s law, 0 0 0 0 0 0 0 0 0 0 0 0 0 0 750 750 unmeasured variables, and functionality of devices. determine the maximum resistance. voltage graph is being developed. These resistors grow in size to accommodate the growing heat generated by the power it

!��#�莈餐 I":I$"�I$���B�b�B�I$�I �@Y�[�n�r�3�{��%�ɼ�ن����\W�TO�C�I}�]�|N�.���=�V.d�t����iV.w�zr�`z��ۙ�pfⱀ3�k�7��A"} �erV���+_�zB�p��Y|2|-Z�L��-���]��}�X���.�w��/��/��>��Sq�V1S�'��9z$�A� �;d�֧R���yl��Z�s.-��֒7o���f�'0��T���_�t��>�~!��x&����s4!�3,�q��f]hV��s�[4L����!��!��D��Q��Ҹ�C�e��A92�� �ri�5����1�����_�J�|oR�7�7��rˆ��ys�r6�0���܊�&��r�� &�\�R��j�Q.�Eט0fas]�f.c� ��}Y�Y�0���Y7DL�Ȋ���&{X�f�.�Ï�v��/M�J\d��ꪆc�n��. ��!G(pL��09C�9PT9C��A�?Dt��Dt�i��Dt���i��m�GI�Dt�hZdt��B��-� L�-�,(v-�,��i�#�:`�! 33Ω resistor, 100Ω resistor, 330Ω resistor, 560Ω resistor, and 1000Ω resistor. 556 556 556 556 556 556 556 556 556 556 333 333 584 584 584 611 EXPERIMENT 9: OHM’S LAW Introduction: In this lab, you will use a variable power supply to subject a resistor (of known resistance) to a variety of voltages. /Subtype /Image For the initial setup, attach the two outputs to the banana jacks on the patch board to the The graphs of all the experiments can be seen in the appendix below. flat region.

light turns on, but as it approached the origin, it shut off. Next, determine the ratio of. The objective of this lab is to determine the resistance of several resistors by applying Ohm’s Law. ranging between 1 watt to 100 watts to ensure a fixed temperature of 70oF would be met.

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