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<title>GATE Overflow for GATE ESE - Recent questions and answers in Water treatment methods</title>
<link>https://es.gateoverflow.in/qa/water-%26-wastewater-treatment-and-management/water-treatment-methods</link>
<description>Powered by Question2Answer</description>
<item>
<title>GATE ES 2026 | Question: 10</title>
<link>https://es.gateoverflow.in/543/gate-es-2026-question-10</link>
<description>&lt;p&gt;Which &lt;strong&gt;ONE&lt;/strong&gt; of the following options &lt;strong&gt;CORRECTLY&lt;/strong&gt; matches the processes associated with the growth condition given in the table?&lt;/p&gt;&lt;p&gt;$$\begin{array}{|ll|ll|}&lt;br&gt;\hline &amp;amp; \textbf{Process} &amp;amp; &amp;amp; \textbf{Growth Condition} \\&lt;br&gt;\hline \text{(P)} &amp;amp; \text{Activated sludge process} &amp;amp; (i) &amp;amp; \text{Anaerobic suspended growth} \\&lt;br&gt;\hline&amp;nbsp;\text{(Q)} &amp;amp;&amp;nbsp; \text{Anaerobic filter} &amp;amp; (ii) &amp;amp; \text{Anaerobic attached growth} \\&lt;br&gt;\hline&amp;nbsp;\text{(R)} &amp;amp;&amp;nbsp; \text{Trickling filter} &amp;amp; (iii) &amp;amp; \text{Aerobic suspended growth} \\&lt;br&gt;\hline \text{(S)} &amp;amp; \text{Anaerobic digestion} &amp;amp; (iv) &amp;amp; \text{Aerobic attached growth} \\&lt;br&gt;\hline \end{array}$$&lt;/p&gt;&lt;ol start=&quot;1&quot; style=&quot;list-style-type: upper-alpha;&quot;&gt;&lt;li&gt;$\text{(P) - (ii); (Q) - (iii); (R) - (iv); (S) - (i)}$&lt;/li&gt;&lt;li&gt;$\text{(P) - (iii); (Q) - (ii); (R) - (iv); (S) - (i)}$&lt;/li&gt;&lt;li&gt;$\text{(P) - (iii); (Q) - (i); (R) - (iv); (S) - (ii)}$&lt;/li&gt;&lt;li&gt;$\text{(P) - (iv); (Q) - (iii); (R) - (ii); (S) - (i)}$&lt;/li&gt;&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/543/gate-es-2026-question-10</guid>
<pubDate>Mon, 23 Feb 2026 13:15:30 +0000</pubDate>
</item>
<item>
<title>GATE ES 2026 | Question: 34</title>
<link>https://es.gateoverflow.in/519/gate-es-2026-question-34</link>
<description>&lt;p&gt;Which of the following options is/are &lt;strong&gt;TRUE &lt;/strong&gt;about reverse osmosis process?&lt;/p&gt;&lt;ol start=&quot;1&quot; style=&quot;list-style-type: upper-alpha;&quot;&gt;&lt;li&gt;Reverse osmosis is used as a pretreatment for microfiltration process.&lt;/li&gt;&lt;li&gt;Ultrafiltration is used as a pretreatment for reverse osmosis process.&lt;/li&gt;&lt;li&gt;Membrane fouling occurs in microfiltration and reverse osmosis processes.&lt;/li&gt;&lt;li&gt;Concentration polarization does not occur in reverse osmosis process.&lt;/li&gt;&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/519/gate-es-2026-question-34</guid>
<pubDate>Mon, 23 Feb 2026 13:14:43 +0000</pubDate>
</item>
<item>
<title>GATE ES 2026 | Question: 35</title>
<link>https://es.gateoverflow.in/518/gate-es-2026-question-35</link>
<description>&lt;p&gt;Which of the following options is/are &lt;strong&gt;TRUE&lt;/strong&gt; about coagulation-flocculation process?&lt;/p&gt;&lt;ol start=&quot;1&quot; style=&quot;list-style-type: upper-alpha;&quot;&gt;&lt;li&gt;Collision of colloidal particles due to their Brownian motion results in orthokinetic flocculation.&lt;/li&gt;&lt;li&gt;Collision of colloidal particles due to the external mixing of bulk medium results only in perikinetic flocculation.&lt;/li&gt;&lt;li&gt;In an electric double layer model of a colloidal particle, Stern layer is more compact than the diffuse layer.&lt;/li&gt;&lt;li&gt;The zeta potential is also called Stern potential.&lt;/li&gt;&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/518/gate-es-2026-question-35</guid>
<pubDate>Mon, 23 Feb 2026 13:14:41 +0000</pubDate>
</item>
<item>
<title>GATE ES 2026 | Question: 48</title>
<link>https://es.gateoverflow.in/505/gate-es-2026-question-48</link>
<description>A sewage treatment plant employing activated sludge process is operated under the following conditions:&lt;br /&gt;
&lt;br /&gt;
Wastewater flow rate into the aeration $\operatorname{tank}=0.150 \mathrm{~m}^{3} / \mathrm{s}$&lt;br /&gt;
&lt;br /&gt;
Soluble $\mathrm{BOD}_{5}$ in the influent $=84 \mathrm{mg} / \mathrm{L}$&lt;br /&gt;
&lt;br /&gt;
Soluble $\mathrm{BOD}_{5}$ in the effluent $=11 \mathrm{mg} / \mathrm{L}$&lt;br /&gt;
&lt;br /&gt;
Mean cell residence time $=5$ days&lt;br /&gt;
&lt;br /&gt;
Total yield co-efficient $=0.5 \mathrm{~kg}$ of $\mathrm{MLVSS} / \mathrm{kg} \mathrm{BOD}_{5}$ removed&lt;br /&gt;
&lt;br /&gt;
Decay rate of microorganism $=0.050 /$ day&lt;br /&gt;
&lt;br /&gt;
The net waste activated sludge produced in the plant is $\_\_\_\_$ $\text{kg}$ of $\mathrm{VSS/day}$ (rounded off to two decimal places).</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/505/gate-es-2026-question-48</guid>
<pubDate>Mon, 23 Feb 2026 13:14:26 +0000</pubDate>
</item>
<item>
<title>GATE ES 2025 | Question: 9</title>
<link>https://es.gateoverflow.in/412/gate-es-2025-question-9</link>
<description>&lt;p&gt;​​​​Multiple effect evaporator is commonly used, in the zero liquid discharge (ZLD) scheme, for $\_\_\_\_\_\_\_$&lt;/p&gt;

&lt;ol start=&quot;1&quot; style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;oxidation of organic pollutants&lt;/li&gt;
	&lt;li&gt;precipitation of heavy metals&lt;/li&gt;
	&lt;li&gt;concentrating reverse osmosis $(\mathrm{RO})$ reject salts&lt;/li&gt;
	&lt;li&gt;performing selective ion exchange&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/412/gate-es-2025-question-9</guid>
<pubDate>Thu, 06 Mar 2025 16:22:36 +0000</pubDate>
</item>
<item>
<title>GATE ES 2025 | Question: 35</title>
<link>https://es.gateoverflow.in/386/gate-es-2025-question-35</link>
<description>&lt;p&gt;​Choose the correct option(s) for removing solids from water.&lt;/p&gt;

&lt;ol start=&quot;1&quot; style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;chlorination&lt;/li&gt;
	&lt;li&gt;coagulation-flocculation-sedimentation followed by slow sand filtration&lt;/li&gt;
	&lt;li&gt;chlorination followed by aeration&lt;/li&gt;
	&lt;li&gt;slow sand filtration&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/386/gate-es-2025-question-35</guid>
<pubDate>Thu, 06 Mar 2025 16:21:21 +0000</pubDate>
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<item>
<title>GATE ES 2025 | Question: 48</title>
<link>https://es.gateoverflow.in/373/gate-es-2025-question-48</link>
<description>A common effluent treatment plant with a capacity of $2$ million litres per day (MLD) employs reverse osmosis (RO) for water reuse. The RO unit removes $95 \%$ of the total dissolved solids (TDS) and the water recovery rate is $70 \%$. If the TDS concentration in the RO feed is $8000$ parts per million (ppm), the TDS in the RO reject is $\_\_\_\_\_\_ \: \mathrm{g} / \mathrm{L}$. (rounded off to one decimal place)</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/373/gate-es-2025-question-48</guid>
<pubDate>Thu, 06 Mar 2025 16:21:01 +0000</pubDate>
</item>
<item>
<title>GATE ES 2024 | Question: 8</title>
<link>https://es.gateoverflow.in/345/gate-es-2024-question-8</link>
<description>&lt;p&gt;&amp;nbsp;&lt;/p&gt;

&lt;p&gt;The processes of removal of particles in a rapid sand filter with their description is given in the table.&lt;/p&gt;

&lt;table border=&quot;1&quot; cellpadding=&quot;1&quot; style=&quot;width:500px&quot;&gt;
	&lt;tbody&gt;
		&lt;tr&gt;
			&lt;td&gt;Process&lt;/td&gt;
			&lt;td&gt;Description&lt;/td&gt;
		&lt;/tr&gt;
		&lt;tr&gt;
			&lt;td&gt;$\text{(i)}$ Straining&lt;/td&gt;
			&lt;td&gt;P:Removes only particles in the water large enough to get caught in the pores of the filter&lt;/td&gt;
		&lt;/tr&gt;
		&lt;tr&gt;
			&lt;td&gt;$\text{(ii)}$ Sedimentation&lt;/td&gt;
			&lt;td&gt;Q: Larger and heavier particles do not follow the fluid&amp;nbsp;streamline around the sand grain and settle on the grain&lt;/td&gt;
		&lt;/tr&gt;
		&lt;tr&gt;
			&lt;td&gt;$\text{(iii)}$ Interception&lt;/td&gt;
			&lt;td&gt;R: Particles that do follow the streamline, but are too large and are caught because they brush up against the sand grains&lt;/td&gt;
		&lt;/tr&gt;
		&lt;tr&gt;
			&lt;td&gt;$\text{(iv)}$ Diffusion&lt;/td&gt;
			&lt;td&gt;S: Very small particles are experiencing Brownian motion and may collide with the sand grains by chance&lt;/td&gt;
		&lt;/tr&gt;
	&lt;/tbody&gt;
&lt;/table&gt;

&lt;p&gt;Select the correct match.&lt;/p&gt;

&lt;ol start=&quot;1&quot; style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;$\text{i- S; ii-P; iii-Q; iv-R}$&lt;/li&gt;
	&lt;li&gt;$\text{i-Q; ii-R; iii-S; iv-P}$&lt;/li&gt;
	&lt;li&gt;$\text{i-R; ii- S; iii- P; iv-Q}$&lt;/li&gt;
	&lt;li&gt;$\text{i-P; ii-Q; iii-R; iv-S}$&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/345/gate-es-2024-question-8</guid>
<pubDate>Mon, 19 Feb 2024 10:24:13 +0000</pubDate>
</item>
<item>
<title>GATE ES 2024 | Question: 43</title>
<link>https://es.gateoverflow.in/310/gate-es-2024-question-43</link>
<description>One million liters per day $\text{(MLD)}$ of wastewater with a soluble $\text{BOD}$ of $200 \mathrm{mg} / \mathrm{L}$ is treated in an activated sludge process. The $\text{BOD}$ of treated wastewater is $20 \mathrm{mg} / \mathrm{L}$. The observed yield coefficient of the biological system is $0.35$.&lt;br /&gt;
&lt;br /&gt;
The daily biomass generation in the system is _________ $\mathrm{kg}$ $\text{(an integer value)}$.</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/310/gate-es-2024-question-43</guid>
<pubDate>Mon, 19 Feb 2024 10:24:06 +0000</pubDate>
</item>
<item>
<title>GATE ES 2024 | Question: 52</title>
<link>https://es.gateoverflow.in/301/gate-es-2024-question-52</link>
<description>For a biodegradable waste with a chemical formula $\mathrm{C}_{50} \mathrm{H}_{100} \mathrm{O}_{40} \mathrm{~N}$, the maximum theoretical methane production per ton of waste is __________ $\mathrm{kg}$ $\text{(rounded off to $2$ decimal places)}$.&lt;br /&gt;
&lt;br /&gt;
Assume $100 \%$ anaerobic conversion. Atomic weights of $\text{C-12; H-1; O-16; N-14}$</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/301/gate-es-2024-question-52</guid>
<pubDate>Mon, 19 Feb 2024 10:24:05 +0000</pubDate>
</item>
<item>
<title>GATE ES 2023 | Question: 46</title>
<link>https://es.gateoverflow.in/241/gate-es-2023-question-46</link>
<description>A flask (100 ml volume) has wastewater, which has $0.12 \mathrm{mg} / \mathrm{L}$ geosmin. Activated carbon is added in this flask for adsorbing geosmin as per the Freundlich isotherm model $\left(\mathrm{Q}=2.6 \times \mathrm{C}^{0.73}\right.$ where $\mathrm{Q}$ is $\mathrm{mg}$ adsorbate $/ \mathrm{mg}$ adsorbent and $\mathrm{C}$ is the equilibrium concentration in $\mathrm{mg} / \mathrm{L}$ ). Activated carbon to be added in this flask for getting final remaining geosmin concentration of $0.05 \mathrm{mg} / \mathrm{L}$ would be __________ (in $\mathrm{mg} / \mathrm{L}$, $\text{rounded off to three decimal places).}$</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/241/gate-es-2023-question-46</guid>
<pubDate>Tue, 23 May 2023 03:11:53 +0000</pubDate>
</item>
<item>
<title>GATE ES 2023 | Question: 48</title>
<link>https://es.gateoverflow.in/239/gate-es-2023-question-48</link>
<description>You are doing an experiment to find out $\mathrm{BOD}_5$ of a wastewater. You have taken $25 \mathrm{~mL}$ wastewater having ultimate BOD of $75 \mathrm{mg} / \mathrm{L}$ and placed it in $300 \mathrm{~mL}$ BOD bottle and filled it with dilution water. The initial DO of the diluted sample is $6.5 \mathrm{mg} / \mathrm{L}$. On the $5^{\text {th }}$ day, you were not able to measure the DO due to some unavoidable circumstances. However, the DO at the end of the $7^{\text {th }}$ day is found to be $1.25 \mathrm{mg} / \mathrm{L}$. Assume all the experiments are done at the same temperature, and no biodegradable organics are present in the dilution water. The $\mathrm{BOD}_5$ of the wastewater sample is __________ (in $\mathrm{mg} / \mathrm{L}$, $\text{rounded off to two decimal places).}$</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/239/gate-es-2023-question-48</guid>
<pubDate>Tue, 23 May 2023 03:11:51 +0000</pubDate>
</item>
<item>
<title>GATE ES 2023 | Question: 55</title>
<link>https://es.gateoverflow.in/232/gate-es-2023-question-55</link>
<description>An aeration tank needs to be installed for the removal of VOC from water, where the required rate of flow of water through the aeration tank is $180,000 \mathrm{~m}^{3} / \mathrm{d}$. Permissible limit of VOC in the water is $12 \mu \mathrm{g} / \mathrm{L}$. The saturation concentration of $\mathrm{VOC}$ is $5 \mu \mathrm{g} / \mathrm{L}$ and gas transfer rate constant is 0.40 per second at $25^{\circ} \mathrm{C}$. The initial concentration of VOC in the water is $33 \mu \mathrm{g} / \mathrm{L}$. The volume of the aeration tank to satisfy the permissible limit of VOC at $25^{\circ} \mathrm{C}$ is _________ (in $\mathrm{m}^{3}$, $\text{rounded off to two decimal places).}$</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/232/gate-es-2023-question-55</guid>
<pubDate>Tue, 23 May 2023 03:11:44 +0000</pubDate>
</item>
<item>
<title>GATE ES 2021 | Question: 23</title>
<link>https://es.gateoverflow.in/199/gate-es-2021-question-23</link>
<description>A flocculation tank used for water treatment has a velocity gradient $(G)$ of $800 \mathrm{~s}^{-1}$. The volume of the tank is $40 \mathrm{~m}^{3}$. The dynamic viscosity of water is $9 \times 10^{-4} \mathrm{~N} \cdot \mathrm{s} / \mathrm{m}^{2}$. The theoretical power required to maintain the given velocity gradient is__________$\text{kW}$ $\text{(rounded off to the nearest integer)}$.</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/199/gate-es-2021-question-23</guid>
<pubDate>Tue, 14 Mar 2023 03:44:27 +0000</pubDate>
</item>
<item>
<title>GATE ES 2021 | Question: 32</title>
<link>https://es.gateoverflow.in/190/gate-es-2021-question-32</link>
<description>&lt;p&gt;A sewage treatment plant $\text{(STP)}$ receives sewage at a flow rate of $20000 \mathrm{~m}^3$ per day. The sewage has $200 \mathrm{mg} / \mathrm{L}$ of suspended solids. Assume $60 \%$ suspended solids are removed in the primary clarifier. The underflow $\text{(i.e. sludge)}$ removed from the clarifier contains $5 \%$ solids $\text{(by weight)}$.&lt;br&gt;
The daily volume of the sludge generated will be $\mathrm{m}^3$ per day.&lt;/p&gt;

&lt;p&gt;Assume sludge density $=1000 \mathrm{~kg} / \mathrm{m}^3$.&lt;/p&gt;

&lt;ol start=&quot;1&quot; style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;$4$&lt;/li&gt;
	&lt;li&gt;$8$&lt;/li&gt;
	&lt;li&gt;$48$&lt;/li&gt;
	&lt;li&gt;$800$&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/190/gate-es-2021-question-32</guid>
<pubDate>Tue, 14 Mar 2023 03:44:17 +0000</pubDate>
</item>
<item>
<title>GATE ES 2021 | Question: 55</title>
<link>https://es.gateoverflow.in/167/gate-es-2021-question-55</link>
<description>A facultative pond system for sewage treatment consists of two ponds in series. The hydraulic retention time $\text{(HRT)}$ of each pond is $6$ days. The total $\text{BOD 5}$ reduction through the entire pond system is $90 \%$. If the ponds are considered to be completely mixed, then the rate constant describing the $\mathrm{BOD}_5$ removal is _______ day $^{-1}$ $\text{(rounded off to two decimal points)}$. Assume that the rate constant is same for both the ponds.</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/167/gate-es-2021-question-55</guid>
<pubDate>Tue, 14 Mar 2023 03:43:48 +0000</pubDate>
</item>
<item>
<title>GATE ES 2022 | Question: 12</title>
<link>https://es.gateoverflow.in/155/gate-es-2022-question-12</link>
<description>&lt;p&gt;&amp;nbsp;&lt;/p&gt;

&lt;p&gt;A river water sample has $\mathrm{pH}$ of $4$ and suspended solids concentration of $100 \; \mathrm{mg} / \mathrm{L}$. If, alum is chosen as a coagulant, what will be the coagulation mechanism?&lt;/p&gt;

&lt;ol style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;Ionic layer compression only&lt;/li&gt;
	&lt;li&gt;Sweep coagulation and Polymer bridging&lt;/li&gt;
	&lt;li&gt;Polymer bridging only&lt;/li&gt;
	&lt;li&gt;Charge neutralization, surface adsorption, ionic layer compression
	&lt;p&gt;&amp;nbsp;&lt;/p&gt;
	&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/155/gate-es-2022-question-12</guid>
<pubDate>Fri, 17 Feb 2023 07:06:06 +0000</pubDate>
</item>
<item>
<title>GATE ES 2022 | Question: 35</title>
<link>https://es.gateoverflow.in/132/gate-es-2022-question-35</link>
<description>&lt;p&gt;Average values of the re-aeration rate constant for river $\mathrm{X}$ and river $\mathrm{Y}$ are $0.92$ per day and $1.12$ per day, respectively. Average de-oxygenation rate constants for the same rivers are $0.23$ per day and $0.35$ per day respectively. Then, which of the following statement(s) is/are correct?&lt;/p&gt;

&lt;ol style=&quot;list-style-type:upper-alpha&quot;&gt;
	&lt;li&gt;Self-purification capacity of river $\mathrm{Y}$ is more than that of river $\mathrm{X}$.&lt;/li&gt;
	&lt;li&gt;Self-purification capacity of river $\mathrm{X}$ is more than that of river $\mathrm{Y}$.&lt;/li&gt;
	&lt;li&gt;River Y has higher turbulence and/or higher velocity and/or higher algal growth compared to river $\mathrm{X}$.&lt;/li&gt;
	&lt;li&gt;Pollutants in river $\mathrm{X}$ are more biodegradable than that in river $\mathrm{Y}$.
	&lt;p&gt;&amp;nbsp;&lt;/p&gt;
	&lt;/li&gt;
&lt;/ol&gt;</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/132/gate-es-2022-question-35</guid>
<pubDate>Fri, 17 Feb 2023 07:05:46 +0000</pubDate>
</item>
<item>
<title>GATE ES 2022 | Question: 52</title>
<link>https://es.gateoverflow.in/115/gate-es-2022-question-52</link>
<description>A sewage treatment plant with a capacity of 10 million litres per day (MLD) is treating the sewage through an aerobic biological process. The inlet and outlet BOD are measured as 100 and $30 \mathrm{mg} / \mathrm{l}$, respectively. If the mixed microbial culture has an observed biomass yield of $0.5 \mathrm{~g}$ Volatile Suspended Solids (VSS)/g BOD, the sludge production rate (in kg per day, rounded off to one decimal place) when the plant is operating at $80 \%$ capacity will be ____________.</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/115/gate-es-2022-question-52</guid>
<pubDate>Fri, 17 Feb 2023 07:05:34 +0000</pubDate>
</item>
<item>
<title>GATE ES 2022 | Question: 53</title>
<link>https://es.gateoverflow.in/114/gate-es-2022-question-53</link>
<description>A centrifuge is processing 1000 litres per hour of water containing 2 g per litre of suspended solids. The thickened slurry coming out of the centrifuge has solids concentration of $20 \mathrm{~g}$ per $100 \mathrm{ml}$. If the centrifuge has $99 \%$ efficiency based on solids separation, the flow rate (in litres per hour, rounded off to one decimal place) of the supernatant stream will be___________</description>
<category>Water treatment methods</category>
<guid isPermaLink="true">https://es.gateoverflow.in/114/gate-es-2022-question-53</guid>
<pubDate>Fri, 17 Feb 2023 07:05:33 +0000</pubDate>
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